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Thermal simulations of a hydrogen storage tank during fast filling

机译:快速填充过程中储氢罐的热模拟

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A finite element analysis is performed on the heat transfer process across the tank walls to determine the temperature distributions of hydrogen storage tanks during fast filling. The accuracy of the numerical model is shown by comparison between the experimental measurements and the computed results. A sensitivity analysis of the tank wall thermal conductivity, specific heat capacity, density and heat transfer coefficient between the tank's external surface and the ambient air is carried out and the resulting effects are described. The properties of the tank's composite layer have a larger effect on the temperature history on the tank external surface than the properties of the plastic liner. The heat transfer coefficient between the tank's external surface and the environment has a negligible effect during the filling but a significant impact during the holding time. Increasing the liner thickness significantly decreases the temperature in the composite layer. Copyright (C) 2015, The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications, LLC.
机译:对跨罐壁的传热过程进行了有限元分析,以确定快速填充过程中储氢罐的温度分布。通过比较实验测量结果和计算结果来显示数值模型的准确性。对罐壁的导热系数,比热容,密度和罐的外表面与周围空气之间的传热系数进行了敏感性分析,并描述了所产生的影响。储罐复合层的性能比塑料衬里的性能对储罐外表面的温度历史影响更大。储罐外表面与环境之间的传热系数在灌装过程中的影响可忽略不计,但在保温时间内的影响很大。增加衬里厚度会显着降低复合层的温度。版权所有(C)2015,作者。由Elsevier Ltd代表Hydrogen Energy Publications,LLC发布。

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