CN203628910U - Radiation air conditioner system - Google Patents
Radiation air conditioner system Download PDFInfo
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- CN203628910U CN203628910U CN201320859062.9U CN201320859062U CN203628910U CN 203628910 U CN203628910 U CN 203628910U CN 201320859062 U CN201320859062 U CN 201320859062U CN 203628910 U CN203628910 U CN 203628910U
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Abstract
The utility model provides a radiation air conditioner system. The radiation air conditioner system comprises an air source heat pump arranged outdoors, a refrigerating fluid circulation pipeline, a plurality of hydraulic modules, fresh air dehumidifiers, water distribution and collection devices and a plurality of radiation tail ends. The refrigerating fluid circulation pipeline is used for conveying heat generated by the air source heat pump and connected with the air source heat pump. The hydraulic modules are used for making the fresh air water loops and radiation water loops exchange heat with the refrigerating fluid circulating pipeline together, and are all connected to the refrigerating fluid circulation pipeline. Each hydraulic module is connected with the corresponding fresh air water loop and the corresponding radiation water loop. The fresh air dehumidifiers are connected with the fresh air water loops. The water distribution and collection devices are connected with the radiation water loops. The radiation tail ends are connected to the water distribution and collection devices. The radiation air conditioner system is simple in design, easy to install, reliable in running, capable of supporting energy saving behaviors, and capable of lowering running energy consumption to a large extent.
Description
Technical field
The utility model relates to air conditioning in residential buildings System design technology field, particularly a kind of air-conditioning system.
Background technology
Radiation cooling (warming up) refers to the temperature on one or more surfaces in reduction (rising) building enclosure inner surface, form cold (heat) radiating surface, rely on the radiant heat exchange of radiating surface and human body, furniture and building enclosure remaining surface to carry out the technical method of cooling (warming up).Radiating surface can be by arranging cold (heat) pipeline in building enclosure, also can add radiant panel at ceiling or wall outer surface and realize.Due to the variation of radiating surface and building enclosure and furniture surface temperature, cause the heat convection between they and air to be strengthened, strengthen cooling (warming up) effect.In this technology, in general, Radiant exothermicity accounts for the more than 50% of total heat exchange amount.Economic development is in recent years rapid, and medium-to-high grade apartment, each big city, villa quantity increase severely.The requirement improving constantly for meeting user's indoor comfort degree, air-conditioning system development is swift and violent.
In prior art, air-conditioning system is all that entirety is controlled, and adopts the radiation tail end in all rooms of switch control; But due to the villa for general or club, because house utilization rate is not high, the in the situation that of thering is air-conditioning demand in indivedual rooms, must open whole air-conditioning system, thereby cause energy waste.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of radiation tail end can floor switch, and can not have influence on the air-conditioning system of other layer of air-conditioning system.
For solving the problems of the technologies described above, embodiment of the present utility model provides a kind of air-conditioning system, comprising:
Air source heat pump, is arranged at outdoor;
The refrigerant circulation line that produces heat for delivery of described air source heat pump, is connected with described air source heat pump;
For making the common multiple hydraulic modules that carry out heat exchange with described refrigerant circulation line of described new geomantic omen loop and described radiation water loops, multiple described hydraulic modules are all connected in described refrigerant circulation line, on each described hydraulic module, are also connected with: a new geomantic omen loop and a radiation water loops;
Fresh air dehumidifier, is connected with described new geomantic omen loop;
Water collecting and diversifying device, is connected with described radiation water loops;
And, be connected to the multiple radiation tail ends on described water collecting and diversifying device.
Air-conditioning system as above, wherein, each described hydraulic module is all arranged at indoor.
Air-conditioning system as above, wherein, described refrigerant circulation line adopts copper pipe.
Air-conditioning system as above, wherein, arranges two groups of water inlets and delivery port on each described hydraulic module; The wherein water inlet of a group and delivery port, is connected with described new geomantic omen loop respectively;
The water inlet of another group and delivery port, be connected with described radiation water loops respectively.
Air-conditioning system as above, wherein, described hydraulic module comprises:
Water pump for the water extraction in described delivery port for pressure;
For making the common plate type heat exchanger that carries out heat exchange with described refrigerant circulation line of described new geomantic omen loop and described radiation water loops;
For getting rid of the air bleeding valve of gas in described plate type heat exchanger, be arranged at the top of described hydraulic module;
For making the level pressure expansion drum of described refrigerant circulation line heat release;
And, be arranged at the filter in described water inlet.
