CN201652991U - Composite low-carbon all-new wind-water source thermal pump - Google Patents
Composite low-carbon all-new wind-water source thermal pump Download PDFInfo
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- CN201652991U CN201652991U CN2010201730653U CN201020173065U CN201652991U CN 201652991 U CN201652991 U CN 201652991U CN 2010201730653 U CN2010201730653 U CN 2010201730653U CN 201020173065 U CN201020173065 U CN 201020173065U CN 201652991 U CN201652991 U CN 201652991U
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Abstract
The utility model relates to a composite low-carbon all-new wind-water source thermal pump, comprising a cabinet, a total heat exchanger, a heat exchanger, a blower, an exhaust fan and a filter screen, wherein, a fresh air inlet and an exhausted air inlet are arranged at one side of the cabinet, a fresh air outlet and an exhausted air outlet are arranged at the other side of the cabinet; the cabinet is divided into an upper cabinet and a lower cabinet by a baffle; the fresh air outlet is arranged on the side wall of the upper cabinet; a sleeve heat exchanger, a variable-frequency compressor, an air-water separator, a four-way valve and an invariable-frequency compressor are fixed in the lower cabinet and close to the total heat exchanger; an electric control box is arranged in the lower cabinet and above the exhaust fan; a water inlet and a water outlet are arranged outside the cabinet; a condensed water outlet is arranged at the bottom of the cabinet. The utility model has the advantages of less energy consumption in service, high lightness and less material consumption of the casing, convenient assembly, and high expansibility and combination performances, thereby the utility model is applicable to more occasions.
Description
Technical field
The utility model relates to air-conditioning technical field, relates in particular to a kind of compound low-carbon type brand-new air/water source heat pump.
Background technology
Along with the development of society, the IAQ problem more and more is subjected to people's attention.Various commercial such as modern megastore, supermarket, subterranean commercial area, shopping center building is the place that personnel concentrate the most in the city, often be in the passenger flow congestion state, CO2, body odor that human body produces, the dust that passenger flow is brought into, bacterium, the volatile organic matter that building and ornament materials and some commodity distribute in adding etc., brought serious pollution to environment, its contaminated indoor air environment will influence the health the chamber personnel.These drawbacks based on traditional return air air-conditioning, at present a lot of architectural designs all have independently VMC and exhaust system, more consideration personnel's is healthy, and often ignored recycling to energy, if choose vogue word in 2009, " low-carbon economy " is bound to be listed, and country advocates the greenhouse gases of minimum emissions in development now, and the colleague obtains maximum social output.Therefore improve efficiency of energy utilization, reduce energy resource consumption, the sustainable development of supporting national economy and social activities with the low-carbon (LC) energy or the carbon-free energy seems particularly important.
The utility model content
The purpose of this utility model is to provide a kind of compound low-carbon type brand-new air/water source heat pump, and it has not only guaranteed the air quality in room but also utilize new wind and the indoor exhaust wind heat exchange, reclaims energy of exhaust air, reduces power consumption, using electricity wisely.
The technical solution adopted in the utility model is:
Compound low-carbon type brand-new air/water source heat pump, comprise cabinet, also comprise total-heat exchanger, heat exchanger, pressure fan, exhaust blower and screen pack, described cabinet one side has fresh inlet and indoor exhaust wind import, described cabinet opposite side has new wind outlet and wind exhausting outlet, and described fresh inlet and air draft import department are equipped with screen pack;
Be fixed with total-heat exchanger in the described cabinet near fresh inlet and indoor exhaust wind import, the bypass passageways top of cabinet bottom is fixed in described total-heat exchanger bottom, and the top of cabinet is fixed at the top of described total-heat exchanger;
Described cabinet is divided into upper box and lower box by partition part, and described new wind outlet is opened in the upper box sidewall, and described upper box is fixed with pressure fan near new wind exit, and described upper box is fixed with heat exchanger near the total-heat exchanger place;
Described lower box is fixed with double-tube heat exchanger, frequency-changeable compressor, gas-liquid separator, cross valve and invariable frequency compressor near the total-heat exchanger place, described wind exhausting outlet is opened in the lower box sidewall, described lower box is fixed with exhaust blower near the wind exhausting outlet place, and the lower box on described exhaust blower top is provided with electric cabinet; Described cabinet outside is provided with water inlet, delivery port, and described cabinet bottom is provided with the condensation mouth of a river.
