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Visualization Study of Supercritical Fluid Convection and Heat Transfer in Weightlessness by Interferometry: A Brief Review

机译:失重法超临界流体对流和传热的可视化研究:简述

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摘要

Supercritical fluids have become a hot topic in recent years, due to their wide applications in chemical and energy systems. With its sensitive thermal-transport properties in the near-critical region, supercriticalear-critical fluids behaviors, under both microgravity and terrestrial conditions, have become very interesting and challenging topic. This brief review is focused on the visualization experiments of fluid convection and heat transfer related critical phenomena by interferometer. Due to the sensitive property changes of critical fluids, it is very difficult to control and measure the supercritical fluid behaviors. In this review, non-intrusive visualization systems by interferometry are introduced and analyzed for experimental studies of fluids in the near-critical region. For near-critical and supercritical experiments, the temperature/density control and parameter analysis are of critical importance. The analysis of boundary conditions, convection behaviors and energy transfer modes of critical fluids, mainly under weightlessness, are also reviewed with recent opinions toward future development. It is hoped that this review could be helpful for related studies.
机译:由于超临界流体在化学和能源系统中的广泛应用,近年来已成为热门话题。由于其在近临界区域具有敏感的热传输特性,因此在微重力和地面条件下的超临界/近临界流体行为已成为非常有趣和具有挑战性的话题。本文简要介绍了干涉仪对流体对流和传热相关临界现象的可视化实验。由于临界流体的敏感特性变化,因此很难控制和测量超临界流体的行为。在这篇综述中,介绍了通过干涉法的非侵入式可视化系统,并对其进行了分析,以用于近临界区流体的实验研究。对于近临界和超临界实验,温度/密度控制和参数分析至关重要。临界流体的边界条件,对流行为和能量传递模式的分析,主要是在失重条件下,也结合了对未来发展的最新观点进行了回顾。希望这篇评论对相关研究有所帮助。

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