首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Impact of flow patterns in a heterogeneous air-water mixture flow in a microchannel on in situ physical parameters
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Impact of flow patterns in a heterogeneous air-water mixture flow in a microchannel on in situ physical parameters

机译:微通道中非均匀空气-水混合物流中的流型对原位物理参数的影响

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摘要

Space transportation systems require high-performance thermal protection and fluid management techniques for systems ranging from cryogenic fluid management devices to primary structures and propulsion systems exposed to extremely high temperatures, as well as for other space'systems such as cooling or environment control for advanced space suits and integrated circuits. Although considerable developmental effort is being expended to bring potentially applicable technologies to a readiness level for practical use, new and innovative methods are still needed. One such method is the concept of Advanced Micro Cooling Modules (AMCMs), which are essentially compact two-phase heat exchangers constructed of microchannels and designed to remove large amounts of heat rapidly from critical systems by incorporating phase transition. The development of AMCMs requires fundamental technological advancement in many areas, including: (1) development of measurement methods/systems for flow-pattern measurement/identification for two-phase mixtures in microchannels; (2) development of a phenomenological model for two-phase flow which includes the quantitative measure of flow patterns; and (3) database development for multiphase heat transfer/fluid dynamics flows in microchannels. This paper focuses on the results of experimental research in the phenomena of two-phase flow in microchannels. The work encompasses both an experimental and an analytical approach to incorporating flow patterns for air-water mixtures flowing in a microchannel, which are necessary tools for the optimal design of AMCMs. Specifically, the following topics are addressed: (1) design and construction of a sensitive test system for two-phase flow in microchannels, one which measures ac and dc components of in situ physical mixture parameters including spatial concentration using concomitant methods; (2) data acquisition and analysis in the amplitude, time, and frequency domains; and (3) analysis of results including evaluation of in situ physical parameters of the mixture and their validity for application in flow pattern determination. (c) 2006 Elsevier Inc. All rights reserved.
机译:航天运输系统需要高性能的热保护和流体管理技术,这些系统的应用范围从低温流体管理设备到暴露于极高温度的主要结构和推进系统,以及其他空间系统(例如冷却或高级空间的环境控制)西装和集成电路。尽管正在花费大量的开发努力来将潜在的适用技术带入实际使用的准备水平,但是仍然需要新的创新方法。一种这样的方法是高级微冷却模块(AMCM)的概念,该模块实际上是由微通道构成的紧凑型两相热交换器,旨在通过结合相变来从关键系统中快速去除大量热量。 AMCM的发展需要许多领域的根本技术进步,包括:(1)开发用于微通道中两相混合物的流型测量/识别的测量方法/系统; (2)建立两相流的现象学模型,其中包括对流型的定量测量; (3)开发微通道中多相传热/流体动力学流的数据库。本文重点研究微通道中两相流现象的实验研究结果。这项工作包括实验方法和分析方法,以纳入微通道中流动的空气-水混合物的流型,这是优化AMCM的必要工具。具体而言,解决以下主题:(1)设计和构建用于微通道两相流动的灵敏测试系统,该系统使用伴随方法测量包括空间集中在内的现场物理混合参数的交流和直流分量; (2)在幅度,时域和频域的数据采集和分析; (3)结果分析,包括评估混合物的原位物理参数及其在流型确定中的有效性。 (c)2006 Elsevier Inc.保留所有权利。

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