Air-conditioning system as above, wherein, described hydraulic module also comprises:
For the water compensating valve to described new geomantic omen loop or the moisturizing of described radiation water loops, be arranged at described hydraulic module outside;
And, for giving the drain valve of described new geomantic omen loop or the draining of described radiation water loops, be arranged at described hydraulic module exterior bottom.
Air-conditioning system as above, wherein, described radiation tail end is metal radiation top board or capillary type radiant panel.
Air-conditioning system of the present utility model, by refrigerant circulation line, the heat of air source heat pump and multiple hydraulic module are exchanged, each hydraulic module again two different water loops in parallel is realized cutting apart of fresh air dehumidification and air-conditioning system, before radiation tail end, be provided with water collecting and diversifying device, for regulating the on off state of each radiation tail end simultaneously.The utility model design and installation is simple, reliable, and supportive behavior is energy-conservation, can reduce to a great extent operation energy consumption.
Accompanying drawing explanation
Fig. 1 is the structural representation of the air-conditioning system of the utility model embodiment;
[description of reference numerals]
1: air source heat pump; 2: refrigerant circulation line; 3: hydraulic module; 4: new geomantic omen loop; 5: radiation water loops; 6: water collecting and diversifying device; 7: fresh air dehumidifier; 8: radiation tail end.
The specific embodiment
For making the technical problems to be solved in the utility model, technical scheme and advantage clearer, be described in detail below in conjunction with the accompanying drawings and the specific embodiments.
Fig. 1 is the structural representation of the air-conditioning system of the utility model embodiment; The air-conditioning system of the present embodiment comprises: air source heat pump 1, refrigerant circulation line 2, multiple hydraulic module 3, multiple new geomantic omens loop 4, multiple radiation water loops 5, multiple water collecting and diversifying device 6, multiple fresh air dehumidifier 7 and multiple radiation tail end 8.The general equal corresponding new geomantic omen loop of each hydraulic module 34, radiation water loops 5, water collecting and diversifying device 6, fresh air dehumidifier 7 and a multiple radiation tail end 8.
Concrete annexation is as follows, and air source heat pump 1 is generally positioned at outdoorly, also can be arranged in the environment of other high-efficiency operation; Refrigerant circulation line 2 is connected with air source heat pump 1, the heat that refrigerant circulation line 2 produces for delivery of air source heat pump 1, and each hydraulic module 3 is all connected in refrigerant circulation line 2; On each hydraulic module 3, be also connected with: a new geomantic omen loop 4 and a radiation water loops 5; The Main Function of hydraulic module 3 is: make on each hydraulic module 3 the new geomantic omen loop 4 connecting and the radiation water loops being connected on each hydraulic module 35 jointly and refrigerant circulation line 2 is carried out heat exchange; Fresh air dehumidifier 7 is connected with new geomantic omen loop 4, and water collecting and diversifying device 6 is connected with radiation water loops 5; On water collecting and diversifying device 6, be connected with multiple radiation tail ends 8, radiation tail end 8 is generally metal radiation top board and/or capillary type radiant panel.Water collecting and diversifying device 6 is provided with one group of switch valve with the junction of each radiation tail end 8, for controlling the on off state of this radiation tail end 8.
The air-conditioning system of the utility model embodiment, by refrigerant circulation line, the heat of air source heat pump and multiple hydraulic module are exchanged, each hydraulic module again two different water loops in parallel is realized cutting apart of fresh air dehumidification and air-conditioning system, before radiation tail end, be provided with water collecting and diversifying device, for regulating the on off state of each radiation tail end simultaneously.The utility model design and installation is simple, reliable, and supportive behavior energy-conservation (be that each hydraulic module 3 can freely be closed, each radiation tail end 8 also can freely be closed), can reduce operation energy consumption to a great extent.
In addition, it should be noted that, the new geomantic omen loop 4 in the present embodiment, radiation water loops 5 and refrigerant circulation line 2, they include an efferent duct and return duct, thereby make coupled equipment form a heat exchange closed loop.
