CN106284865A - Integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control method - Google Patents

Integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control method Download PDF

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Publication number
CN106284865A
CN106284865A CN201610648087.2A CN201610648087A CN106284865A CN 106284865 A CN106284865 A CN 106284865A CN 201610648087 A CN201610648087 A CN 201610648087A CN 106284865 A CN106284865 A CN 106284865A
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China
Prior art keywords
temperature
signal
rainfall
interlayer
outdoor
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CN201610648087.2A
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Chinese (zh)
Inventor
冯华国
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King Facade Decoration Engineering Co Ltd
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King Facade Decoration Engineering Co Ltd
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Priority to CN201610648087.2A priority Critical patent/CN106284865A/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/03Sky-lights; Domes; Ventilating sky-lights
    • E04D13/0325Sky-lights; Domes; Ventilating sky-lights provided with ventilating means
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/03Sky-lights; Domes; Ventilating sky-lights
    • E04D13/035Sky-lights; Domes; Ventilating sky-lights characterised by having movable parts
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/30Control or safety arrangements for purposes related to the operation of the system, e.g. for safety or monitoring
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/62Control or safety arrangements characterised by the type of control or by internal processing, e.g. using fuzzy logic, adaptive control or estimation of values
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements
    • F24F11/70Control systems characterised by their outputs; Constructional details thereof
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2110/00Control inputs relating to air properties
    • F24F2110/10Temperature

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Combustion & Propulsion (AREA)
  • Atmospheric Sciences (AREA)
  • Civil Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Fuzzy Systems (AREA)
  • Mathematical Physics (AREA)
  • Signal Processing (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

A kind of integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control method, belong to lighting ceiling field, solve the problem that air conditioning energy consumption is high, it is combined with lighting ceiling by computer system, to have multiple-working mode, and according to indoor, hollow interlayer, outdoor temperature and outdoor rainfall, intelligent selection and switching working mode, realize intelligent temperature control, air conditioning system is being heated and the energy consumption reduction in process of refrigerastion, there is good energy-saving effect and the ability of response environment change.

Description

Integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control method
Technical field
The present invention relates to lighting ceiling field, particularly to integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control Method.
Background technology
Lighting ceiling, also known as lighting roof, is a kind of form of building roof, and modern architecture the most all have employed daylighting sky Canopy, as megastore, office building etc. are built, this kind of building has high requirement to the comfortableness of its internal medium, the most all joins Have air conditioning system freeze or heat, make indoor maintaining constant temperature, but this also brings great air conditioning energy consumption problem, adopts Light ceiling, as the intermediate of indoor and outdoors heat exchange, plays an important role in the holding of isoperibol in building.
Complying with above-mentioned trend, double-deck lighting ceiling progresses into the visual field of people, and Fig. 4 illustrates one of the prior art Double-deck lighting ceiling, it includes inner layer glass 1, glass outer 2 and the intermediate interlayer 3 formed between the two, intermediate interlayer 3 structure Become air cushioning layer, reduce the heat exchange between indoor and outdoor, make indoor temperature the most stable, reduce Indoor Thermal loss of energy, from And save the energy and operation of air conditioner maintenance cost, but this double-deck lighting ceiling, air conditioning system is when opening refrigeration or heating Energy consumption is the biggest, and energy-efficient performance is not enough, and mode of operation is single, and environmental change does not has adaptability to changes to external world.
Summary of the invention
The first object of the present invention is to provide a kind of integration rain induced intelligent constant temperature ecology lighting ceiling, has more intelligence The mode of operation of energy, improves energy-saving effect and to environmental change adaptability to changes.
Above-mentioned first purpose of the present invention has the technical scheme that
A kind of integration rain induced intelligent constant temperature ecology lighting ceiling, including the modular module of integration, modular module exists On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass and glass outer, inner layer glass and glass outer Between be hollow interlayer, it is characterized in that: the dual-side of hollow interlayer is provided with circulating air opening respectively,
Inner layer glass is provided with vent, and described circulating air opening, vent are equipped with the mechanism for opening/closing for opening and closing;
Described integration rain induced intelligent constant temperature ecology lighting ceiling also includes that single-chip microcomputer, described single-chip microcomputer are coupled with
Indoor temperature transmitter, is disposed in the interior, and is used for detecting indoor temperature and to singlechip feedbsck indoor temperature signal Ti;
Interlayer temperature sensor, is arranged on hollow interlayer, is used for detecting hollow interlayer temperature and to singlechip feedbsck interlayer temperature Signal Tm;
Outdoor temperature sensor, is disposed in the outdoor, and is used for detecting outdoor temperature and to singlechip feedbsck outdoor temperature signal To;
Rain sensor, is disposed in the outdoor, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;
Attemperating unit, is arranged on the ceiling mounting structure in hollow interlayer, is controlled by single-chip microcomputer and with refrigeration or heats;
Driving means, is arranged on mechanism for opening/closing, is controlled by single-chip microcomputer to drive mechanism for opening/closing to open and close;
Communication device, for the control panel communication with air conditioning system;
Have inside described single-chip microcomputer:
State reads unit, for being known that by communication device the duty of indoor air-conditioning system for refrigeration or heats;
Rainfall comparing unit, obtains rainfall comparative result for being compared with the safe rainfall signal Vs preset by rainfall signal Vr;
Refrigeration control unit, reads startup when air conditioning system is in refrigerating state for reading unit in state, fills to temperature control Put transmission cooling signals, and indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm with outdoor Temperature signal To compares, and obtains temperature comparative result, and combines rainfall comparative result and temperature comparative result determines circulating air opening Keying scheme with vent
Generate and send corresponding control signal to driving means;
Heat control unit, start for reading when air conditioning system is in and heats state at state reading unit, fill to temperature control Put transmission and heat signal, and indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm with outdoor Temperature signal To compares, and obtains temperature comparative result, and combines rainfall comparative result and temperature comparative result determines circulating air opening Keying scheme with vent
Generate and send corresponding control signal to driving means;
Described driving means is in response to refrigeration control unit or heats the control signal that control unit sends and drives mechanism for opening/closing to open Close to perform corresponding keying scheme;
Described attemperating unit freezes in response to cooling signals, heats in response to heating signal.
