CN203642355U - Dynamic temperature adjusting system of air conditioner - Google Patents
Dynamic temperature adjusting system of air conditioner Download PDFInfo
- Publication number
- CN203642355U CN203642355U CN201320837665.9U CN201320837665U CN203642355U CN 203642355 U CN203642355 U CN 203642355U CN 201320837665 U CN201320837665 U CN 201320837665U CN 203642355 U CN203642355 U CN 203642355U
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- air
- conditioning
- internal machine
- copper pipe
- adjusting system
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Abstract
The utility model discloses a dynamic temperature adjusting system of an air conditioner. The dynamic temperature adjusting system of the air conditioner comprises a track, wherein an air conditioner internal machine is arranged on the track in a sliding mode. The dynamic temperature adjusting system further comprises an infrared camera, reads user position information through the infrared camera, controls air supply performed by the air conditioner internal machine moving the position close to a user and ensures the temperature reducing speed. In addition, the dynamic temperature adjusting system is provided with multiple evenly-distributed air outlets, so that the air outlet direction of the air conditioner always faces the user, the temperature reducing or temperature rise speed is high, and energy consumption is effectively reduced.
Description
Technical field
The regulating system that the utility model relates to air conditioner refrigerating or heats.
Background technology
The concrete principle of air-conditioning be mainly by compressor by the gaseous fluorine Leon of the freon boil down to HTHP of gaseous state, then deliver to the liquid freon that becomes medium temperature and medium pressure after condenser (off-premises station) heat radiation, be hot blast so off-premises station produces by boasting.Liquid freon is through capillary, enter evaporimeter (indoor set), space increases suddenly, pressure reduces, and liquid freon will be vaporized, (from liquid state to gaseous state, being a process for heat absorption), absorb a large amount of heats, evaporimeter will turn cold, and the fan of indoor set is blown over indoor air from evaporimeter, is exactly cold wind so indoor set produces by boasting; Airborne water vapour will condense into water droplet after running into cold evaporimeter, spills out along water pipe, the reason of air-conditioning meeting water outlet that Here it is.Then the freon of gaseous state is got back to compressor continuation compression, continues circulation.When heating, have parts that are cross valve, make freon contrary during with refrigeration at the flow direction of condenser and evaporimeter, so outdoor when heating, what blow is cold wind, and what indoor set blew is hot blast.
When air-conditioning uses, on remote control panel, input the instruction of a specified temp and specific wind direction by user's operating and remote controlling plate, make air-conditioning export cold wind or the warm braw of certain wind direction according to this instruction, in the time that environment temperature reduces or is elevated to the temperature value (this temperature value is by the temperature sensor senses on air-conditioning internal machine) of setting, the central control system of air-conditioning is just controlled this temperature constant in settings; Therefore in the time that indoor use air-conditioning is lowered the temperature, the problem often running into is: because the effect of air-conditioning temperature-reducing or intensification is with cooling or till being warmed up near temperature air-conditioning internal machine and reaching setting value, now indoor cooling-down effect is everywhere inconsistent; But for user, many times user is often in indoor a certain ad-hoc location, when having two users, may be in indoor two ad-hoc locations, now obviously unimportant for the temperature of other position, therefore obviously waste the unnecessary energy for the cooling that does not need cooling place.
Summary of the invention
For the deficiencies in the prior art, the utility model provides air-conditioner temperature dynamic adjusting system.
