首页> 外文期刊>International Communications in Heat and Mass Transfer >Subcooled flow boiling of ethylene-glycol/water mixture in an inclined channel with a hot spot: An experimental study
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Subcooled flow boiling of ethylene-glycol/water mixture in an inclined channel with a hot spot: An experimental study

机译:带有热点的倾斜通道中乙二醇/水混合物的过冷沸腾:实验研究

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摘要

Subcooled flow boiling plays an important role in many industrial systems like Internal Combustion Engines (ICE). The main reason of its extensive application is its high potential of heat removal due to the fluid latent heat The ethylene-glycol/water mixtures have been used as engine coolants for several decades. In this study, the effects of some parameters such as surface roughness, fluid velocity and surface inclination on the subcooled flow boiling of ethylene-glycol/water mixture with 50-50% volume fraction (WEG50) are investigated experimentally. An experimental test rig with the most resemblance condition to an ICE water jacket is set up and comprehensive data are collected. The setup consists of a 12 mm circular heater that is placed on the lower wall of a 20 × 30 mm~2 channel and the WEG50 is used as the working fluid. Based on the experimental data, two new independent empirical correlations are presented to predict the subcooled flow boiling heat transfer inside the horizontal channel with good accuracy. The experimental results show that by increasing the test section surface roughness and fluid velocity the surface heat fluxes increase too. Inclination of the surface in either direction yields higher heat transfer coefficient in comparison to its horizontal position when the surface is smooth but lower for the rough surface.
机译:过冷流沸腾在许多工业系统(例如内燃机(ICE))中起着重要作用。其广泛应用的主要原因是由于流体潜热而具有很高的除热潜力。乙二醇/水混合物已用作发动机冷却剂已有数十年之久。在这项研究中,实验研究了诸如表面粗糙度,流体速度和表面倾斜度等参数对体积分数为50-50%的乙二醇/水混合物的过冷沸腾(WEG50)的影响。建立了与ICE水套最相似条件的实验设备,并收集了全面的数据。该装置包括一个12 mm的圆形加热器,该加热器放置在20×30 mm〜2通道的下壁上,并且WEG50用作工作流体。基于实验数据,提出了两个新的独立的经验关系式,可以很好地预测水平通道内过冷流动沸腾传热。实验结果表明,通过增加测试截面的表面粗糙度和流体速度,表面热通量也会增加。与表面水平时相比,该表面在任一方向上的倾斜都会产生更高的传热系数,而在粗糙表面上则更低。

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