Use technique scheme, by temperature sensor sensing chamber, interlayer, outdoor temperature, and combine rainfall and pass The rainfall that sensor detects is as judging to take the foundation of which kind of mode of operation, and to reach more preferable energy-saving effect, and key exists In the application of the atural beat exchange in reaching the process (freeze or heat) of indoor environment temperature of needs, nonelectrical energy driven, Reduce air conditioning system load and when reaching required indoor environment temperature, maintain stable temperature environment, make air conditioning system not Want frequent start-stop, accordingly, because weather, Environment Inside the Building are changeable so that indoor, intermediate interlayer, outdoor have multiple combination feelings Condition, and for every kind of combined situation, all have corresponding energy-saving scheme to tackle, when being in refrigeration mode, as Ti > Tm > To, these feelings Shape is generally bad in room ventilation effect, and occurs when intermediate interlayer is by long-time sun heat radiation, now outdoor environment Temperature is relatively indoor, intermediate interlayer is relatively low, forms hot and cold air simultaneously and follow in opening vent and circulating air opening, intermediate interlayer Ring, the coldest air-flow replenishes in intermediate interlayer, and attemperating unit starts refrigeration, can promote that hot and cold air circulates further, Accelerating to reduce intermediate interlayer temperature, cold airflow enters indoor also by vent simultaneously, is directly formed cold and hot with Indoor Thermal air Stream crosses, and can reduce rapidly indoor temperature so that indoor air conditioning system load reduction in process of refrigerastion, and acting reduces, Playing energy-conservation effect, then, indoor and intermediate interlayer temperature are at air conditioning system, attemperating unit and hot and cold air Circulation Lower reduction, the relation of Ti, Tm, To will transform to new state, open and close scheme the most accordingly and also can change;As Ti > Tm=To Time, intermediate interlayer temperature is equal with indoor, does not the most occur hot and cold air to circulate, it is difficult to make intermediate interlayer lower the temperature, but indoor Temperature is higher, and unlatching vent, circulating air opening can make the cold airflow of outdoor flow into indoor, directly formed cold and hot with Indoor Thermal air Stream crosses, and can reduce rapidly indoor temperature;As Ti > Tm < To, now more weak in solar radiation or in the case of not having, and Indoor and outdoors environmental change is very fast, and as indoor equipment, flow of the people increase severely, the movable temperature that increases raises, at the cloudy day, and outdoor city The locality high temperature that hot-fluid, artificial abortion's wagon flow cause, now closes circulating air opening, prevents outdoor thermal current from flowing into intermediate interlayer, opens Unblank air port, makes the cold airflow of intermediate interlayer and indoor thermal current cross, reduces indoor temperature, reduce air conditioning energy consumption; As Ti=Tm > To, now indoor and intermediate interlayer temperature is higher, with during Ti > Tm > To in like manner, open vent, follow Ring air port;As Ti=Tm=To, indoor, intermediate interlayer, outdoor airflow temperature are close, and air-flow crosses and is difficult to play energy-conservation effect Really, and under air conditioning system and attemperating unit refrigeration, temperature will reduce quickly, sets up new stable state, therefore closes Close vent, circulating air opening, help the foundation of new stable state;As Ti=Tm < To, outdoor temperature is higher, closes circulating air opening resistance Heat, closes blow vent, helps quickly to set up new stable state;As Ti < Tm > To, intermediate interlayer presents height due to sun heat radiation In indoor and outdoor temperature, now close vent, it is to avoid thermal current enters indoor and causes indoor occupant uncomfortable, and unlatching follows Ring air port, makes intermediate interlayer lower the temperature by hot and cold air circulation;As Ti < Tm=To, close vent, circulating air opening, it is to avoid heat Air-flow enters indoor;As Ti < Tm < To, close vent, circulating air opening, it is to avoid thermal current enters intermediate interlayer and indoor, dimension Keep steady state;More than include all compound modes of Ti, Tm, To, and for refrigeration mode, Ti < Tm < To, close vent, Circulating air opening is final state during refrigeration mode and stable state, and other situations are transient state, is also that various initial condition is different Process of refrigerastion in must be through process, thus, under Single-chip Controlling, attemperating unit freezes, and air conditioning system acts on down jointly, All the time go to set up toward the stable state of Ti < Tm < To by Ti, Tm, To, and when changing whenever the compound mode of Ti, Tm, To, single Sheet machine controls driving means and performs corresponding keying scheme, whole refrigeration and reach target temperature and maintain the process of stable state, many Mode of operation, according to testing result, automatically switches, and in the refrigeration just stage, utilizes atural beat to exchange fast cooling, reduces air-conditioning system System energy consumption with energy-conservation, when reaching stable state, indoor, intermediate interlayer, outdoor temperature present gradient, two-by-two between the temperature difference less, heat transfer Speed is minimized, energy efficient, and two-by-two between can only be passed without the most cold and hot crossing, temperature ring by glass heat Border can remain the most stable, reduces the frequent start-stop of air conditioning system, it is achieved energy-conservation, simultaneously in work-mode switching process, Outdoor rainfall exceeds standard as the first priority, rainfall as Consideration, rainfall, and circulating air opening is closed, and ensures safety, externally The change of boundary's environment has adaptability to changes, and whole system is intelligent, energy-conservation;In like manner, heat the inverse process into refrigeration, also can derive Beneficial effect to equivalent.