Also be fixed with wet-membrane humidifier in the upper box between described heat exchanger and the pressure fan.
Described fresh inlet and wind exhausting outlet are equipped with fan housing, or all are connected with and lead to outdoor ventilation duct.
The beneficial effects of the utility model: utilize indoor exhaust wind and outdoor new wind to carry out heat exchange, carry out recuperation of heat, saved a lot of energy; Unit casing is slight, and high consumptive material is few, and light, autgmentability strong modularity is installed, and is applicable to numerous occasions.
Description of drawings
Fig. 1 is a structural representation of the present utility model.
Fig. 2 is the A-A view of Fig. 1.
Fig. 3 is an overall diagram of the present utility model.
Fig. 4 is the installation site schematic diagram of an embodiment of the utility model.
Fig. 5 is the installation site schematic diagram of another embodiment of the utility model.
Wherein: 1, cabinet, 2, total-heat exchanger, 3, heat exchanger, 4, wet-membrane humidifier, 5, pressure fan, 6, exhaust blower, 7, screen pack, 8, fresh inlet, 9, the air draft import, 10, new wind outlet, 11, wind exhausting outlet, 12, dividing plate, 13, upper box, 14, lower box, 15, double-tube heat exchanger, 16, frequency-changeable compressor, 17, gas-liquid separator, 18, cross valve, 19, invariable frequency compressor, 20, electric cabinet, 21, water inlet, 22, delivery port, 23, the condensation mouth of a river, 24, fan housing, 25, bypass passageways, 26, ventilation duct.
The specific embodiment
As shown in Figure 1 to Figure 3, compound low-carbon type brand-new air/water source heat pump of the present utility model, comprise cabinet 1, also comprise total-heat exchanger 2, heat exchanger 3, wet-membrane humidifier 4, pressure fan 5, exhaust blower 6 and screen pack 7, cabinet 1 one sides have fresh inlet 8 and air draft import 9, cabinet 1 opposite side has new wind outlet 10 and wind exhausting outlet 11, and fresh inlet 8 and air draft import 9 places are equipped with screen pack 7.Be fixed with total-heat exchanger 2 in the cabinet 1 near fresh inlet 10 and air draft import 11, bypass passageways 25 tops of cabinet 1 bottom are fixed in total-heat exchanger 2 bottoms, and the top of cabinet 1 is fixed at the top of total-heat exchanger 2.Cabinet 1 is divided into upper box 13 and lower box 14 by dividing plate 12 parts, new wind outlet 10 is opened in upper box 13 sidewalls, upper box 13 exports 10 places near new wind and is fixed with pressure fan 5, upper box 13 is fixed with heat exchanger 3 near total-heat exchanger 2 places, also is fixed with wet-membrane humidifier 4 in the upper box 13 between heat exchanger 3 and the pressure fan 5.Lower box 14 is fixed with double-tube heat exchanger 15, frequency-changeable compressor 16, gas-liquid separator 17, cross valve 18 and invariable frequency compressor 19 near total-heat exchanger 2 places, wind exhausting outlet 11 is opened in lower box 14 sidewalls, lower box 14 is fixed with exhaust blower 6 near wind exhausting outlet 11 places, and the lower box 14 on exhaust blower 6 tops is provided with electric cabinet 20; Cabinet 1 outside is provided with water inlet 21, delivery port 22, and cabinet 1 bottom is provided with the condensation mouth of a river 23.
Outdoor air enters in the cabinet 1 through the fresh inlet 8 of cabinet 1 lower sidewall, at first filter through screen pack 7, the total-heat exchanger 2 of flowing through then carries out heat exchange cooling (heating up when heating), and then enter into heat exchanger 3, cold-producing medium direct sweat cooling heat exchanger 3 in this moment air-to-air total heat exchanger 2, air is carried out cooling processing (adding hot-air when heating), the air that comes out is again through wet-membrane humidifier 4 humidifications (regulating humidity when heating uses), air is sent to discharge pipe by pressure fan 5 from the new wind outlet 10 of upper box 13 then, enters the room that each needs new wind.
During air draft, air is entered by the air draft import 9 of cabinet 1 side wall upper part, at first filters through screen pack 7, and the total-heat exchanger 2 of flowing through then heats up (cooling when heating), discharges outdoor after exhaust blower 6 is pumped to the wind exhausting outlet 11 of lower box 14.