The utility model is achieved by the following technical solution: air-conditioner temperature dynamic adjusting system, comprise air-conditioning unit, described air-conditioning unit comprises air-conditioning internal machine and outdoor machine of air-conditioner, described air-conditioning internal machine comprises heat exchanger and turbine assembly, by the gas after heat exchange in turbine assembly output heat exchanger, at air-conditioning, room ceiling is installed a circle track is housed, described air-conditioning internal machine slides to be loaded on described track and by driving mechanism and drives air-conditioning internal machine can be slided in orbit, at Base top contact first copper pipe in described room, described the first copper pipe is connected with outdoor machine of air-conditioner, also comprise the second copper pipe, described the second copper pipe and the first copper pipe are communicated with, and described the second copper pipe and described the first copper pipe are rotationally connected place's rotary seal, on described drive unit, be integrated with receiver and control device, described air-conditioning internal machine has multiple air outlets, heat exchanger of air condition and turbine assembly are rotatable to be arranged in air-conditioning internal machine housing, described air-conditioning unit also comprises the central control system of controlling heat converter air-out, also comprise thermal camera, described thermal camera is used for the control device that reads position of human body signal and above-mentioned signal is passed to central controller and described drive unit, make described drive unit drive described air-conditioning internal machine to slide in orbit, near the position of described human body, central controller is processed above-mentioned signal simultaneously, make air-conditioning unit heat exchanger and turbine assembly turn to the air outlet near position of human body, at this air outlet output cold wind or hot blast.
In technique scheme, described thermal camera scanning angle is between 0 ~ 360 degree.
The utlity model has following beneficial effect: by the receiver on described thermal camera and air-conditioning unit and the cooperation of central control system, dynamic adjustments user's temperature around, make the user can be at any time in a comfortable environment, and owing to making air conditioning exhausting wind direction all the time towards user, cooling or intensification effect are faster, have effectively reduced energy loss.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the distribution schematic diagram of air outlet.
Fig. 3 is the schematic diagram of air-conditioning internal machine.
The specific embodiment
Below the utility model is described in further detail: referring to Fig. 1 to Fig. 3, air-conditioner temperature dynamic adjusting system, comprise air-conditioning unit, described air-conditioning unit comprises air-conditioning internal machine 1 and outdoor machine of air-conditioner 3, described air-conditioning internal machine 1 comprises heat exchanger 11 and turbine assembly 12, by the gas after heat exchange in turbine assembly 12 output heat exchangers 11, at air-conditioning, room ceiling is installed a circle track 2 is housed, described air-conditioning internal machine 1 slides to be loaded on described track 2 and by driving mechanism and drives air-conditioning internal machine 1 can be slided on track 2, at Base top contact first copper pipe 4 in described room, described the first copper pipe 4 is connected with outdoor machine of air-conditioner 3, also comprise the second copper pipe 5, described the second copper pipe 5 and the first copper pipe 4 are communicated with, and described the second copper pipe 5 and described the first copper pipe 4 are rotationally connected place's rotary seal, on described the second copper pipe 5, there is telescopic structure 50, this concrete telescopic structure 50 is bellows, guarantee that air-conditioning internal machine 1 can slide on erose track 2, on described drive unit, be integrated with receiver and control device, described air-conditioning internal machine 1 has multiple air outlets 10, heat exchanger of air condition 11 and turbine assembly 12 are rotatable to be arranged in air-conditioning internal machine housing, described air-conditioning unit also comprises the central control system of controlling heat exchanger 11 air-out, also comprise thermal camera, described thermal camera is used for the control device that reads position of human body signal and above-mentioned signal is passed to central controller and described drive unit, make described drive unit drive described air-conditioning internal machine 1 to slide on track 2, near the position of described human body, central controller is processed above-mentioned signal simultaneously, make air-conditioning unit heat exchanger 11 and turbine assembly 12 turn to the air outlet 10 near position of human body, export cold wind or hot blast at this air outlet 10.
Further, on human body, wear ringwise temperature sensor (can directly be worn in the wrist of human body), a default temperature value t1 on central controller, this temperature value t1, between 23 ℃-30 ℃, guarantees that user can have comfortable sensation.The first air outlet and second air outlet of air-conditioning unit are exported cold wind or hot blast towards different users respectively, until the actual temperature value that described temperature sensor detects is while equaling default temperature value t1, central controller controls air-conditioning unit makes described air-conditioning unit stop cooling or heat up.
