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Numerical study of the boil-off gas (BOG) generation characteristics in a type C independent liquefied natural gas (LNG) tank under sloshing excitation

机译:晃动激励下C型独立液化天然气(LNG)罐中蒸汽气体(沼泽)生成特性的数值研究

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In this paper, a numerical model considering phase change and external heat leakage is established to study the thermodynamic and hydrodynamic of a type C LNG tank under sinusoidal sloshing excitation. The volume of fluid (VOF) method, coupled with the mesh motion treatment, is adopted to predict the movement of the vapor-liquid interface. The sinusoidal sloshing excitation is realized by a user-defined function (UDF). Compared with related fluid sloshing experiments, the feasibility of the numerical model is verified. The numerical results show that the sloshing excitation has great influences on the ther-mophysical process and the BOG generation of the LNG tank. The effects of different sloshing frequencies and amplitudes on the thermodynamic characteristics of the LNG tank are studied. In addition, the partial damage of the insulation system is also studied, and it is found that the sloshing has little effect on the critical superheat of the tank wall where the insulation layer is partial damaged, but it will delay the increase of the tank wall temperature. This study is significant to deeply understand the thermal behavior of the LNG sloshing and the characteristics of the BOG generation under sloshing condition during the actual marine transportation of LNG ships. ? 2021 Elsevier Ltd. All rights reserved.
机译:本文建立了考虑相变和外部散热的数值模型,以研究正弦晃动激发下C型LNG罐的热力学和流体动力学。采用与网状运动处理相结合的流体(VOF)方法的体积来预测蒸汽液界面的运动。正弦晃动激励通过用户定义的函数(UDF)实现。与相关流体晃动实验相比,验证了数值模型的可行性。数值结果表明,晃动激发对液体物理过程的影响很大,液化液滴的沼泽产生。研究了不同晃动频率和幅度对LNG罐的热力学特性的影响。此外,还研究了绝缘系统的部分损坏,发现晃动对罐壁的临界超漏几乎没有影响,其中绝缘层是部分损坏的,但它将延迟罐壁的增加温度。本研究非常了解LNG船舶实际海洋运输期间LNG晃动的热行为和晃动状态下的沼泽发电的特征。还是2021 elestvier有限公司保留所有权利。

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