CN2641502Y - Integral moveable air conditioner - Google Patents
Integral moveable air conditioner Download PDFInfo
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- CN2641502Y CN2641502Y CNU032732538U CN03273253U CN2641502Y CN 2641502 Y CN2641502 Y CN 2641502Y CN U032732538 U CNU032732538 U CN U032732538U CN 03273253 U CN03273253 U CN 03273253U CN 2641502 Y CN2641502 Y CN 2641502Y
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- Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)
- Removal Of Water From Condensation And Defrosting (AREA)
Abstract
本实用新型是一种整体式移动空调。包括有蒸发器(1)、接水盘(2)、毛细管(3)、排水管(4)、冷凝器(5)、压缩机(6)及壳体(8),其中壳体(8)的下部还设有收集冷凝水的水箱(7),压缩机(6)通过管路与冷凝器(5)入口相通,冷凝器(5)出口通过管路与浸在水箱(7)中的冷凝管相通,浸在水箱(7)中的冷凝管通过毛细管(3)与蒸发器(1)相通,接水盘(2)通过排水管(4)与水箱(7)相通。本实用新型在工作过程中,制冷剂从压缩机排出,先通过冷凝器强制风冷换热,再进入水箱里的冷凝管进一步冷却,然后通过毛细管节流,到蒸发器蒸发制冷。因此,本实用新型可以充分回收冷凝水的冷量,大大提高能效比,且其结构简单,可靠性高。
The utility model is an integral mobile air conditioner. Including evaporator (1), water tray (2), capillary tube (3), drain pipe (4), condenser (5), compressor (6) and shell (8), of which the shell (8) The lower part of the tank is also provided with a water tank (7) for collecting condensed water. The compressor (6) communicates with the inlet of the condenser (5) through a pipeline, and the outlet of the condenser (5) communicates with the condensate immersed in the water tank (7) through a pipeline. The tubes communicate, the condensing pipe immersed in the water tank (7) communicates with the evaporator (1) through the capillary tube (3), and the water receiving tray (2) communicates with the water tank (7) through the drain pipe (4). During the working process of the utility model, the refrigerant is discharged from the compressor, first passes through the condenser for forced air-cooling and heat exchange, then enters the condensing pipe in the water tank for further cooling, and then throttling through the capillary tube to evaporate and refrigerate in the evaporator. Therefore, the utility model can fully recover the cooling capacity of the condensed water, greatly improve the energy efficiency ratio, and has a simple structure and high reliability.
Description
1、技术领域:1. Technical field:
本实用新型是一种整体式移动空调,属于整体式移动空调的改造技术。The utility model is an integral mobile air conditioner, which belongs to the transformation technology of the integral mobile air conditioner.
2、背景技术:2. Background technology:
目前市场上的整体式移动空调的散热方式有以下几种:一种是直接采用冷凝器强制风冷换热,但其存在的缺点是冷凝水的余冷未被回收,不利于节能;另一种是采用疏水器将冷凝水均匀洒在冷凝器翅片上,再强制风冷换热,这种方式存在的缺点是由于采用疏水器,结构较为复杂,且冷凝水利用率低,长期使用时难于保证其工作的可靠性等;还有一种是先将冷凝水收集到水箱里,制冷剂从压缩机排出,通过水箱里的预冷管预冷,再进入冷凝器强制风冷换热,这种方式存在的缺点是由于制冷剂从压缩机排出,直接预冷,气态制冷剂在管内阻力较大,造成能效降低,另外由于水温较高,故要求水箱的材料要耐高温。因此,以上几种方法在使用时,都有一定的自身局限性。At present, the heat dissipation methods of integral mobile air conditioners on the market are as follows: one is to directly use the condenser to force air-cooled heat exchange, but its disadvantage is that the residual cooling of condensed water is not recycled, which is not conducive to energy saving; The first is to use a steam trap to evenly sprinkle the condensed water on the fins of the condenser, and then force the air to cool the heat. To ensure the reliability of its work, etc.; another is to collect the condensed water into the water tank first, the refrigerant is discharged from the compressor, pre-cooled through the pre-cooling pipe in the water tank, and then enters the condenser to force air-cooled heat exchange. The disadvantage of this method is that because the refrigerant is discharged from the compressor and directly pre-cooled, the resistance of the gaseous refrigerant in the tube is relatively large, resulting in a decrease in energy efficiency. In addition, due to the high water temperature, the material of the water tank is required to be high temperature resistant. Therefore, the above several methods have certain limitations when they are used.
