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Thermal-Hydraulic Analysis of the Two-Phase Annular Flow Under Microgravity

机译:微重力作用下两相环流的热工水力分析

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摘要

The design of the two-phase flow loops applied for thermal control systems of future spacecraft requires knowledge of two-phase flow and heat transfer phenomena under microgravity conditions. This paper deals with a fundamental approach for evaporators or cold plates in two-phase flow loops. A straight evaporator tube was mathematically modeled as a simplified thermal configuration of the cold plate. Simultaneous ordinary differential equations for the two-phase annular flow under microgravity conditions were derived from the separated flow model, and numerical analyses were conducted for the purpose of parametric studies. As a result, properties' distribution of the working fluid along the flow direction, critical limits of the working conditions, and the thermal performance difference owing to the working fluids were clarified.
机译:用于未来航天器热控制系统的两相流回路的设计需要了解微重力条件下的两相流和热传递现象。本文讨论了两相流回路中蒸发器或冷板的基本方法。在数学上,将直管蒸发器建模为冷却板的简化热配置。从分离流动模型中导出了微重力条件下两相环形流动的同时常微分方程,并进行了数值分析,以进行参数研究。结果,澄清了工作流体沿流动方向的特性分布,工作条件的临界极限以及由于工作流体引起的热性能差异。

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