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Analysis of heat transfer and frost layer formation on a cryogenic tank wall exposed to the humid atmospheric air

机译:暴露于潮湿空气中的低温储罐壁上的传热和霜层形成的分析

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In this paper heat transfer characteristics and frost layer formation are investigated numerically on the surface of a cryogenic oxidizer tank for a liquid propulsion rocket, where a frost layer could be a significant factor in maintaining oxidizer temperature within a required range. Frost formation is modeled by considering mass diffusion of water vapor in the air into the frost layer and various heat transfer modes such as natural and forced convection, latent heat, solar radiation of short wavelength, and ambient radiation of long wavelength. Computational results are first compared with the available measurements and show favorable agreement on thickness and effective thermal conductivity of the frost layer. In the case of the cryogenic tank, a series of parametric studies is presented in order to examine the effects of important parameters such as temperature and wind speed of ambient air, air humidity, and tank wall temperature on the frost layer formation and the amount of heat transfer into the tank. It is found that the heat transfer by solar radiation is significant and also that heat transfer strongly depends on air humidity, ambient air temperature, and wind speed but not tank wall temperature.
机译:本文通过数值研究了液体推进火箭用低温氧化剂罐表面的传热特性和结霜层,其中结霜层可能是将氧化剂温度保持在所需范围内的重要因素。通过考虑空气中水蒸气在霜层中的质量扩散以及各种传热模式(例如自然对流和强制对流,潜热,短波长的太阳辐射以及长波长的环境辐射)来模拟霜的形成。首先将计算结果与可用的测量结果进行比较,结果表明霜层的厚度和有效导热系数具有良好的一致性。对于低温储罐,提出了一系列参数研究,以检查重要参数的影响,例如环境空气的温度和风速,空气湿度和储罐壁温度对霜层形成和结冰量的影响。热量传递到水箱中。发现通过太阳辐射的热传递是显着的,并且热传递强烈地取决于空气湿度,环境空气温度和风速,而不取决于罐壁温度。

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