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3-D finite element simulation of the cylinder temperature distribution in boil-off gas (BOG) compressors

机译:蒸发气体(BOG)压缩机气缸温度分布的3-D有限元模拟

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摘要

The boil-off gas (BOG) compressor is one of the most critical pieces of equipment in the handling of boil off gas from liquefied natural gas (LNG). It ensures the safety of the transportation and receiving systems of LNG. This study used a three-dimensional finite element model to investigate the heat transfer process in the cylinder of a BOG compressor. The results showed that when the BOG compressor was running steadily, the average temperatures of the suction chamber and the discharge chamber were ~-109 ℃ and ~-60 ℃, respectively. The temperature of the compression chamber was between these two values. Simulations of the temperature of the inner surface of the cylinder showed that more than 60% of the total temperature drop occurred within the first ten minutes of the compressor's operation, and that the largest temperature difference between various parts of the cylinder also occurred during this period. Thereafter, the temperature gradually decreased until it reached a dynamically stable state. Finally, it was proven that temperature fluctuation only existed on the inner surface of the cylinder and that its ampli tude was lower than 0.003 ℃. Accordingly, the global temperature can be regarded as invariable.
机译:蒸发气体(BOG)压缩机是处理液化天然气(LNG)蒸发气体中最关键的设备之一。它确保了液化天然气运输和接收系统的安全。本研究使用三维有限元模型来研究BOG压缩机气缸内的传热过程。结果表明,当BOG压缩机稳定运行时,吸入室和排出室的平均温度分别为〜-109℃和〜-60℃。压缩室的温度在这两个值之间。对气缸内表面温度的模拟表明,在压缩机运行的前十分钟内,总温降超过60%,并且在此期间气缸各部分之间的最大温差也出现了。此后,温度逐渐降低直到达到动态稳定状态。最后,证明了温度波动仅存在于圆柱体的内表面,并且其振幅小于0.003℃。因此,整体温度可以被认为是不变的。

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