On the basis of above-described embodiment, each hydraulic module 3 is all arranged at indoor; Generally, all place a hydraulic module 3 and fresh air dehumidifier 7 for indoor every layer.Thereby make every one deck can carry out separately dehumidifying and cooling operation.Meanwhile, for increasing heat exchanger effectiveness, the general copper pipe that adopts of refrigerant circulation line 2.The compressor of air source heat pump 1 inside generally adopts frequency-changeable compressor.
On the basis of above-described embodiment, further, two groups of water inlets of operated by rotary motion and delivery port on each hydraulic module 3; The wherein water inlet of a group and delivery port, is connected with new geomantic omen loop 4 respectively; The water inlet of another group and delivery port, be connected with radiation water loops 5 respectively.
On the basis of above-described embodiment, further, hydraulic module 3 comprises: water pump, plate type heat exchanger, air bleeding valve, level pressure expansion valve, filter, water compensating valve and drain valve.Water pump, for supplying pressure to the water extraction in delivery port, is delivered to new geomantic omen loop 4 and radiation water loops 5 by the water with pressure; Plate type heat exchanger is used for making new geomantic omen loop 4 and radiation water loops 5 is common and refrigerant circulation line 2 is carried out heat exchange; Air bleeding valve is arranged at the top (or top of plate type heat exchanger) of each hydraulic module 3, for getting rid of the gas in plate type heat exchanger; Level pressure expansion drum is used for making refrigerant circulation line 2 expansion heat releases, is generally connected among refrigerant circulation line 2; Filter is arranged in water inlet, plays the filtration to recirculation water.Water compensating valve is arranged at hydraulic module 3 outsides, for giving new geomantic omen loop 4 or 5 moisturizings of radiation water loops; Drain valve is arranged at hydraulic module 3 exterior bottom, for giving new geomantic omen loop 4 or 5 drainings of radiation water loops.
On the basis of above-described embodiment, further, in fresh air dehumidifier 7, be provided with circularly cooling compressor, this circularly cooling compressor comprises compressor, evaporimeter, expansion valve and condenser, condenser is for passing to new geomantic omen loop 4 by the heat giving out, take away by the condensation heat that interior fresh air dehumidifier 7 circularly cooling compressor can be produced from hydraulic module 3 recirculated water out, reach the object of fresh air dehumidification.
The course of work of the present embodiment is as follows:
When summer operation, air source heat pump 1 produces refrigeration, by the water in the cooling hydraulic module 3 of refrigerant circulation line 2, carry out heat exchange by hydraulic module 3 and refrigerant circulation line 2 again, 18 degree cold water swap out, cold water is transported to radiation tail end 8 by new geomantic omen loop 4 and radiation water loops 5 and fresh air dehumidifier 7 carries out indoor radiation heat transfer, reaches the object of indoor comfort degree.For guaranteeing the stable of leaving water temperature and flow, new geomantic omen loop 4 and radiation water loops 5 are connected in parallel in hydraulic module 3.Because the supply water temperature in summer of radiation tail end 8 is generally 18 degree, and the cold water of 18 degree can not meet the requirement of fresh air dehumidification, therefore the fresh air dehumidifier 7 in the present embodiment adopts the fresh air dehumidifier of built-in circularly cooling compressor, the heat of the condenser of circularly cooling compressor is taken away by new geomantic omen loop 4, and the cold water of 18 degree only plays the effect of taking away condensation heat;
When winter operation, air source heat pump 1 produces as water heater and uses, heat the water in hydraulic module 3 by refrigerant circulation line 2, hydraulic module 3 carries out heat exchange with refrigerant loop 2,40 degree hot water swap out, hot water is transported to radiation tail end 8 by new geomantic omen loop 4 and radiation water loops 5 and fresh air dehumidifier 7 carries out indoor radiation heat transfer, reaches the object of indoor comfort degree;
Excessively season, air source heat pump 1 and hydraulic module 3 are out of service, only open the blower fan in fresh air dehumidifier 7, reach the object of room ventilation ventilation.
The above is preferred embodiment of the present utility model; should be understood that; for those skilled in the art; do not departing under the prerequisite of principle described in the utility model; can also make some improvements and modifications, these improvements and modifications also should be considered as protection domain of the present utility model.
