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Numerical study of heat transfer characteristics in BOG heat exchanger

机译:BOG换热器传热特性的数值研究

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In this study, a numerical study of turbulent flow and the heat transfer process in a boil-off liquefied natural gas (BOG) heat exchanger was performed. Finite volume computational fluid dynamics and the k to based shear stress transport model were applied to simulate thermal flow of BOG and ethylene glycol in a full-sized 3D tubular heat exchanger. The simulation model has been validated and compared with the engineering specification data from its supplier. In order to investigate thermal characteristics of the heat exchanger, velocity, temperature, heat flux and thermal response were studied under different mass flowrates in the shell-side. The shell-side flow pattern is mostly determined by viscous forces, which lead to a small velocity and low temperature buffer area in the bottom-right corner of the heat exchanger. Changing the shell-side mass flowrate could result in different distributions of the shell-side flow. However, the distribution in the BOG will remain in a relatively stable pattern. Heat flux increases along with the shell-side mass flowrate, but the increase is not linear. The ratio of increased heat flux to the mass flow interval is superior at lower mass flow conditions, and the threshold mass flow for stable working conditions is defined as greater than 0.41 kg/s. (C) 2016 Published by Elsevier Ltd.
机译:在这项研究中,对沸腾液化天然气(BOG)热交换器中的湍流和传热过程进行了数值研究。应用有限体积计算流体动力学和基于k的切应力传递模型来模拟全尺寸3D管状热交换器中BOG和乙二醇的热流。仿真模型已经过验证,并与供应商的工程规格数据进行了比较。为了研究换热器的热特性,研究了壳侧不同质量流量下的速度,温度,热通量和热响应。壳侧流型主要由粘性力决定,粘性力导致换热器右下角的速度较小且温度较低的缓冲区域。改变壳侧质量流量可导致壳侧流的不同分布。但是,BOG中的分布将保持相对稳定的模式。热通量随着壳侧质量流量的增加而增加,但是这种增加不是线性的。在较低的质量流量条件下,增加的热通量与质量流量间隔的比率较高,并且稳定工作条件下的阈值质量流量定义为大于0.41 kg / s。 (C)2016由Elsevier Ltd.出版

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