CN104374001A - Intelligent system and method for balancing central heating temperature and indoor humidity - Google Patents
Intelligent system and method for balancing central heating temperature and indoor humidity Download PDFInfo
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- CN104374001A CN104374001A CN201410651824.5A CN201410651824A CN104374001A CN 104374001 A CN104374001 A CN 104374001A CN 201410651824 A CN201410651824 A CN 201410651824A CN 104374001 A CN104374001 A CN 104374001A
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Abstract
The invention discloses an intelligent system and method for balancing the central heating temperature and the indoor humidity. The system comprises a single-chip microcomputer control system, a temperature and humidity sensor, a fan, a machine shell, a humidifying module and a radiator. The single-chip microcomputer control system, the temperature and humidity sensor, the fan, the humidifying module and the radiator are mounted on the machine shell. The temperature and humidity sensor is electrically connected with the single-chip microcomputer control system. The temperature sensor is used for sensing temperatures, the temperatures are fed back to the single-chip microcomputer control system, and a controller controls the fan to operate. The humidity sensor is used for sensing indoor humidity changes, the indoor humidity changes are fed back to the single-chip microcomputer control system, and the single-chip microcomputer control system controls the fan and the humidifying module to work. The intelligent system and method solve the problem that indoor central heating in northern China is uneven and the problem that the inside of a room is dry to make people feel uncomfortable in winter in the northern China.
Description
Technical field
The present invention relates to intelligent appliance technical field, particularly relate to a kind of Intelligent heating temperature chamber humidity balance sysmte and method.
Background technology
Complete primarily of heating installation in the heating in northern China winter, this boiler is heated up water, and adopts with Cemented filling hot water to indoor, by the mode of the radiator distribute heat of indoor.In fact owing to being not that each room has radiator, even and if have radiator also can only be arranged on certain side of the interior space, this makes indoor temperature very unbalanced, the overheated people of making in place near heating installation is difficult to stand, and it is terribly cold away from the place of heating installation, easily suffer from cold flu, even if this makes people in the winter of cold, the indoor of heating do not obtain an even warm environment.
And due to north air oxygen detrition in winter, make the bad crowd of some respiratory systems, seem in the life in winter and particularly feel bad, conventional humidifier removes gauge tap after needing user to experience drying again, start humidifier, in the process waited for, the process that humidity rising needs one are very long, waits for and the experience of conventional humidifier is declined greatly.
Summary of the invention
In order to overcome above-mentioned the deficiencies in the prior art, the invention provides Intelligent heating temperature chamber humidity balance sysmte and method.Attempt to solve following problem: there is indoor heating non-uniform temperature, hot-spot during northern heating installation heating, the temperature literature and art that local is too cold, and north air oxygen detrition in winter, be unfavorable for the health of human respiratory system.
The technical solution adopted in the present invention is:
Intelligent heating temperature chamber humidity balance sysmte comprises single-chip computer control system, warm and humid sensor, fan, casing, humidification module, radiator, described single-chip computer control system, warm and humid sensor, fan, humidification module and radiator are arranged on casing, warm and humid sensor is electrically connected with single-chip computer control system, by temperature sensor senses temperature, and feed back to single-chip computer control system, controller controls fan running, changed by humidity sensor nernst cell humidity, feed back to single-chip computer control system, single-chip computer control system controls fan and humidification module work.
Described casing is connected with fan, and described chassis base is optimum thermal conducting material, is placed on by chassis base on radiator, and by optimum thermal conducting material transferring heat to radiator, drive fan, concentrates heat and send in the mode of hot blast, reach equalized temperature.
The non-base portion of described casing is the non-conductor of heat, and it is overheated to ensure fan electromotor to avoid, the normal work of controller.
The temperature humidity balance method of described system, is characterized in that:
Be placed on radiator by the chassis base of native system, warm and humid sensors towards ambient temperature is monitored in real time, collected analog quantity is converted into digital quantity, feeds back to single-chip computer control system; When collected temperature is greater than design temperature, the drive circuit of single-chip computer control system drives fan turns, and wind will flow through around radiator, and the hot-air around radiator is blown to indoor, accelerates thermal convection current, makes whole room roughly be tending towards equalized temperature;
Warm and humid sensors towards ambient humidity is sampled, transfer the humidity simulation amount collected to digital quantity to detect to single-chip computer control system, when lower than setting humidity, single-chip computer control system drive fan operates, drive humidification module to produce fine and closely woven water smoke, water smoke is by radiators heat, and temperature raises or vaporization simultaneously, fan blowout hot blast goes to indoor with water smoke, plays the effect of intelligent humidification.
The water smoke that described humidification module produces, runs into radiator, and sent by fan after heating, water smoke runs into cold air or cold object, and liquefaction phenomenon occurs, and the evolution of heat, plays the effect that wet air strengthens even indoor heat simultaneously.
Compared with prior art, the invention has the beneficial effects as follows:
Intelligent heating temperature chamber humidity balance sysmte makes the north heating installation that winter, uneven heating was even originally, under the auxiliary control system monitoring of native system, time in need, can temperature to a certain degree in compensating chamber, the household improving people is experienced.
