低温热管的磁场控制

F. Cingroš, T. Hron, J. Kuba
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引用次数: 3

摘要

本文研究了静磁场控制的低温热管。热管是一种非常有效的传热设备。它们通常用于电子设备和许多其他类型的设备中。一些应用需要热流可控性。为此,热管被改造成许多不同的结构,具有可变的导热性。磁场控制热输运是国际上少数实验室研究的一种新方法,尚未得到实际应用。根据在我们实验室和其他几个实验室进行的一些实验结果,似乎可以通过静态磁场来控制选定类型的热管中的热传输。为此制作了充入纯氧的低温热管,并设置了试验装置。我们发现,在磁场作用下热管的传热效率迅速下降。本文将介绍一些有趣的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic field control of cryogenic heat pipes
This paper deals with cryogenic heat pipes controlled by static magnetic field. Heat pipe is an equipment which allows a very effective heat transport. They are commonly used in electronic devices and in many other types of equipment as well. Some applications require heat flow controllability. For that purpose heat pipes are modified to many different constructions with variable heat conductance. Magnetic field control of heat transport is a new solution researched in a few laboratories in the world and still not practically applicated. According to the results of some experiments, implemented in our laboratory and several another laboratories, it seems to be possible to control heat transport in chosen types of heat pipes by a static magnetic field. The cryogenic heat pipe filled with pure oxygen has been made for that purpose and a testing device has been arranged as well. We have found out that the heat transport efficiency of the heat pipe has rapidly decreased by a magnetic field exposure. Some interesting results of our experiments will be presented in this paper.
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