Claims (8)
1. an air-conditioning system, is characterized in that, comprising:
Air source heat pump, is arranged at outdoor;
The refrigerant circulation line that produces heat for delivery of described air source heat pump, is connected with described air source heat pump;
For making the common multiple hydraulic modules that carry out heat exchange with described refrigerant circulation line of described new geomantic omen loop and described radiation water loops, multiple described hydraulic modules are all connected in described refrigerant circulation line, on each described hydraulic module, are also connected with: a new geomantic omen loop and a radiation water loops;
Fresh air dehumidifier, is connected with described new geomantic omen loop;
Water collecting and diversifying device, is connected with described radiation water loops;
And, be connected to the multiple radiation tail ends on described water collecting and diversifying device.
2. air-conditioning system according to claim 1, is characterized in that, each described hydraulic module is all arranged at indoor.
3. air-conditioning system according to claim 1, is characterized in that, described refrigerant circulation line adopts copper pipe.
4. air-conditioning system according to claim 1, is characterized in that, two groups of water inlets and delivery port are set on each described hydraulic module; The wherein water inlet of a group and delivery port, is connected with described new geomantic omen loop respectively;
The water inlet of another group and delivery port, be connected with described radiation water loops respectively.
5. air-conditioning system according to claim 4, is characterized in that, described hydraulic module comprises:
Water pump for the water extraction in described delivery port for pressure;
For making the common plate type heat exchanger that carries out heat exchange with described refrigerant circulation line of described new geomantic omen loop and described radiation water loops;
For getting rid of the air bleeding valve of gas in described plate type heat exchanger, be arranged at the top of described hydraulic module;
For making the level pressure expansion drum of described refrigerant circulation line heat release;
And, be arranged at the filter in described water inlet.
6. air-conditioning system according to claim 5, is characterized in that, described hydraulic module also comprises:
For the water compensating valve to described new geomantic omen loop or the moisturizing of described radiation water loops, be arranged at described hydraulic module outside;
And, for giving the drain valve of described new geomantic omen loop or the draining of described radiation water loops, be arranged at described hydraulic module exterior bottom.
7. air-conditioning system according to claim 1, is characterized in that, described radiation tail end is metal radiation top board and/or capillary type radiant panel.
8. air-conditioning system according to claim 1, it is characterized in that, be provided with circularly cooling compressor in described fresh air dehumidifier, described circularly cooling compressor comprises compressor, evaporimeter, expansion valve, and, for transferring heat to the condenser of described new geomantic omen loop.
Priority Applications (1)
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CN201320859062.9U CN203628910U (en) | 2013-12-23 | 2013-12-23 | Radiation air conditioner system |
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CN201320859062.9U CN203628910U (en) | 2013-12-23 | 2013-12-23 | Radiation air conditioner system |
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CN201320859062.9U Expired - Fee Related CN203628910U (en) | 2013-12-23 | 2013-12-23 | Radiation air conditioner system |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106839517A (en) * | 2017-03-02 | 2017-06-13 | 袁军 | A kind of heat energy utilization method and system for air adjustment |
CN107504600A (en) * | 2017-09-01 | 2017-12-22 | 邱宏祥 | Monoblock type radiation air-conditioner unit |
CN112178779A (en) * | 2020-09-30 | 2021-01-05 | 南京慧和建筑技术有限公司 | Air conditioning system with radiation tail end capable of preventing condensation |
-
2013
- 2013-12-23 CN CN201320859062.9U patent/CN203628910U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106839517A (en) * | 2017-03-02 | 2017-06-13 | 袁军 | A kind of heat energy utilization method and system for air adjustment |
CN107504600A (en) * | 2017-09-01 | 2017-12-22 | 邱宏祥 | Monoblock type radiation air-conditioner unit |
CN112178779A (en) * | 2020-09-30 | 2021-01-05 | 南京慧和建筑技术有限公司 | Air conditioning system with radiation tail end capable of preventing condensation |
CN112178779B (en) * | 2020-09-30 | 2021-07-09 | 南京慧和建筑技术有限公司 | Air conditioning system with radiation tail end capable of preventing condensation |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP01 | Change in the name or title of a patent holder |
Address after: Qixia District of Nanjing City, Jiangsu province 210049 horses Street purple Road No. 1 building 4 Patentee after: Jiangsu Huiju Architecture Technology Co., Ltd. Address before: Qixia District of Nanjing City, Jiangsu province 210049 horses Street purple Road No. 1 building 4 Patentee before: JIANGSU LANDSEA HUIJU BUILDING SCIENCE & TECHNOLOGY CO., LTD. |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140604 Termination date: 20201223 |