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External anti-impact energy storage radiator

An external heat sink technology, applied in heat storage equipment, heat exchanger types, indirect heat exchangers, etc., can solve problems such as pressure increase, flow imbalance, heat sink damage, scrapping, etc. , high reliability effect

Inactive Publication Date: 2016-09-07
江苏金荣森制冷科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It has a small liquid storage capacity and no buffer. In the case of large temperature difference, low temperature environment, unbalanced flow, liquid with a certain viscosity, and fluid with impact force, the pressure inside the heat dissipation channel of the radiator will also increase. , especially in the case of impact force and relatively high viscosity fluid, due to the resistance of the fluid inside the channel, the fluid cannot quickly pass through the inside of the radiator channel, so that the pressure increases, exceeding the maximum operating pressure of the radiator, and the radiator is very Easily damaged and scrapped

Method used

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  • External anti-impact energy storage radiator
  • External anti-impact energy storage radiator
  • External anti-impact energy storage radiator

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0025] The liquid inlet and outlet of the external anti-impact energy storage radiator are located at the top of the first liquid collection tank 501 and the second liquid collection tank 502 .

Embodiment 2

[0027] The liquid inlet and liquid outlet of the external anti-impact energy storage radiator are located on the sides of the first liquid collection tank 501 and the second liquid collection tank 502 .

[0028] A working method of an external anti-impact energy storage radiator:

[0029] The liquid enters the first liquid collection tank of the external anti-impact energy storage radiator from the liquid inlet. Under normal circumstances, the resistance in the diversion liquid tank of the external anti-impact energy storage radiator is small or there is no resistance, and the liquid enters the first liquid collection tank first. in the first liquid collecting tank, and then dissipate heat in the process of passing through the distribution liquid tank, then enter the second liquid collecting tank, and finally leave the external anti-impact energy storage radiator from the liquid outlet; in the external anti-impact energy storage radiator When the internal resistance of the dis...

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PUM

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Abstract

The invention relates to an external anti-impact energy storage radiator. The radiator is characterized by comprising a radiator body and external energy storage tubes arranged in the radiator body; the radiator body comprises a first liquid collection tank and a second liquid collection tank which are vertically arranged in a left-right mode; a plurality of flow distribution liquid troughs which are transversely arranged are connected between the first liquid collection tank and the second liquid collection tank; two external energy storage tubes are arranged on the outer side of the first liquid collection tank and the outer side of the second liquid collection tank correspondingly; and the bottoms of the external energy storage tubes are provided with openings which communicate with one side of the bottom of the first liquid collection tank and one side of the bottom of the second liquid collection tank correspondingly. The external anti-impact energy storage radiator has the advantages of being high in reliability, not liable to be damaged and capable of ensuring stable operation of a system.

Description

technical field [0001] The invention relates to an external anti-shock energy storage radiator. Background technique [0002] A general radiator has a fixed ratio of capacity in the sump of the radiator, and there is a certain large resistance for the fluid to pass through the heat dissipation channel of the radiator. It has a small liquid storage capacity and no buffer. In the case of large temperature difference, low temperature environment, unbalanced flow, liquid with a certain viscosity, and fluid with impact force, the pressure inside the heat dissipation channel of the radiator will also increase. , especially in the case of impact force and relatively high viscosity fluid, due to the resistance of the fluid inside the channel, the fluid cannot quickly pass through the inside of the radiator channel, so that the pressure increases, exceeding the maximum operating pressure of the radiator, and the radiator is very Easily damaged and scrapped. Contents of the inventi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F28D20/00
CPCF28D20/00Y02E60/14
Inventor 黄晓军
Owner 江苏金荣森制冷科技有限公司