As shown in Figure 4, the position view when being the indoor installation of the utility model, fresh inlet 8 and wind exhausting outlet 11 all are connected with and lead to outdoor ventilation duct 26.
As shown in Figure 5, the position view when being the utility model chamber outdoor mounted, fresh inlet 8 and wind exhausting outlet 11 are provided with fan housing 24.
Claims (3)
1. compound low-carbon type brand-new air/water source heat pump, comprise cabinet, it is characterized in that: also comprise total-heat exchanger, heat exchanger, pressure fan, exhaust blower and screen pack, described cabinet one side has fresh inlet and indoor exhaust wind import, described cabinet opposite side has new wind outlet and wind exhausting outlet, and described fresh inlet and air draft import department are equipped with screen pack;
Be fixed with total-heat exchanger in the described cabinet near fresh inlet and indoor exhaust wind import, the bypass passageways top of cabinet bottom is fixed in described total-heat exchanger bottom, and the top of cabinet is fixed at the top of described total-heat exchanger;
Described cabinet is divided into upper box and lower box by partition part, and described new wind outlet is opened in the upper box sidewall, and described upper box is fixed with pressure fan near new wind exit, and described upper box is fixed with heat exchanger near the total-heat exchanger place;
Described lower box is fixed with double-tube heat exchanger, frequency-changeable compressor, gas-liquid separator, cross valve and invariable frequency compressor near the total-heat exchanger place, described wind exhausting outlet is opened in the lower box sidewall, described lower box is fixed with exhaust blower near the wind exhausting outlet place, and the lower box on described exhaust blower top is provided with electric cabinet; Described cabinet outside is provided with water inlet, delivery port, and described cabinet bottom is provided with the condensation mouth of a river.
2. compound low-carbon type brand-new air/water source heat pump according to claim 1 is characterized in that also being fixed with in the upper box between described heat exchanger and the pressure fan wet-membrane humidifier.
3. compound low-carbon type brand-new air/water source heat pump according to claim 1 is characterized in that described fresh inlet and wind exhausting outlet are equipped with fan housing, or all is connected with and leads to outdoor ventilation duct.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010201730653U CN201652991U (en) | 2010-04-27 | 2010-04-27 | Composite low-carbon all-new wind-water source thermal pump |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2010201730653U CN201652991U (en) | 2010-04-27 | 2010-04-27 | Composite low-carbon all-new wind-water source thermal pump |
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CN201652991U true CN201652991U (en) | 2010-11-24 |
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CN2010201730653U Expired - Lifetime CN201652991U (en) | 2010-04-27 | 2010-04-27 | Composite low-carbon all-new wind-water source thermal pump |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101858625A (en) * | 2010-04-27 | 2010-10-13 | 江苏国莱特空调设备有限公司 | Compound low-carbon type brand-new air/water source heat pump |
CN102735037A (en) * | 2012-06-05 | 2012-10-17 | 重庆奔飞机电设备有限公司 | Constant-temperature constant-pressure drying room capable of realizing continuous production |
CN110398018A (en) * | 2019-07-05 | 2019-11-01 | 云森威尔智能环境(深圳)有限公司 | The concealed annular twin voltage electrostatic field of wall feed-through pipeline filters heat-exchange device |
-
2010
- 2010-04-27 CN CN2010201730653U patent/CN201652991U/en not_active Expired - Lifetime
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101858625A (en) * | 2010-04-27 | 2010-10-13 | 江苏国莱特空调设备有限公司 | Compound low-carbon type brand-new air/water source heat pump |
CN101858625B (en) * | 2010-04-27 | 2012-07-25 | 江苏国莱特空调设备有限公司 | Compound low-carbon type brand-new air/water source heat pump |
CN102735037A (en) * | 2012-06-05 | 2012-10-17 | 重庆奔飞机电设备有限公司 | Constant-temperature constant-pressure drying room capable of realizing continuous production |
CN110398018A (en) * | 2019-07-05 | 2019-11-01 | 云森威尔智能环境(深圳)有限公司 | The concealed annular twin voltage electrostatic field of wall feed-through pipeline filters heat-exchange device |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20101124 Effective date of abandoning: 20120725 |