Further, described integration rain induced intelligent constant temperature ecology lighting ceiling also includes host computer, and described single-chip microcomputer leads to Cross bus and connect host computer.
Using technique scheme, single-chip microcomputer is mutual with host computer information by bus, can be by host computer Centralized Monitoring.
Further, described mechanism for opening/closing is shutter.
Using technique scheme, shutter has the most disguised and ornamental, and it is the most convenient to install.
Further, driving means includes driving module and motor, and the drive shaft of described motor is connected with the rotating shaft of shutter, Described driving module couples is also controlled by single-chip microcomputer to drive motor positive and inverse.
Using technique scheme, motor, by driving module drive rotating, drives the rotating shaft rotating of shutter, it is achieved Vent, the keying of circulating air opening.
Further, communication device is wireless communication module.
Using technique scheme, air-conditioner control system carries wireless communication function, obtains work by wireless communication mode Make status information, reduce wiring cost.
Further, described indoor temperature transmitter, interlayer temperature sensor, the model of outdoor temperature sensor are DS18B20。
Using technique scheme, DS18B20 volume is little, is suitable to various environment and installs, strong to adverse circumstances resistance, and Exporting for numeral, saved analog digital conversion, hardware spending is low, uses three-wire system to connect single-chip microcomputer, reduction procedure, and also has Capacity of resisting disturbance is strong, the feature that precision is high.
Further, described state reading unit can also read the duty of air conditioning system is standby;
Described single-chip microcomputer also includes Opportunity awaiting control for linear unit, is in holding state for reading air conditioning system at state reading unit Shi Qidong, sends standby signal to attemperating unit;And
When rainfall comparative result is Vr < Vs, the control signal of vent, circulating air opening is opened in output simultaneously;
When rainfall comparative result is Vr >=Vs, output simultaneously closes off the control signal of vent, circulating air opening.
Using technique scheme, when air-conditioner standby, under outdoor environment allows, i.e. rainfall comparative result is Vr < Vs, Unlatching vent, circulating air opening, so that indoor and outdoor is ventilated, are of value to room air circulation, make for good health.
The second object of the present invention is to provide a kind of temperature control method, has more intelligent mode of operation, improves energy-conservation effect Fruit and to environmental change adaptability to changes.
Above-mentioned second purpose of the present invention has the technical scheme that
A kind of temperature control method, realizes based on above-mentioned integrated rain induced intelligent constant temperature ecology lighting ceiling, including
Step one: by the indoor temperature transmitter detection indoor temperature being disposed in the interior and believe to singlechip feedbsck indoor temperature Number Ti;
Hollow interlayer temperature is detected and to singlechip feedbsck interlayer temperature by being arranged on the interlayer temperature sensor of hollow interlayer Signal Tm;
By the outdoor temperature sensor detection outdoor temperature being disposed in the outdoor and to singlechip feedbsck outdoor temperature signal To;
By rainfall outside the rain sensor sensing chamber that is disposed in the outdoor and to singlechip feedbsck rainfall signal Vr;
By the control panel communication of communication device and air conditioning system so that single-chip microcomputer knows the duty of indoor air-conditioning system For freezing or heating;
Step 2: when single-chip microcomputer knows that air conditioning system is in refrigerating state, send cooling signals;
Indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm and outdoor temperature signal To ratio Relatively, temperature comparative result is obtained;
Rainfall signal Vr is compared with the safe rainfall signal Vs preset and obtains rainfall comparative result;
The keying scheme of circulating air opening and vent is determined in conjunction with rainfall comparative result and temperature comparative result
Generate and send corresponding control signal to driving means;
When single-chip microcomputer know air conditioning system be in heat state time, send and heat signal;
Indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm and outdoor temperature signal To ratio Relatively, temperature comparative result is obtained;
Rainfall signal Vr is compared with the safe rainfall signal Vs preset and obtains rainfall comparative result;
The keying scheme of circulating air opening and vent is determined in conjunction with rainfall comparative result and temperature comparative result
Generate and send corresponding control signal to driving means;
Step 3: by arranging attemperating unit, by attemperating unit in response to refrigeration on the ceiling mounting structure in hollow interlayer Signal freezes, and heats in response to heating signal;
Mechanism for opening/closing is driven to be turned on and off vent, circulating air opening to perform correspondence by driving means in response to control signal Keying scheme.
Further, in step one, also include the control panel communication by communication device and air conditioning system so that single-chip microcomputer The duty knowing indoor air-conditioning system is standby;
In step 2, also include when single-chip microcomputer knows that air conditioning system is in holding state, send standby signal to attemperating unit; And when rainfall comparative result is Vr < Vs, the control signal of vent, circulating air opening is opened in output simultaneously;
When rainfall comparative result is Vr >=Vs, output simultaneously closes off the control signal of vent, circulating air opening.
