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首页> 外文期刊>Annals of the New York Academy of Sciences >Development of a High-Performance Boiling Heat Exchanger by Improved Liquid Supply to Narrow Channels
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Development of a High-Performance Boiling Heat Exchanger by Improved Liquid Supply to Narrow Channels

机译:通过改善向窄通道的液体供应来开发高性能沸腾换热器

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摘要

A two-phase flow loop is a promising method for application to thermal management systems for large-scale space platforms handling large amounts of energy. Boiling heat transfer reduces the size and weight of cold plates. The transportation of latent heat reduces the mass flow rate of working fluid and pump power. To develop compact heat exchangers for the removal of waste heat from electronic devices with high heat generation density, experiments on a method to increase the critical heat flux for a narrow heated channel between parallel heated and unheated plates were conducted. Fine grooves are machined on the heating surface in a transverse direction to the flow and liquid is supplied underneath flattened bubbles by the capillary pressure difference from auxiliary liquid channels separated by porous metal plates from the main heated channel. The critical heat flux values for the present heated channel structure are more than twice those for a flat surface at gap sizes 2 mm and 0.7 mm. The validity of the present structure with auxiliary liquid channels is confirmed by experiments in which the liquid supply to the grooves is interrupted. The increment in the critical heat flux compared to those for a flat surface takes a maximum value at a certain flow rate of liquid supply to the heated channel. The increment is expected to become larger when the length of the heated channel is increased and/or the gravity level is reduced.
机译:两相流回路是一种有前途的方法,可应用于处理大量能量的大型空间平台的热管理系统。沸腾传热减小了冷板的尺寸和重量。潜热的传输降低了工作流体的质量流量和泵的功率。为了开发紧凑型热交换器以从具有高热量产生密度的电子设备中去除废热,进行了针对增加平行加热板和未加热板之间狭窄加热通道的临界热通量的方法的实验。在加热面上沿与流动方向垂直的方向加工细槽,并通过毛细压力差从由多孔金属板与主加热通道隔开的辅助液体通道的毛细压力差向扁平气泡下方供应液体。本加热通道结构的临界热通量值是间隙尺寸为2 mm和0.7 mm的平面的热通量的两倍以上。具有辅助液体通道的本结构的有效性通过中断向凹槽的液体供应的实验来证实。与向平坦表面的临界热通量相比,临界热通量的增量在向加热通道供应液体的一定流量下取最大值。当加热通道的长度增加和/或重力水平减小时,预期该增量将变大。

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