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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Experimental Investigation and Empirical Correlations of Heat Transfer in Different Regimes of Air-Water Two-Phase Flow in a Horizontal Tube
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Experimental Investigation and Empirical Correlations of Heat Transfer in Different Regimes of Air-Water Two-Phase Flow in a Horizontal Tube

机译:水平管内不同气水两相流传热的实验研究及实证相关性

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摘要

This article reports on the experimental investigation of heat transfer to cocurrent air-water two-phase flow in a horizontal tube. The idea is to enhance heat transfer to the coolant liquid by air injection. Experiments were conducted for different air water ratios in constant temperature heated tube. Visual identification of flow regimes was supplemented. The effects of the liquid and gas superficial velocities and the flow regimes on the heat transfer coefficients were investigated. The results showed that the heat transfer coefficient generally increases with the increase of the injected air flow rate, and the enhancement is more significant at low water flow rates. A maximum value of the two-phase heat transfer coefficient was observed at the transition to wavy-annular flow as the air superficial Reynolds number increases for a fixed water flow rate. It was noticed that the Nusselt number increased about three times due to the injection of air at low water Reynolds number. Correlations for heat transfer by air-water two-phase flow were deduced in dimensionless form for different flow regimes.
机译:本文报道了水平管中同时传热到并发气水两相流的实验研究.这个想法是通过空气喷射来增强向冷却液的热传递。在恒温加热管中对不同气水比进行了实验。补充了流态的视觉识别。研究了液体和气体表面速度和流动状态对传热系数的影响。结果表明:传热系数普遍随注入空气流量的增加而增大,在低水流速下增温系数更为显著;在向波浪环形流动过渡时,随着空气表面雷诺数的增加,在固定水流速下观察到两相传热系数的最大值。人们注意到,由于在低水位雷诺数下注入空气,努塞尔数增加了约三倍。以无量纲形式推导了不同流态下空气-水两相流传热的相关性。

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