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An experimental investigation of convection heat transfer during filling of a composite-fibre pressure vessel at low Reynolds number

机译:低雷诺数复合纤维压力容器填充过程中对流换热的实验研究

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摘要

The heat transfer process during filling of an evacuated vessel at low Reynolds number was investigated experimentally using air as the flow medium. The data was analysed using a thermodynamic model similar to one currently in use for the design of systems using commercial carbon fibre reinforced plastic vessels for storage of compressed hydrogen gas. Model assumptions included perfectly-stirred conditions within the vessel, one-dimensional unsteady heat conduction through the composite vessel wall, ideal gas and frictional adiabatic flow conditions through the inlet tube. A transition phenomenon from laminar to turbulent flow was observed by decreasing the inlet diameter while maintaining a similar mass flow rate. Based on the measurements, a new empirical correlation for the Nusselt number under low Reynolds number flow conditions is proposed.
机译:以空气为流动介质,对低雷诺数的真空容器注油时的传热过程进行了实验研究。使用类似于当前用于设计系统的热力学模型对数据进行分析,该系统使用商业碳纤维增强塑料容器来存储压缩氢气,该系统用于设计。模型假设包括容器内完全搅拌的条件,通过复合材料容器壁的一维不稳定热传导,理想的气体和通过入口管的绝热绝热流动条件。在保持相似质量流量的同时,通过减小入口直径可以观察到从层流到湍流的过渡现象。基于这些测量,提出了在低雷诺数流动条件下努塞尔数的新的经验相关性。

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