The north indoor air oxygen detrition originally in winter, people come home from work, or student leaves school, family air oxygen detrition, be unfavorable for the respiratory health of people, and common humidifier needs the Non-follow control of people, when needs wet air, start the machine and need to wait for that humidification completes, and humidity is when reaching people's ideal value, people also need manual-lock, otherwise room air can be caused too moistening, cause harmful effect to household electrical appliances furniture etc.Native system under the control of single-chip microcomputer, by moisture stable be suitable people live live numerical value.When making people go out to return home, coming head-on is moistening warm air, improves the living standard of people and good experience effect.
Accompanying drawing explanation
Fig. 1 is Intelligent heating temperature chamber humidity balance sysmte structural representation;
In figure: single-chip computer control system 1, warm and humid sensor 2, fan 3, casing 4, humidification module 5, radiator 6.
Detailed description of the invention
Be described in detail below in conjunction with the technical scheme of accompanying drawing to invention:
As shown in Figure 1, Intelligent heating temperature chamber humidity balance sysmte comprises single-chip computer control system 1, warm and humid sensor 2, fan 3, casing 4, humidification module 5, radiator 6, described single-chip computer control system 1, warm and humid sensor 2, fan 3, humidification module 5 and radiator 6 are arranged on casing 4, warm and humid sensor 2 is electrically connected with single-chip computer control system 1, by temperature sensor 2 temperature sensor, and feed back to single-chip computer control system 1, controller controls fan 3 and operates, changed by humidity sensor 2 nernst cell humidity, feed back to single-chip computer control system 1, single-chip computer control system 1 controls fan 3 and works with humidification module 5.
Described casing 4 is connected with fan 3, and described casing 4 base is optimum thermal conducting material, is placed on radiator by casing 4 base, by optimum thermal conducting material transferring heat to radiator 6, drive fan 3, concentrates heat and sends in the mode of hot blast, reach equalized temperature.
The non-base portion of described casing is the non-conductor of heat, and it is overheated to ensure fan electromotor to avoid, the normal work of controller.
The temperature humidity balance method of described system, is characterized in that:
Be placed on radiator by casing 4 base of native system, warm and humid sensor 2 pairs of environment temperatures are monitored in real time, collected analog quantity is converted into digital quantity, feeds back to single-chip computer control system 1; When collected temperature is greater than design temperature, the drive circuit of single-chip computer control system 1 drives fan 3 to rotate, and wind will flow through around radiator, and the hot-air around radiator is blown to indoor, accelerate thermal convection current, make whole room roughly be tending towards equalized temperature;
Warm and humid sensor 2 pairs of ambient humidities are sampled, transfer the humidity simulation amount collected to digital quantity to detect to single-chip computer control system 1, when lower than setting humidity, single-chip computer control system 1 drive fan 3 operates, drive humidification module 5 to produce fine and closely woven water smoke, water smoke is heated by radiator 6 simultaneously, and temperature raises or vaporization, fan 3 blows out hot blast and goes to indoor with water smoke, plays the effect of intelligent humidification.
The water smoke that described humidification module 5 produces, runs into radiator 6, and sent by fan 3 after heating, water smoke runs into cold air or cold object, and liquefaction phenomenon occurs, and the evolution of heat, plays the effect that wet air strengthens even indoor heat simultaneously.
Be positioned over by native system on radiator, because bottom is the good conductor material of heat, heat, by being transmitted on the fin that is connected with base, makes heat energy comparatively concentrate on around fin.
By the real-time monitoring of temperature sensor to environment temperature, and collected analog quantity is converted into digital quantity, feeds back to single-chip computer control system.When collected temperature is greater than set temperature, the drive circuit of control system will drive fan turns, and at this moment wind will send around radiator and flow through, and the hot-air around radiator be blown to other indoor positions, accelerate thermal convection current, make whole room roughly be tending towards equalized temperature.
Humidity sensor is sampled to ambient humidity, will collect humidity simulation amount and transfer digital quantity to single-chip computer control system.Singlechip controller detects humidity sensor and transmits numerical value, when lower than specified humidity, singlechip controller drive fan operates, drive humidification module to produce fine and closely woven water smoke simultaneously, water smoke will be heated again by fin, temperature raises or vaporization, and the hot blast of fan blowout goes to other positions indoor with these moistening air, plays the effect of intelligent humidification.
Preferred embodiment 1
Native system body base can select copper aluminum composite material to make, and is connected, radiator employing NP-TC water channels radiator with the fin KL7603A oil (heat-conducting silicone grease) that dispels the heat.Controller can select LPC1114FBD48/302.Humidity temperature pickup uses LifeSmart environment inductor.Humidification module can select ultrasonic humidifier.Can be that humidification directly supplies water or peripheral hardware water storage module by the boiler water in radiator, user manually adds water.Fan is preferably MAXAIR8038B2HL.
Preferred embodiment 2
Native system body base is chosen as steel radiating fin, and be connected with fin with intelligence grinding HY510 heat-conducting silicone grease radiator, radiator uses happy and auspicious XHTL-801/1600.
