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Compound tube type temperature control device

A temperature control device and tube-type technology, applied in heating methods, heating fuels, lighting and heating equipment, etc., can solve problems such as power consumption, ozone layer holes, and rising ambient temperature, achieve low energy consumption, and increase heat exchange area. Effect

Inactive Publication Date: 2014-03-26
台湾珈诚超导能源科技股份有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, the refrigerants that are more commonly used in air-conditioning devices are chlorofluorocarbons, which will cause the problem of the hole in the ozone layer. The compressor 11 consumes a lot of power, and the refrigerant will release a large amount of heat energy when passing through the condenser 12, which will cause the ambient temperature to rise, which is also the cause of global warming and energy depletion. Therefore, the awareness of environmental protection is gradually increasing. In today's modern world, it is imperative to find solutions that can make life more comfortable without polluting or causing environmental harm

Method used

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  • Compound tube type temperature control device
  • Compound tube type temperature control device
  • Compound tube type temperature control device

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Embodiment Construction

[0023] The present invention will be described in detail below with reference to the drawings and embodiments. Before the present invention is described in detail, it should be noted that in the following description, similar components are denoted by the same numerals.

[0024] refer to figure 2 , 3 , is a preferred embodiment of the multi-tube temperature control device of the present invention, comprising an inner tube 2, an outer tube 3 that surrounds the inner tube 2 and defines a heat transfer space 31 together with the inner tube 2, six A branch pipe 4 that passes through the heat transfer space 31 and communicates with the inner pipe 2 (with reference to Figure 4 ), a fixed net 51 (see Figure 5 ), a heat transfer medium 52 filled in the heat transfer space 31, a first delivery module 61 connected to the inner pipe 2, a second delivery module 62 connected to the branch pipe 4, and a Injection module 7 on tube 3.

[0025] In this preferred embodiment, the heat con...

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Abstract

A compound tube type temperature control device comprises an inner tube, an outer tube, a plurality of branch tubes and a heat-conducting medium, wherein a heat conduction space filled with the heat-conducting medium is defined by the inner tube and the outer tube jointly, the branch tubes penetrate through the heat conduction space and are communicated with the inner tube, and the inner tube is matched with the branch tubes to convey fluid. Due to the fact that the compound tube type temperature control device comprises the multiple branch tubes, the heat exchange area between the fluid and the heat-conducting medium is large in the fluid conveying process, heat exchanging can be conducted fast, and the temperature of the fluid can be close to the temperature of the medium outside the outer tube fast to achieve a preset temperature. Furthermore, the static heat conduction method does not need consumption of a large number of energy sources, and therefore the device is more environmentally friendly.

Description

technical field [0001] The invention relates to a temperature control device, in particular to a multi-pipe temperature control device. Background technique [0002] refer to figure 1 , is an air-conditioning device disclosed in China Taiwan Announcement No. M413827 "Constant Temperature Air Conditioning Device" new patent case, including a compressor 11, a condenser 12, an expansion valve 13, and an evaporator 14. The operation mode of the air-conditioning device is mainly to transport the high-pressure gaseous refrigerant output from the compressor 11 to the condenser 12, so that the refrigerant changes from a high-pressure gaseous state to a high-pressure liquid state, and then let the high-pressure liquid refrigerant pass through the expansion valve 13 to depressurize, and the depressurized liquid refrigerant is then output to the evaporator 14 . The refrigerant in the evaporator 14 absorbs a large amount of surrounding heat and changes from a liquid state to a gaseous...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F24F5/00
CPCF24T10/17Y02E10/10
Inventor 张克宁
Owner 台湾珈诚超导能源科技股份有限公司