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Experimental study on cool down characteristics and thermal stress of cryogenic tank during LN2 filling process

机译:LN2灌装过程中低温罐冷却特性和热应力的实验研究

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摘要

During the filling processes of large-scale tanks with cryogenic liquids, the tanks experience non-uniform cool down processes and could suffer from significant thermal stress. An experimental study is performed to investigate the cool down characteristics and transient thermal stress distribution of an aluminum tank during LN2 filling processes with different feeding rates. The varying wall temperatures and induced thermal strains during filling processes are measured, and the local thermal stresses are evaluated. Test results indicate that when LN2 is fed into the tank, remarkable temperature gradient exists in the local wall region at the liquid level. The thermal stress at each point experiences a tension-compression cycle as the liquid level passes by. The maximum thermal stress at each point is proportional to the local maximum cooling rate, and the peak value emerges at the bottom of the tank. Moreover, the non-uniformity of the temperature distribution and the thermal stress level within the tank wall increase with the LN2 feeding rate. Under the largest feeding rate (0.08 kg/s) in this study, the peak value of thermal stress is about 41 MPa. This work could be beneficial to the design and safe operation of cryogenic tanks. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在具有低温液体的大型罐的填充过程中,罐体经历不均匀的冷却过程,并且可能遭受显着的热应力。进行实验研究以研究具有不同进料速率的LN2填充过程中铝罐的冷却特性和瞬态热应力分布。测量填充过程中的变化壁温度和诱导的热菌株,评价局部热应力。测试结果表明,当LN2被送入罐中时,液位的局部壁区域中存在显着的温度梯度。每个点的热应力经历张力压缩循环,因为液位通过。每个点的最大热应力与局部最大冷却速率成比例,并且峰值在罐的底部出现。而且,温度分布的不均匀性和罐壁内的热应力水平随着LN2进料速率而增加。在本研究中最大的饲养速率(0.08kg / s)下,热应力的峰值为约41MPa。这项工作可能有利于低温坦克的设计和安全操作。 (c)2017 Elsevier Ltd.保留所有权利。

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