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Microchannel heat exchangers for advanced climate control

机译:微通道换热器,用于高级气候控制

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Abstract: This paper presents details of fabrication and performance testing of prototype microchannel heat exchangers. The microchannel heat exchangers are being developed for advanced cooling and climate control applications, and are designed for heat loads of 100 W/cm$+2$/. Bulk and surface micromachining techniques are used to fabricate the test devices. Each heat exchanger section consists of over 150 microchannels etched in silicon substrates by either chemical etching or ion milling processes. The channels are 100-$mu@m deep, 100-$mu@m wide, and spaced 50- to 100-$mu@m apart and connected with headers. Other heat exchangers have also been fabricated in copper and aluminum using machining and ion milling processes. Process steps involved photolithographic patterning, deposition of etch masks, ion or chemical etching, electrostatic bonding of the silicon to glass, insulator deposition, lamination of silicon to metals, application of thin heater coatings with busbars, and installation of the inlet/outlet hardware and valves. Recent hear exchangers have the silicon laminated to copper substrates. Performance testing focuses on determining the performance characteristics of the microchannel heat exchangers over a wide range of flow and heat transfer conditions. The working fluid for heat transfer is restricted to water or SUVA refrigerant HCFC-124 (R-124). Testing with water is run under single-phase conditions. The tests with R-124 are run under single-and two-phase flow conditions. !3
机译:摘要:本文介绍了原型微型通道换热器的制造和性能测试的细节。微通道换热器正在开发用于先进的冷却和气候控制应用,设计用于100 W / cm $ + 2 $ /。散装和表面微机械线技术用于制造测试装置。每个热交换器部分由通过化学蚀刻或离子铣削方法在硅基板中蚀刻的超过150微通道组成。频道为100- $ mu @ m深,100- $ mu @ m宽,并将50-to 100-$ mu @ m分开并与标题连接。其他热交换器也使用加工和离子铣削方法在铜和铝中制造。工艺步骤涉及光刻图案化,蚀刻掩模,离子或化学蚀刻,硅的静电键合,绝缘体沉积,硅的层压,金属层叠,用母线施加薄加热器涂层,以及入口/出口硬件的安装和安装薄加热器涂层,以及安装入口/出口的安装阀门。最近的听力交换器使硅层压到铜基材上。性能测试侧重于在宽范围的流动和传热条件下确定微通道热交换器的性能特性。用于传热的工作流体限于水或SUVA制冷剂HCFC-124(R-124)。用水测试在单相条件下运行。使用R-124的测试在单相和两相流条件下运行。 !3

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