Controller can use STC12C5A60S2-35I-LQFP44, and humidity temperature pickup uses AM2302 humicap numeral humiture module.Humidification module can select evaporation type humidifier.Peripheral hardware water storage module, user manually adds water.Fan is chosen as Yadu 5015.
Claims (5)
1. an Intelligent heating temperature chamber humidity balance sysmte, it is characterized in that comprising single-chip computer control system (1), warm and humid sensor (2), fan (3), casing (4), humidification module (5), radiator (6), described single-chip computer control system (1), warm and humid sensor (2), fan (3), humidification module (5) and radiator (6) are arranged on casing (4), warm and humid sensor (2) is electrically connected with single-chip computer control system (1), by temperature sensor (2) temperature sensor, and feed back to single-chip computer control system (1), controller controls fan (3) running, changed by humidity sensor (2) nernst cell humidity, feed back to single-chip computer control system (1), single-chip computer control system (1) controls fan (3) and works with humidification module (5).
2. according to the Intelligent heating temperature chamber humidity balance sysmte described in claim 1, it is characterized in that described casing (4) is connected with fan (3), described casing (4) base is optimum thermal conducting material, casing (4) base is placed on radiator, by optimum thermal conducting material transferring heat to radiator (6), drive fan (3), concentrates heat and sends in the mode of hot blast, reach equalized temperature.
3., according to the Intelligent heating temperature chamber humidity balance sysmte described in claim 1, it is characterized in that the non-base portion of described casing is the non-conductor of heat, it is overheated to ensure fan electromotor to avoid, the normal work of controller.
4. the temperature humidity balance method of a system as claimed in claim 1, the casing of native system (4) base is it is characterized in that to be placed on radiator, warm and humid sensor (2) is monitored in real time to environment temperature, collected analog quantity is converted into digital quantity, feeds back to single-chip computer control system (1); When collected temperature is greater than design temperature, the drive circuit of single-chip computer control system (1) drives fan (3) to rotate, and wind will flow through around radiator, and the hot-air around radiator is blown to indoor, accelerate thermal convection current, make whole room roughly be tending towards equalized temperature;
Warm and humid sensor (2) is sampled to ambient humidity, the humidity simulation amount collected is transferred to digital quantity to detect to single-chip computer control system (1), when lower than setting humidity, single-chip computer control system (1) drive fan (3) operates, drive humidification module (5) to produce fine and closely woven water smoke, water smoke is by radiator (6) heating, and temperature raises or vaporization simultaneously, fan (3) blowout hot blast goes to indoor with water smoke, plays the effect of intelligent humidification.
5. method according to claim 4, it is characterized in that the water smoke that described humidification module (5) produces, run into radiator (6), sent by fan (3) after heating, water smoke runs into cold air or cold object, liquefaction phenomenon occurs, and the evolution of heat, plays the effect that wet air strengthens even indoor heat simultaneously.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108870508A (en) * | 2018-05-21 | 2018-11-23 | 吉林建筑大学 | A kind of heat-exchange system and its heat exchanger |
CN113028495A (en) * | 2021-04-22 | 2021-06-25 | 哈尔滨理工大学 | Indoor intelligent heating installation based on acoustic control |
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CN101118139A (en) * | 2007-09-18 | 2008-02-06 | 及卫涛 | Active heat radiation type air heater radiator |
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CN201429148Y (en) * | 2009-06-29 | 2010-03-24 | 黄纪东 | Minisun warmer |
JP2010236703A (en) * | 2009-03-30 | 2010-10-21 | Mitsubishi Electric Corp | Air conditioning system |
RU122154U1 (en) * | 2012-06-01 | 2012-11-20 | Закрытое акционерное общество "ИнвестПроект" | AIR HEATING SYSTEM |
CN203550002U (en) * | 2013-09-23 | 2014-04-16 | 广东美的环境电器制造有限公司 | Heater |
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Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101118139A (en) * | 2007-09-18 | 2008-02-06 | 及卫涛 | Active heat radiation type air heater radiator |
KR20090007758U (en) * | 2008-01-28 | 2009-07-31 | 오성묵 | Humidifier Radiator |
JP2010236703A (en) * | 2009-03-30 | 2010-10-21 | Mitsubishi Electric Corp | Air conditioning system |
CN201429148Y (en) * | 2009-06-29 | 2010-03-24 | 黄纪东 | Minisun warmer |
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CN203550002U (en) * | 2013-09-23 | 2014-04-16 | 广东美的环境电器制造有限公司 | Heater |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108870508A (en) * | 2018-05-21 | 2018-11-23 | 吉林建筑大学 | A kind of heat-exchange system and its heat exchanger |
CN108870508B (en) * | 2018-05-21 | 2020-09-11 | 吉林建筑大学 | Heat exchange system |
CN113028495A (en) * | 2021-04-22 | 2021-06-25 | 哈尔滨理工大学 | Indoor intelligent heating installation based on acoustic control |
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Application publication date: 20150225 |