新型绝热漩涡流分离装置在气水两相流中的性能实验研究

A. Thyagarajan, Gangchen Ren, Debjyoti Banerjee, Vijay K. Dhir
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引用次数: 0

摘要

实验确定了漩涡流装置对预混合两相空气水混合物进行相分离的功效。在实验中,气体和液体的流速随参数变化。这项研究的目的是确定绝热混合物相分离的理想操作条件,并作为未来动态闪蒸实验的基准。新颖的漩涡流装置通过将两相混合物切向注入管状试验段,在离心力的作用下,在分离管中部形成稳定的空气芯(较轻的流体)。分离出来的空气可通过安装在试验段中心的回收管抽取到气芯中。确定了在漩涡流装置中获得最大相分离效率的条件,并针对本研究中探讨的实验条件范围提出了相分离效率的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of the Performance of a Novel Adiabatic Swirl-Flow Separation Apparatus in Air-Water Two-Phase Flow
Experiments were performed for determining the efficacy of a swirl-flow apparatus for phase separation of a premixed two-phase air water mixture. In the experiments gas and liquid flow rates were parametrically varied. The goal of this study was to determine the ideal operating conditions for phase separation of an adiabatic mixture and to serve as a benchmark for future experiments involving dynamic flash evaporation. The novel swirl-flow apparatus enables the formation of a stable air core (lighter fluid) in the middle of the separator tube due to centrifugal force induced by strategically injecting the two-phase mixture tangentially into the tubular test section. Separated air is removed by tapping into the air core using a retrieval tube that is mounted in the center of the test section. Conditions under which maximum phase-separation efficiency is obtained in the swirl-flow apparatus were identified and a correlation for the phase separation efficiency is proposed for the range of experimental conditions explored in this study.
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