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METALLIC MICRO HEAT EXCHANGERS: PROPERTIES, APPLICATIONS AND LONG TERM STABILITY

机译:金属微换热器:性能,应用和长期稳定性

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摘要

Micro heat exchangers, which until recently have been implemented only at laboratory scale, are now being available for industrial applications. They are well known for their superior heat transfer properties due to the large surface-to-volume ratio. But there are little data available on the long term stability of these devices. In this paper application several application examples for micro heat exchangers made of stainless steel are presented. The devices consist of stainless steel foils providing numerous micro channels generated by mechanical micromachining or wet chemical etching. A number of the foils are arranged in a specific way and bonded together. Device property descriptions as well as some possible application examples show the potential of metallic microstructure devices. Results on two crossflow microstructure heat exchangers running in long term tests are presented. Both devices have been tested for more than 8000 hours each, using deionised water as test fluid. Experimental data on the heat transfer properties and the pressure drop are given and compared. It was found that the heat transfer capabilities were significantly decreased within the first few hundred hours of testing and then run into a saturation state. Performance degradation may be due to a fouling layer deposited on the heat exchange surface. Some other experimental applications in which fouling was expected to cause problems are described briefly.
机译:直到最近才在实验室规模实现的微型换热器现在可用于工业应用。由于其大的表面体积比,它们以出色的传热性能而闻名。但是,关于这些设备的长期稳定性的数据很少。在本论文的应用中,给出了几个由不锈钢制成的微型热交换器的应用示例。该设备由不锈钢箔组成,这些箔提供了许多通过机械微加工或湿法化学蚀刻产生的微通道。多个箔以特定方式布置并粘结在一起。器件性能描述以及一些可能的应用示例说明了金属微结构器件的潜力。给出了在长期测试中运行的两个错流微结构热交换器的结果。使用去离子水作为测试液,两种设备均经过了8000多个小时的测试。给出并比较了传热性能和压降的实验数据。发现在测试的最初几百小时内传热能力显着降低,然后进入饱和状态。性能下降可能归因于沉积在热交换表面上的污垢层。简要描述了预期结垢会引起问题的其他一些实验应用。

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