The third object of the present invention is to provide a kind of integration rain induced intelligent constant temperature ecology lighting ceiling, has more intelligence The mode of operation of energy, improves energy-saving effect and to environmental change adaptability to changes.
Above-mentioned 3rd purpose of the present invention has the technical scheme that
A kind of integration rain induced intelligent constant temperature ecology lighting ceiling, including the modular module of integration, modular module exists On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass and glass outer, inner layer glass and glass outer Between be hollow interlayer, it is characterized in that: the dual-side of hollow interlayer is provided with circulating air opening respectively, described circulating air opening is provided with use In the mechanism for opening/closing opened and closed;
Described integration rain induced intelligent constant temperature ecology lighting ceiling also includes that single-chip microcomputer, described single-chip microcomputer are coupled with
Interlayer temperature sensor, is arranged on hollow interlayer, is used for detecting hollow interlayer temperature and to singlechip feedbsck interlayer temperature Signal Tm;
Outdoor temperature sensor, is disposed in the outdoor, and is used for detecting outdoor temperature and to singlechip feedbsck outdoor temperature signal To;
Rain sensor, is disposed in the outdoor, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;
Driving means, is arranged on mechanism for opening/closing, is controlled by single-chip microcomputer to drive mechanism for opening/closing to open and close;
Have inside described single-chip microcomputer:
Rainfall comparing unit, for comparing rainfall signal Vr with the safe rainfall signal Vs preset;
Temperature conditioning unit, on the ceiling mounting structure being arranged in hollow layer, by the control realization refrigeration mode of single-chip microcomputer or heat Pattern and combine air port open and close scheme with realize regulation hollow layer temperature make hollow layer temperature maintain preset temperature signals Tx, Described scheme includes
When Vr is more than or equal to Vs, Single-chip Controlling mechanism for opening/closing is closed;
When Vr is less than Vs, single-chip microcomputer has following three kinds of operation reserve:
Operation reserve one, when outdoor temperature sensor detects 25 degrees Celsius and To > Tm > Tx of ambient temperature To >, monolithic Machine controls mechanism for opening/closing action, makes circulating air opening open, takes away a part of heat to reduce hollow under the effect of stack effect The temperature of layer is until Tm tends to a stationary value, if Tm is > Tx, then Single-chip Controlling circulating air opening closes and start temperature conditioning unit Row refrigeration mode so that Tm=Tx;
Operation reserve two, when outdoor temperature sensor detects that ambient temperature To is 22-25 degree Celsius, Single-chip Controlling circulate Air port is opened, to realize circulating ventilation so that Tm=Tx;
Operation reserve three, when outdoor temperature sensor detects ambient temperature To < 22 degrees Celsius, Single-chip Controlling headstock gear Structure action so that circulating air opening is closed, and start temperature conditioning unit and carry out heating mode so that Tm=Tx.
In sum, the method have the advantages that combination indoor, intermediate interlayer and outdoor temperature, rainfall is examined Survey result, make multiple-working mode intelligence switch, it is possible to when air conditioning system is opened refrigeration or heats, utilize atural beat exchange fast Prompt drop temperature or heat up, reduce air conditioning energy consumption, when close to stable state, indoor, intermediate interlayer, outdoor mutually isolated, two-by-two between Keep the less temperature difference, reduce the speed transmitted by glass heat, reach preferable constant temperature effect, reduce the frequent of air conditioning system Start and stop, energy efficient, environmental change has preferable adaptability to changes the most to external world.
Accompanying drawing explanation
Fig. 1 is the cross-sectional schematic of embodiment;
Fig. 2 is the schematic diagram of the circuit part of single-chip microcomputer and periphery;
Fig. 3 is the system schematic of embodiment;
Fig. 4 is prior art sectional view.
In figure, 1, inner layer glass;11, vent;2, glass outer;21, circulating air opening;3, hollow interlayer;4, shutter; 5, minitype air conditioner;61, indoor temperature transmitter;62, interlayer temperature sensor;63, outdoor temperature sensor;64, rainfall sensing Device.
Detailed description of the invention
Embodiment one
Seeing Fig. 1, a kind of integration rain induced intelligent constant temperature ecology lighting ceiling, including mechanical part and circuit part, machinery Part includes being arranged on the modular module of the integration of building top and being formed ceiling mounting structure, modular module by Os Draconis On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass 1 and glass outer 2, and inner layer glass 1 is positioned at Side, glass outer 2 is positioned at outside, forms hollow interlayer 3 between the two, the Os Draconis in hollow interlayer 3 are provided with small size air Tune 5 is in order to freeze or to heat, and the both sides of hollow interlayer 3 are provided with circulating air opening 21, and inner layer glass 1 is provided with vent 11, circulated air Mouthfuls 21, be equipped with shutter 4 on vent 11, the rotating shaft of shutter 4 by motor-driven rotation rotating to open and close.
In conjunction with Fig. 1 and Fig. 2, circuit part includes single-chip microcomputer, and described single-chip microcomputer connects has the ceiling being arranged on indoor to connect Indoor temperature transmitter 61 in structure, is used for detecting indoor temperature and to singlechip feedbsck indoor temperature signal Ti;It is arranged on The interlayer temperature sensor 62 in ceiling attachment structure in hollow interlayer 3, is used for detecting hollow interlayer 3 temperature and to single-chip microcomputer Feedback interlayer temperature signal Tm;It is arranged on the outdoor temperature sensor 63 in the ceiling attachment structure of outdoor, outside sensing chamber Temperature to singlechip feedbsck outdoor temperature signal To;It is arranged on the rain sensor in the bottom ceiling attachment structure of outdoor 64, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;Wireless communication module, for the control with air conditioning system Panel communication, so that the duty that single-chip microcomputer knows indoor air-conditioning system for refrigeration or heats or standby, and by single-chip microcomputer control Minitype air conditioner 5 processed the most also performs refrigeration or heats or standby.
