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CRYOGENIC FLUID FLOW IN THE INSULATION WALL OF THE CARGO CONTAINMENT SYSTEM

机译:货物围护系统绝缘壁中的低温流体流动

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The cargo containment system (CCS) for ships carrying cryogenic fluid consists of at least two levels of barriers and insulation layers. It is because, even though there is a small amount of leak through the primary barrier, the liquid tight secondary barrier blocks further leakage of the cryogenic fluid. However, once the secondary barrier is damaged, it is highly possible that the leaked cryogenic fluid flows through the flat joint made of glass wool and reaches the inner hull of the ship. The primary objective of the present study is to investigate the influence of the damage extent in the secondary barrier on the amount of leaked cryogenic fluid reaching the inner hull and the temperature distribution there. Simulation results using a computational fluid dynamics tool were compared with the experimental data for the leaked cryogenic fluid flow and evaporation in the secondary insulation layer.
机译:载有低温流体的船舶的货物围护系统(CCS)至少由两层屏障和绝缘层组成。这是因为,即使通过第一屏障的泄漏量很小,但不漏液的第二屏障也会阻止低温流体的进一步泄漏。但是,一旦二级屏障受损,泄漏的低温流体很可能会流过由玻璃棉制成的扁平接头,并到达船舶的内部船体。本研究的主要目的是研究次生壁障的破坏程度对泄漏到内部船体的低温流体的量及其温度分布的影响。将使用计算流体动力学工具的模拟结果与次级绝缘层中泄漏的低温流体流动和蒸发的实验数据进行了比较。

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