Claims (2)
1. air-conditioner temperature dynamic adjusting system, comprise air-conditioning unit, described air-conditioning unit comprises air-conditioning internal machine (1) and outdoor machine of air-conditioner (3), described air-conditioning internal machine (1) comprises heat exchanger (11) and turbine assembly (12), by the gas after heat exchange in turbine assembly (12) output heat exchanger (11), it is characterized in that: at air-conditioning, room ceiling is installed a circle track (2) is housed, described air-conditioning internal machine (1) slides and is loaded into described track (2) above and is driven air-conditioning internal machine (1) can above be slided at track (2) by driving mechanism, at Base top contact first copper pipe (4) in described room, described the first copper pipe (4) is connected with outdoor machine of air-conditioner (3), also comprise the second copper pipe (5), described the second copper pipe (5) and the first copper pipe (4) are communicated with, and described the second copper pipe (5) and described the first copper pipe (4) are rotationally connected place's rotary seal, on described drive unit, be integrated with receiver and control device, described air-conditioning internal machine (1) has multiple air outlets (10), heat exchanger of air condition (11) and turbine assembly (12) are rotatable to be arranged in air-conditioning internal machine housing, described air-conditioning unit also comprises the central control system of controlling heat exchanger (11) air-out, also comprise thermal camera, described thermal camera is used for the control device that reads position of human body signal and above-mentioned signal is passed to central controller and described drive unit, make described drive unit drive described air-conditioning internal machine (1) in the upper slip of track (2), near the position of described human body, central controller is processed above-mentioned signal simultaneously, make air-conditioning unit heat exchanger (11) and turbine assembly (12) turn to the air outlet (10) near position of human body, at this air outlet (10) output cold wind or hot blast.
2. air-conditioner temperature dynamic adjusting system as claimed in claim 1, is characterized in that: described thermal camera scanning angle is between 0 ~ 360 degree.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320837665.9U CN203642355U (en) | 2013-12-19 | 2013-12-19 | Dynamic temperature adjusting system of air conditioner |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320837665.9U CN203642355U (en) | 2013-12-19 | 2013-12-19 | Dynamic temperature adjusting system of air conditioner |
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CN203642355U true CN203642355U (en) | 2014-06-11 |
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CN201320837665.9U Expired - Fee Related CN203642355U (en) | 2013-12-19 | 2013-12-19 | Dynamic temperature adjusting system of air conditioner |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103644601A (en) * | 2013-12-19 | 2014-03-19 | 宁波瑞易电器科技发展有限公司 | System for dynamically regulating air conditioner temperature |
CN108917845A (en) * | 2018-07-25 | 2018-11-30 | 浙江工商大学 | Utilize the automatic tracing heating system and method for infrared measurement of temperature ranging |
CN108981067A (en) * | 2018-07-25 | 2018-12-11 | 浙江工业大学 | Give the automatic tracing heating system and method for localization by ultrasonic infrared measurement of temperature |
-
2013
- 2013-12-19 CN CN201320837665.9U patent/CN203642355U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103644601A (en) * | 2013-12-19 | 2014-03-19 | 宁波瑞易电器科技发展有限公司 | System for dynamically regulating air conditioner temperature |
CN103644601B (en) * | 2013-12-19 | 2016-08-17 | 宁波瑞易电器科技发展有限公司 | Air-conditioner temperature dynamic adjusting system |
CN108917845A (en) * | 2018-07-25 | 2018-11-30 | 浙江工商大学 | Utilize the automatic tracing heating system and method for infrared measurement of temperature ranging |
CN108981067A (en) * | 2018-07-25 | 2018-12-11 | 浙江工业大学 | Give the automatic tracing heating system and method for localization by ultrasonic infrared measurement of temperature |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140611 Termination date: 20141219 |
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EXPY | Termination of patent right or utility model |