The temperature sensor all using model to be DS18B20 in the present embodiment, rain sensor 64 can use and win clearly CG- 04ABS rain sensor, the model of single-chip microcomputer is AT89C51.
Rainfall signal Vr is compared obtain rainfall comparative result with the safe rainfall signal Vs preset by single-chip microcomputer;By Indoor Temperature Degree signal Ti compares with interlayer temperature signal Tm, is compared with outdoor temperature signal To by interlayer temperature signal Tm, obtains temperature ratio Relatively result;And combine rainfall comparative result and temperature comparative result determines the keying scheme of circulating air opening 21 and vent 11;System Chill formula:
Heating mode:
Standby mode:
During Vr < Vs, open vent 11, circulating air opening 21 simultaneously;
During Vr >=Vs, simultaneously close off vent 11, circulating air opening 21;
And three driving modules of vent 11, circulating air opening 21 it are sent respectively to be arranged on by single-chip microcomputer generation control signal, Driving module is motor positive and inverse drive circuit, to perform keying scheme.
Single-chip microcomputer connects host computer also by RS232 bus, sees Fig. 3, when indoor air-conditioning system starts, and control panel Sending control signal to air-conditioning, single-chip microcomputer also knows the duty of air conditioning system with control panel wireless telecommunications simultaneously, and ties Closing temperature detection and rainfall detection controls mechanical part and performs keying scheme, temperature detection and rainfall detection are real-time, here In real time substantially there is intervals, according to depending on the assay intervals that single-chip microcomputer sets, in the mutual pass of Ti, Tm, To When system changes, change keying scheme the most in real time, in whole indoor process of refrigerastion or heating operations or standby, ceiling Integration rain induced intelligent constant temperature ecology lighting ceiling is also dynamic process, and single-chip microcomputer is set up with host computer by bus simultaneously Contact, multiple single-chip microcomputers can be by host computer Centralized Monitoring so that larger range of constant temperature energy-saving controls to realize more easily.
Energy-saving principle: by sensing chamber, interlayer, outdoor temperature, and combine rainfall as judging which kind of takes work The foundation of pattern, and to reach more preferable energy-saving effect, it is critical only that the process (refrigeration at the indoor environment temperature reaching needs Or heat) in the application of atural beat exchange that nonelectrical energy is driven, reduce air conditioning system load and reaching required indoor ring During the temperature of border, maintain stable temperature environment, make air conditioning system not want frequent start-stop, accordingly, because weather, Environment Inside the Building are many Become so that indoor, intermediate interlayer, outdoor have multiple combination situation, and for every kind of combined situation, all have corresponding energy-saving square Case is tackled, and when being in refrigeration mode, as Ti > Tm > To, this situation is generally bad in room ventilation effect, and at intermediate interlayer Occurring during by long-time sun heat radiation, now outdoor environment temperature is relatively indoor, intermediate interlayer is relatively low, opens ventilation simultaneously Mouth 11 and circulating air opening 21, form the hot and cold air the coldest air-flow of circulation and replenish in intermediate interlayer in intermediate interlayer, Attemperating unit starts refrigeration, can promote that hot and cold air circulates further, accelerates to reduce intermediate interlayer temperature, and cold airflow also leads to simultaneously Cross vent 11 and enter indoor, directly form hot and cold stream with Indoor Thermal air and cross, indoor temperature can be reduced rapidly so that be indoor Air conditioning system load reduction in process of refrigerastion, acting reduces, and plays energy-conservation effect, then, indoor and intermediate interlayer Temperature reduces under air conditioning system, attemperating unit and hot and cold air Circulation, and the relation of Ti, Tm, To is new by transforming to State, opens and closes scheme the most accordingly and also can change;As Ti > Tm=To, intermediate interlayer temperature is equal with indoor, the most not There is hot and cold air circulation, it is difficult to make intermediate interlayer lower the temperature, but indoor temperature is higher, open vent 11, circulating air opening 21 The cold airflow that can make outdoor flows into indoor, directly forms hot and cold stream with Indoor Thermal air and crosses, can reduce rapidly indoor temperature;When During Ti > Tm < To, now more weak in solar radiation or in the case of not having, and indoor and outdoors environmental change is very fast, such as indoor Equipment, flow of the people increase severely, and the movable temperature that increases raises, and at the cloudy day, the locality that outdoor city hot-fluid, artificial abortion's wagon flow cause is high Temperature, now closes circulating air opening 21, prevents outdoor thermal current from flowing into intermediate interlayer, opens vent 11, make the cold of intermediate interlayer Air-flow and indoor thermal current cross, and reduce indoor temperature, reduce air conditioning energy consumption;As Ti=Tm > To, now indoor Higher with the temperature of intermediate interlayer, with during Ti > Tm > To in like manner, open vent 11, circulating air opening 21;Work as Ti=Tm=To Time, indoor, intermediate interlayer, outdoor airflow temperature are close, and air-flow crosses and is difficult to play energy-saving effect, and