首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >PERFORMANCES OF SILICON MICRO-FLOW-PASSAGE COLD PLATES FROM SINGLE-PHASE TO TWO-PHASE WITH WATER AND HFE-7100 AS WORKING FLUIDS
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PERFORMANCES OF SILICON MICRO-FLOW-PASSAGE COLD PLATES FROM SINGLE-PHASE TO TWO-PHASE WITH WATER AND HFE-7100 AS WORKING FLUIDS

机译:用水和HFE-7100作为工作液从单相到两相硅微流冷板的性能

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Two-phase (phase-change) microchannel (MC) system is a promising technology for achieving enhanced heat removal for high-density electronics. Yet phase-change studies in MCs with hydraulic diameters on the order of several hundred micrometers or smaller have been inconclusive. Most of earlier studies involved one specific channel design and one type of working fluid. It is thus difficult to make fair comparisons across various experimental works toward recommending the best design option for real applications under specific operating conditions. In the current work, flow boiling experiments were conducted for MC cold plates with channel widths ranging from 61 μm to 330 μm and channel height ~ 300 μm (hydraulic diameters from ~100 μm to ~ 337 μm) and a pin-fin array cold plate with fin size and inter-spacing ~150μm. Two working fluids, deionized water at sub-atmospheric pressure (~ 25 kPa to 45 kPa) and HFE-7100 at ambient pressure, were tested respectively. High-speed visualization facilities were employed to help understand the rapid phase-change processes inside the flow passages. Pressure drop and heat transfer characteristics of the microchannel cold plates under various heat flux and flow rate conditions were recorded and analyzed as well as boiling fluctuations. Detailed visualization results will be presented in a separate paper [Tong et al., IMECE2007-42028].
机译:两相(相变)微通道(MC)系统是一种有前途的技术,可为高密度电子产品实现增强的散热效果。然而,在水力直径为几百微米或更小的数量级的MC中,相变研究尚无定论。大多数早期的研究涉及一种特定的通道设计和一种类型的工作流体。因此,很难在各种实验工作之间进行公平的比较,以为在特定操作条件下为实际应用推荐最佳设计方案。在目前的工作中,进行了MC冷却板的流沸实验,该冷却板的通道宽度为61μm至330μm,通道高度为〜300μm(液压直径为〜100μm至〜337μm),并且为针翅阵列冷却板鳍片尺寸,间距为〜150μm。分别测试了两种工作流体,即低于大气压(约25 kPa至45 kPa)的去离子水和处于环境压力下的HFE-7100。高速可视化工具用于帮助了解流道内部的快速相变过程。记录并分析了微通道冷板在各种热通量和流量条件下的压降和传热特性,以及沸腾波动。详细的可视化结果将在另一篇论文中发表[Tong等,IMECE2007-42028]。

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