3、发明内容:3. Contents of the invention:
本实用新型的目的在于考虑上述问题而提供一种可以充分回收冷凝水的冷量,大大提高能效比的整体式移动空调。本实用新型设计巧妙,结构简单,可靠性高。The purpose of the utility model is to consider the above problems and provide an integrated mobile air conditioner that can fully recover the cooling capacity of condensed water and greatly improve the energy efficiency ratio. The utility model has ingenious design, simple structure and high reliability.
本实用新型的结构示意图如附图所示,包括有蒸发器(1)、接水盘(2)、毛细管(3)、排水管(4)、冷凝器(5)、压缩机(6)及壳体(8),蒸发器(1)置于壳体(8)的上部,收集蒸发器(1)上冷凝水的接水盘(2)置于蒸发器(1)的下方,压缩机(6)置于接水盘(2)的下方,冷凝器(5)置于压缩机(6)的旁侧,其中壳体(8)的下部还设有收集冷凝水的水箱(7),压缩机(6)中的制冷剂通过管路与冷凝器(5)入口相通,冷凝器(5)出口通过管路与浸在水箱(7)中的冷凝管相通,浸在水箱(7)中的冷凝管通过毛细管(3)与蒸发器(1)相通,接水盘(2)通过排水管(4)与水箱(7)相通。The structural representation of the utility model is shown in the accompanying drawings, including an evaporator (1), a water tray (2), a capillary (3), a drainpipe (4), a condenser (5), a compressor (6) and The shell (8), the evaporator (1) is placed on the upper part of the shell (8), the water receiving tray (2) for collecting condensed water on the evaporator (1) is placed under the evaporator (1), and the compressor ( 6) Place it under the water tray (2), and place the condenser (5) next to the compressor (6), where the lower part of the housing (8) is also equipped with a water tank (7) for collecting condensed water. The refrigerant in the machine (6) communicates with the inlet of the condenser (5) through the pipeline, and the outlet of the condenser (5) communicates with the condensation pipe immersed in the water tank (7) through the pipeline, and the condenser immersed in the water tank (7) The condensation pipe communicates with the evaporator (1) through the capillary tube (3), and the water receiving tray (2) communicates with the water tank (7) through the drain pipe (4).
上述水箱(7)还可设有将水排出的水泵。Above-mentioned water tank (7) also can be provided with the water pump that water is discharged.
本实用新型由于采用了设有收集冷凝水的水箱、并使冷凝管浸在冷凝水中的结构,本实用新型在工作过程中,制冷剂从压缩机排出,先通过冷凝器强制风冷换热,再进入水箱里的冷凝管进一步冷却,然后通过毛细管节流,到蒸发器蒸发制冷。因此,本实用新型可以充分回收冷凝水的冷量,大大提高能效比,且其结构简单,可靠性高。本实用新型是一种设计巧妙,方便实用的整体式移动空调。Because the utility model adopts a water tank for collecting condensed water and a structure in which the condensing pipe is immersed in the condensed water, during the working process of the utility model, the refrigerant is discharged from the compressor, and the refrigerant is forced to be air-cooled and heat-exchanged through the condenser first. Then enter the condensing tube in the water tank for further cooling, and then throttling through the capillary tube to evaporate and refrigerate in the evaporator. Therefore, the utility model can fully recover the cooling capacity of the condensed water, greatly improve the energy efficiency ratio, and has a simple structure and high reliability. The utility model is an ingeniously designed, convenient and practical integrated mobile air conditioner.
4、附图说明:4. Description of drawings:
图1为本实用新型的结构示意图;Fig. 1 is the structural representation of the utility model;
图2为本实用新型的侧视图。Fig. 2 is a side view of the utility model.
5、具体实施方式:5. Specific implementation methods:
实施例:Example:
本实用新型的结构示意图如图1、2所示,包括有蒸发器(1)、接水盘(2)、毛细管(3)、排水管(4)、冷凝器(5)、压缩机(6)及壳体(8),蒸发器(1)置于壳体(8)的上部,收集蒸发器(1)上冷凝水的接水盘(2)置于蒸发器(1)的下方,压缩机(6)置于接水盘(2)的下方,冷凝器(5)置于压缩机(6)的旁侧,其中壳体(8)的下部还设有收集冷凝水的水箱(7),压缩机(6)中的制冷剂通过管路与冷凝器(5)入口相通,冷凝器(5)出口通过管路与浸在水箱(7)中的冷凝管相通,浸在水箱(7)中的冷凝管通过毛细管(3)与蒸发器(1)相通,接水盘(2)通过排水管(4)与水箱(7)相通。The structure schematic diagram of the present utility model as shown in Figure 1, 2, comprises evaporator (1), water receiving tray (2), capillary (3), drainage pipe (4), condenser (5), compressor (6) ) and the housing (8), the evaporator (1) is placed on the upper part of the housing (8), the water tray (2) for collecting condensed water on the evaporator (1) is placed under the evaporator (1), and the compression The machine (6) is placed under the water tray (2), the condenser (5) is placed beside the compressor (6), and the lower part of the housing (8) is also provided with a water tank (7) for collecting condensed water , the refrigerant in the compressor (6) communicates with the inlet of the condenser (5) through the pipeline, and the outlet of the condenser (5) communicates with the condenser tube immersed in the water tank (7) through the pipeline, and the condenser immersed in the water tank (7) The condensation pipe in the evaporator (1) communicates with the evaporator (1) through the capillary tube (3), and the water receiving tray (2) communicates with the water tank (7) through the drain pipe (4).