in air conditioning system and temperature Under control device refrigeration, temperature will reduce quickly, sets up new stable state, thus closes off vent 11, circulating air opening 21, Help the foundation of new stable state;As Ti=Tm < To, outdoor temperature is higher, closes circulating air opening 21 thermal resistance, closes blow vent, side Help and quickly set up new stable state;As Ti < Tm > To, intermediate interlayer presents higher than indoor and outdoor due to sun heat radiation Temperature, now closes vent 11, it is to avoid thermal current enters indoor and causes indoor occupant uncomfortable, and ON cycle air port 21 is passed through Hot and cold air circulation makes intermediate interlayer lower the temperature;As Ti < Tm=To, close vent 11, circulating air opening 21, it is to avoid steam flows to Enter indoor;As Ti < Tm < To, close vent 11, circulating air opening 21, it is to avoid thermal current enters intermediate interlayer and indoor, maintains Stable state;More than include all compound modes of Ti, Tm, To, and for refrigeration mode, Ti < Tm < To, close vent 11, Circulating air opening 21 is final state during refrigeration mode and stable state, and other situations are transient state, are also that various initial condition differs In the process of refrigerastion of sample must be through process, thus, under Single-chip Controlling, attemperating unit freezes, and whenever Ti, Tm, To Compound mode when changing, Single-chip Controlling driving means performs corresponding keying scheme, whole refrigeration and reach target temperature The process that degree maintains, multi-operation mode automatically switches, and in the refrigeration just stage, utilizes atural beat to exchange fast cooling, reduces air-conditioning System energy consumption is with energy-conservation, and when reaching stable state, indoor, intermediate interlayer, outdoor temperature present gradient, two-by-two between the temperature difference less, heat pass Pass speed to be minimized, energy efficient, and two-by-two between can only be passed without the most cold and hot crossing, temperature by glass heat Environment can remain the most stable, reduces the frequent start-stop of air conditioning system, it is achieved energy-conservation, and in work-mode switching process, Outdoor rainfall exceeds standard as the first priority, rainfall as Consideration, rainfall, and circulating air opening 21 is closed, and ensures safety, right The change of external environment has adaptability to changes, and whole system is intelligent, energy-conservation;In like manner, heat the inverse process into refrigeration, the most also can It is derived by identical technique effect.
Embodiment two
A kind of integration rain induced intelligent constant temperature ecology lighting ceiling, including the modular module of integration, modular module exists On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass 1 and glass outer 2, inner layer glass 1 and outer layer glass It is hollow interlayer 3 between glass 2, it is characterized in that: the dual-side of hollow interlayer 3 is provided with circulating air opening 21, described circulated air respectively Mouth 21 is provided with the mechanism for opening/closing for opening and closing;
Described integration rain induced intelligent constant temperature ecology lighting ceiling also includes that single-chip microcomputer, described single-chip microcomputer are coupled with
Interlayer temperature sensor 62, is arranged on hollow interlayer 3, is used for detecting hollow interlayer 3 temperature and to singlechip feedbsck interlayer Temperature signal Tm;
Outdoor temperature sensor 63, is disposed in the outdoor, and is used for detecting outdoor temperature and to singlechip feedbsck outdoor temperature signal To;
Rain sensor 64, is disposed in the outdoor, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;
Driving means, is arranged on mechanism for opening/closing, is controlled by single-chip microcomputer to drive mechanism for opening/closing to open and close;
Have inside described single-chip microcomputer:
Rainfall comparing unit, for comparing rainfall signal Vr with the safe rainfall signal Vs preset;
Temperature conditioning unit, on the ceiling mounting structure being arranged in hollow layer, by the control realization refrigeration mode of single-chip microcomputer or heat Pattern and combine air port open and close scheme with realize regulation hollow layer temperature make hollow layer temperature maintain preset temperature signals Tx, Described scheme includes
When Vr is more than or equal to Vs, Single-chip Controlling mechanism for opening/closing is closed;
When Vr is less than Vs, single-chip microcomputer has following three kinds of operation reserve:
Operation reserve one, when outdoor temperature sensor 63 detects 25 degrees Celsius and To > Tm > Tx of ambient temperature To >, single Sheet machine controls mechanism for opening/closing action, makes circulating air opening 21 open, and takes away a part of heat to reduce under the effect of stack effect The temperature of hollow layer is until Tm tends to a stationary value, if Tm is > Tx, then Single-chip Controlling circulating air opening 21 is closed and starts temperature control Unit carries out refrigeration mode so that Tm=Tx;
Operation reserve two, when outdoor temperature sensor 63 detects that ambient temperature To is 22-25 degree Celsius, Single-chip Controlling is followed Ring air port 21 is opened, to realize circulating ventilation so that Tm=Tx;
Operation reserve three, when outdoor temperature sensor 63 detects ambient temperature To < 22 degrees Celsius, Single-chip Controlling open and close Mechanism action so that circulating air opening 21 is closed, and start temperature conditioning unit and carry out heating mode so that Tm=Tx.

