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Design of a Heat Exchanger Made of Gravity Heat Pipes with an Enlarged Heat Exchange Surface for Heat Dissipation from the Electrical Cabinet

机译:由重力热管制成的热交换器的设计,具有扩大的热交换表面,用于从电气柜中散热

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Due to the great progress in the electronics industry, heat management in electronic components is becoming a serious and important problem. Cooling of electronic components ensures a lower occurrence of failure of elements, longer service life of the device, protection against overheating of elements, further prevents malfunction of the device and loss of heat. In many cases, heat dissipation by natural convection is often insufficient. Heat dissipation by forced convection is effective, but it carries the risk of clogging the interior of the electrical cabinet with dust, which can negatively affect the functionality of the electrical elements over time. One of the possibilities of efficient heat dissipation from the electrical cabinet without forced convection is by means of heat pipe technology, which uses a phase change of the working substance for heat transfer. The article deals with the design, construction and experimental determination of the performance of gravity heat tubes with an increased heat exchange area suitable for the design of an electrical cabinet heat exchanger.
机译:由于电子行业的巨大进展,电子元器件中的热量管理正在成为一个严肃而重要的问题。电子元件的冷却确保了元件的失效,装置的更长的使用寿命,防止元件过热的较低,进一步防止了装置的故障和热量。在许多情况下,天然对流的散热通常不足。强制对流的散热是有效的,但它带有灰尘堵塞电气柜内部的风险,这可以随着时间的推移对电气元件的功能产生负面影响。无需强制对流的电气柜的有效散热的可能性之一是通过热管技术,其使用工作物质的相变进行热传递。本文涉及设计,施工和实验性能测定重力热管的性能,其适用于适用于电柜热交换器的设计的增加的热交换区域。

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