上述水箱(7)还可设有将水排出的水泵。Above-mentioned water tank (7) also can be provided with the water pump that water is discharged.
本实用新型使用时,制冷剂在压缩机(1)中被压缩成高温高压气体,经过管路进入冷凝器(5)中,通过强制风冷换热,温度降低,再进入水箱(7)中的冷凝管,进一步冷却成过冷液体。然后通过毛细管(3)节流到蒸发器(1)中制冷。同时,蒸发器上的冷凝水流到接水盘(2)中,再通过排水管(4)汇集到水箱(7)中与冷凝管换热。当水箱中水面超过一定水位时,由水泵将水排出。When the utility model is used, the refrigerant is compressed into a high-temperature and high-pressure gas in the compressor (1), enters the condenser (5) through the pipeline, and is cooled by forced air to exchange heat, and then enters the water tank (7). The condensing tube is further cooled into a subcooled liquid. Then throttling into the evaporator (1) for refrigeration through the capillary tube (3). At the same time, the condensed water on the evaporator flows into the water receiving tray (2), and then collects in the water tank (7) through the drain pipe (4) to exchange heat with the condensing pipe. When the water surface in the water tank exceeds a certain water level, the water is discharged by the water pump.
Claims (2)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU032732538U CN2641502Y (en) | 2003-08-08 | 2003-08-08 | Integral moveable air conditioner |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU032732538U CN2641502Y (en) | 2003-08-08 | 2003-08-08 | Integral moveable air conditioner |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN2641502Y true CN2641502Y (en) | 2004-09-15 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CNU032732538U Expired - Fee Related CN2641502Y (en) | 2003-08-08 | 2003-08-08 | Integral moveable air conditioner |
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| Country | Link |
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| CN (1) | CN2641502Y (en) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102705970A (en) * | 2012-06-26 | 2012-10-03 | 江苏普洛特机电科技有限公司 | Low-noise air conditioner for high-temperature cabinet |
| CN105485781A (en) * | 2016-01-26 | 2016-04-13 | 珠海格力电器股份有限公司 | Refrigerating equipment |
| WO2019088920A1 (en) * | 2017-11-02 | 2019-05-09 | Baskar Jagannathan | A wind powered cooling system |
-
2003
- 2003-08-08 CN CNU032732538U patent/CN2641502Y/en not_active Expired - Fee Related
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102705970A (en) * | 2012-06-26 | 2012-10-03 | 江苏普洛特机电科技有限公司 | Low-noise air conditioner for high-temperature cabinet |
| CN105485781A (en) * | 2016-01-26 | 2016-04-13 | 珠海格力电器股份有限公司 | Refrigerating equipment |
| WO2019088920A1 (en) * | 2017-11-02 | 2019-05-09 | Baskar Jagannathan | A wind powered cooling system |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| C14 | Grant of patent or utility model | ||
| GR01 | Patent grant | ||
| C56 | Change in the name or address of the patentee |
Owner name: MEIDE ELECTRIC APPLIANCE CO., LTD., GUANGDONG Free format text: FORMER NAME OR ADDRESS: MEIDI GROUP CO LTD, GUANGDONG |
|
| CP03 | Change of name, title or address |
Address after: Beijiao, Penglai Road, Shunde District, Foshan District, Guangdong City, province, Guangdong Midea Electric Appliance Co., Ltd. Patentee after: Meidi Electric Appliances Co., Ltd., Guangdong Address before: Penglai Road, Beijiao Town, Shunde, Guangdong Patentee before: Meidi Group Co., Ltd., Guangdong |
|
| C17 | Cessation of patent right | ||
| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20040915 Termination date: 20090908 |