Claims (10)

1. an integrated rain induced intelligent constant temperature ecology lighting ceiling, including the modular module of integration, modular module On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass and glass outer, inner layer glass and outer layer glass It is hollow interlayer between glass, it is characterized in that: the dual-side of hollow interlayer is provided with circulating air opening respectively,
Inner layer glass is provided with vent, and described circulating air opening, vent are equipped with the mechanism for opening/closing for opening and closing;
Described integration rain induced intelligent constant temperature ecology lighting ceiling also includes that single-chip microcomputer, described single-chip microcomputer are coupled with
Indoor temperature transmitter, is disposed in the interior, and is used for detecting indoor temperature and to singlechip feedbsck indoor temperature signal Ti;
Interlayer temperature sensor, is arranged on hollow interlayer, is used for detecting hollow interlayer temperature and to singlechip feedbsck interlayer temperature Signal Tm;
Outdoor temperature sensor, is disposed in the outdoor, and is used for detecting outdoor temperature and to singlechip feedbsck outdoor temperature signal To;
Rain sensor, is disposed in the outdoor, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;
Attemperating unit, is arranged on the ceiling mounting structure in hollow interlayer, is controlled by single-chip microcomputer and with refrigeration or heats;
Driving means, is arranged on mechanism for opening/closing, is controlled by single-chip microcomputer to drive mechanism for opening/closing to open and close;
Communication device, for the control panel communication with air conditioning system;
Have inside described single-chip microcomputer:
State reads unit, for being known that by communication device the duty of indoor air-conditioning system for refrigeration or heats;
Rainfall comparing unit, obtains rainfall comparative result for being compared with the safe rainfall signal Vs preset by rainfall signal Vr;
Refrigeration control unit, reads startup when air conditioning system is in refrigerating state for reading unit in state, fills to temperature control Put transmission cooling signals, and indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm with outdoor Temperature signal To compares, and obtains temperature comparative result, and combines rainfall comparative result and temperature comparative result determines circulating air opening Keying scheme with vent
Generate and send corresponding control signal to driving means;
Heat control unit, start for reading when air conditioning system is in and heats state at state reading unit, fill to temperature control Put transmission and heat signal, and indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm with outdoor Temperature signal To compares, and obtains temperature comparative result, and combines rainfall comparative result and temperature comparative result determines circulating air opening Keying scheme with vent
Generate and send corresponding control signal to driving means;
Described driving means is in response to refrigeration control unit or heats the control signal that control unit sends and drives mechanism for opening/closing to open Close to perform corresponding keying scheme;
Described attemperating unit freezes in response to cooling signals, heats in response to heating signal.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 1, is characterized in that: described integration Rain induced intelligent constant temperature ecology lighting ceiling also includes that host computer, described single-chip microcomputer connect host computer by bus.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 1, is characterized in that: described headstock gear Structure is shutter.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 3, is characterized in that: driving means bag Including driving module and motor, the drive shaft of described motor is connected with the rotating shaft of shutter, and described driving module couples is also controlled by Single-chip microcomputer is to drive motor positive and inverse.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 1, is characterized in that: communication device is Wireless communication module.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 1, is characterized in that: described Indoor Temperature Degree sensor, interlayer temperature sensor, the model of outdoor temperature sensor are DS18B20.
Integration rain induced intelligent constant temperature ecology lighting ceiling the most according to claim 1, is characterized in that: described state is read It is standby for taking unit and can also reading the duty of air conditioning system;
Described single-chip microcomputer also includes Opportunity awaiting control for linear unit, is in holding state for reading air conditioning system at state reading unit Shi Qidong, sends standby signal to attemperating unit;And
When rainfall comparative result is Vr < Vs, the control signal of vent, circulating air opening is opened in output simultaneously;
When rainfall comparative result is Vr >=Vs, output simultaneously closes off the control signal of vent, circulating air opening.
8. a temperature control method, realizes based on the integrated rain induced intelligent constant temperature ecology lighting ceiling described in claim 1, its Feature is: include
Step one: by the indoor temperature transmitter detection indoor temperature being disposed in the interior and believe to singlechip feedbsck indoor temperature Number Ti;
Hollow interlayer temperature is detected and to singlechip feedbsck interlayer temperature by being arranged on the interlayer temperature sensor of hollow interlayer Signal Tm;
By the outdoor temperature sensor detection outdoor temperature being disposed in the outdoor and to singlechip feedbsck outdoor temperature signal To;
By rainfall outside the rain sensor sensing chamber that is disposed in the outdoor and to singlechip feedbsck rainfall signal Vr;
By the control panel communication of communication device and air conditioning system so that single-chip microcomputer knows the duty of indoor air-conditioning system For freezing or heating;
Step 2: when single-chip microcomputer knows that air conditioning system is in refrigerating state, send cooling signals;
Indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm and outdoor temperature signal To ratio Relatively, temperature comparative result is obtained;
Rainfall signal Vr is compared with the safe rainfall signal Vs preset and obtains rainfall comparative result;
The keying scheme of circulating air opening and vent is determined in conjunction with rainfall comparative result and temperature comparative result
Generate and send corresponding control signal to driving means;
When single-chip microcomputer know air conditioning system be in heat state time, send and heat signal;
Indoor temperature signal Ti is compared with interlayer temperature signal Tm, by interlayer temperature signal Tm and outdoor temperature signal To ratio Relatively, temperature comparative result is obtained;
Rainfall signal Vr is compared with the safe rainfall signal Vs preset and obtains rainfall comparative result;
The keying scheme of circulating air opening and vent is determined in conjunction with rainfall comparative result and temperature comparative result
Generate and send corresponding control signal to driving means;
Step 3: by arranging attemperating unit, by attemperating unit in response to refrigeration on the ceiling mounting structure in hollow interlayer Signal freezes, and heats in response to heating signal;
Mechanism for opening/closing is driven to be turned on and off vent, circulating air opening to perform correspondence by driving means in response to control signal Keying scheme.
