论文标题

联合流体动力和热力学模型,以预测LNG溢出中快速相变的发作

A combined fluid-dynamic and thermodynamic model to predict the onset of rapid phase transitions in LNG spills

论文作者

Lervåg, Karl Yngve, Skarsvåg, Hans L., Aursand, Eskil, Ouassou, Jabir Ali, Hammer, Morten, Reigstad, Gunhild, Ervik, Åsmund, Fyhn, Eirik Holm, Gjennestad, Magnus Aa., Aursand, Peder, Wilhelmsen, Øivind

论文摘要

船上液化天然气(LNG)的运输在全球范围内发生。液化天然气和水之间的较大温度差异意味着液化天然气如果洒到水中会猛烈沸腾。这可能导致物理爆炸称为快速相变(RPT)。由于RPT是由于几个尺度上的物理现象之间的复杂相互作用引起的,因此很难估计其发生的风险。在这项工作中,我们提出了一个组合的流体动力和热力学模型,以预测延迟RPT的发作。在完整的耦合模型的基础上,我们在轴对称稳态溶液中延迟RPT的位置和时间的分析溶液在水中延迟。与一系列相关参数的仿真结果相比,这些方程式显示为准确。 RPT位置的分析解决方案和预测之间的相对差异在2%以内,在RPT时期为8%以内。这提供了一个简单的程序,可以量化延迟液化天然气在水上的延迟RPT的风险。由于其模块化配方,可以直接扩展完整的耦合模型以在其他系统中研究RPT。

Transport of liquefied natural gas (LNG) by ship occurs globally on a massive scale. The large temperature difference between LNG and water means LNG will boil violently if spilled onto water. This may cause a physical explosion known as rapid phase transition (RPT). Since RPT results from a complex interplay between physical phenomena on several scales, the risk of its occurrence is difficult to estimate. In this work, we present a combined fluid-dynamic and thermodynamic model to predict the onset of delayed RPT. On the basis of the full coupled model, we derive analytical solutions for the location and time of delayed RPT in an axisymmetric steady-state spill of LNG onto water. These equations are shown to be accurate when compared to simulation results for a range of relevant parameters. The relative discrepancy between the analytic solutions and predictions from the full coupled model is within 2% for the RPT position and within 8% for the time of RPT. This provides a simple procedure to quantify the risk of occurrence for delayed RPT for LNG on water. Due to its modular formulation, the full coupled model can straightforwardly be extended to study RPT in other systems.

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