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A realistic vapour phase heat transfer model for the weathering of LNG stored in large tanks

机译:用于储存在大型储罐中的LNG风化的真实气相传热模型

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A new non-equilibrium model relevant to LNG weathering in large storage tanks under constant pressure has been developed. It treats the heat influx from the surroundings into the vapour and liquid phases separately and allows for heat transfer between the two phases. The main heat transfer mechanisms in the vapour phase are assumed to be advection, due to upward flow of evaporated LNG, and conduction.It has been observed that the vapour temperature increases monotonically as a function of the height, in agreement with recent experimental results. In all the simulations performed the vapour to liquid heat transfer was small, also in line with recent experimental findings, and is estimated to contribute less than 0.3% to boil-off gas rates. The results of this work indicate that the heat transfer by the advective upward flow dominates the energy transfer within the vapour, while the natural convection, in the body of the vapour, can be neglected. The initial liquid filling has a pronounced effect on all the relevant variables, leading to a decrease in vapour temperature and boil-off gas temperature and an increase in boil-off rates. A rule of thumb for estimating the boil-off gas temperature in industrial storage tanks is provided. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已经开发出一种与大型储罐在恒定压力下的LNG风化有关的新的非平衡模型。它分别处理从周围环境流入气相和液相的热量,并允许两相之间的热传递。由于蒸发的液化天然气的向上流动和传导,假定汽相中的主要传热机理是对流。据观察,与最近的实验结果一致,蒸汽温度随高度单调增加。在所有进行的模拟中,蒸气到液体的热传递很小,这也与最近的实验结果一致,并且估计其对蒸发气体速率的贡献小于0.3%。这项工作的结果表明,对流向上流动的热传递控制着蒸气内部的能量传递,而在蒸气体内的自然对流可以忽略不计。初始液体填充对所有相关变量都有显着影响,从而导致蒸气温度和蒸发气体温度降低,蒸发速率增加。提供了估算工业储罐中蒸发气体温度的经验法则。 (C)2019 Elsevier Ltd.保留所有权利。

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