Temperature control method the most according to claim 8, is characterized in that: in step one, also includes by communication device and air-conditioning The control panel communication of system is so that single-chip microcomputer knows that the duty of indoor air-conditioning system is standby;
In step 2, also include when single-chip microcomputer knows that air conditioning system is in holding state, send standby signal to attemperating unit; And
When rainfall comparative result is Vr < Vs, the control signal of vent, circulating air opening is opened in output simultaneously;
When rainfall comparative result is Vr >=Vs, output simultaneously closes off the control signal of vent, circulating air opening.
10. an integrated rain induced intelligent constant temperature ecology lighting ceiling, including the modular module of integration, modular module On ceiling mounting structure, integral type is installed, and modular module includes inner layer glass and glass outer, inner layer glass and outer layer glass Being hollow interlayer between glass, it is characterized in that: the dual-side of hollow interlayer is provided with circulating air opening respectively, described circulating air opening is provided with For the mechanism for opening/closing opened and closed;
Described integration rain induced intelligent constant temperature ecology lighting ceiling also includes that single-chip microcomputer, described single-chip microcomputer are coupled with
Interlayer temperature sensor, is arranged on hollow interlayer, is used for detecting hollow interlayer temperature and to singlechip feedbsck interlayer temperature Signal Tm;
Outdoor temperature sensor, is disposed in the outdoor, and is used for detecting outdoor temperature and to singlechip feedbsck outdoor temperature signal To;
Rain sensor, is disposed in the outdoor, rainfall to singlechip feedbsck rainfall signal Vr outside sensing chamber;
Driving means, is arranged on mechanism for opening/closing, is controlled by single-chip microcomputer to drive mechanism for opening/closing to open and close;
Have inside described single-chip microcomputer:
Rainfall comparing unit, for comparing rainfall signal Vr with the safe rainfall signal Vs preset;
Temperature conditioning unit, on the ceiling mounting structure being arranged in hollow layer, by the control realization refrigeration mode of single-chip microcomputer or heat Pattern and combine air port open and close scheme with realize regulation hollow layer temperature make hollow layer temperature maintain preset temperature signals Tx, Described scheme includes
When Vr is more than or equal to Vs, Single-chip Controlling mechanism for opening/closing is closed;
When Vr is less than Vs, single-chip microcomputer has following three kinds of operation reserve:
Operation reserve one, when outdoor temperature sensor detects 25 degrees Celsius and To > Tm > Tx of ambient temperature To >, monolithic Machine controls mechanism for opening/closing action, makes circulating air opening open, takes away a part of heat to reduce hollow under the effect of stack effect The temperature of layer is until Tm tends to a stationary value, if Tm is > Tx, then Single-chip Controlling circulating air opening closes and start temperature conditioning unit Row refrigeration mode so that Tm=Tx;
Operation reserve two, when outdoor temperature sensor detects that ambient temperature To is 22-25 degree Celsius, Single-chip Controlling circulate Air port is opened, to realize circulating ventilation so that Tm=Tx;
Operation reserve three, when outdoor temperature sensor detects ambient temperature To < 22 degrees Celsius, Single-chip Controlling headstock gear Structure action so that circulating air opening is closed, and start temperature conditioning unit and carry out heating mode so that Tm=Tx.
CN201610648087.2A 2016-08-09 2016-08-09 Integration rain induced intelligent constant temperature ecology lighting ceiling and temperature control method Pending CN106284865A (en)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1587565A (en) * 2004-08-11 2005-03-02 曲广英 Single beam double layer automatic curtain wall
CN201507055U (en) * 2009-09-29 2010-06-16 班广生 Air outer circulating type dual-layer curtain wall
CN201817940U (en) * 2010-07-20 2011-05-04 广东金刚幕墙工程有限公司 Internal recycling double-layer curtain wall
JP2012000048A (en) * 2010-06-16 2012-01-05 Shimizu Corp Wall surface greening structure and method for constructing the same
CN103015595A (en) * 2012-12-19 2013-04-03 北京师范大学 Novel environment-friendly energy-saving curtain wall
CN104453039A (en) * 2014-12-09 2015-03-25 中国计量学院 Combined type temperature control curtain wall of triplex glass structure and temperature control method of combined type temperature control curtain wall
CN204786929U (en) * 2015-02-18 2015-11-18 西南科技大学 Sun wall natural draft's indoor air conditioning system
CN105649242A (en) * 2016-01-04 2016-06-08 安阳师范学院 Double-layer glass curtain wall structure and intelligent control method

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1587565A (en) * 2004-08-11 2005-03-02 曲广英 Single beam double layer automatic curtain wall
CN201507055U (en) * 2009-09-29 2010-06-16 班广生 Air outer circulating type dual-layer curtain wall
JP2012000048A (en) * 2010-06-16 2012-01-05 Shimizu Corp Wall surface greening structure and method for constructing the same
CN201817940U (en) * 2010-07-20 2011-05-04 广东金刚幕墙工程有限公司 Internal recycling double-layer curtain wall
CN103015595A (en) * 2012-12-19 2013-04-03 北京师范大学 Novel environment-friendly energy-saving curtain wall
CN104453039A (en) * 2014-12-09 2015-03-25 中国计量学院 Combined type temperature control curtain wall of triplex glass structure and temperature control method of combined type temperature control curtain wall
CN204786929U (en) * 2015-02-18 2015-11-18 西南科技大学 Sun wall natural draft's indoor air conditioning system
CN105649242A (en) * 2016-01-04 2016-06-08 安阳师范学院 Double-layer glass curtain wall structure and intelligent control method

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Application publication date: 20170104