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1D plane numerical model for boiling liquid expanding vapor explosion (BLEVE)

机译:沸腾液体膨胀蒸气爆炸(BLEVE)的一维平面数值模型

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摘要

The depressurization of a vessel containing saturated or subcooled liquid may occur in a variety of industrial processes and often poses a potentially hazardous situation. A 1D plane numerical model was developed for estimating the thermodynamic and the dynamic state of the boiling liquid during a boiling liquid expanding vapor explosion (BLEVE) event. Based on the choice of the initial nucleation sites density, the model predicts, simultaneously, the bubble growth processes in the liquid at the superheat-limit state, the front velocity of the expanding liquid, and the shock wave pressure formed by the liquid expansion through the air. Conditions of shock formation were found to be normally associated with high initial temperatures that can bring the liquid to its superheat-limit state during the initial depressurization. Furthermore, the high initial temperature also induces a generation of higher vapor pressures that forces a rapid mixture expansion. Model predictions of the shock wave strengths, in terms of TNT equivalence, were compared against those obtained by simple energy models. As expected, the simple energy models over predicts the shock wave strength. However, the simple model which accounts for the expansion irreversibility, produces results which are closer to current model predictions.
机译:装有饱和或过冷液体的容器的减压可能会在各种工业过程中发生,并经常造成潜在的危险情况。开发了一维平面数值模型,以估计沸腾液体膨胀蒸气爆炸(BLEVE)事件期间沸腾液体的热力学和动态状态。该模型基于初始成核点密度的选择,同时预测过热极限状态下液体中的气泡生长过程,膨胀液体的前沿速度以及通过液体膨胀而形成的冲击波压力。空气。发现形成冲击的条件通常与较高的初始温度有关,该初始温度可以在初始减压期间使液体达到其过热极限状态。此外,高的初始温度还引起较高的蒸气压的产生,从而迫使混合物快速膨胀。将冲击波强度的模型预测(以TNT等效性表示)与通过简单能量模型获得的预测值进行了比较。不出所料,简单的能量模型可以预测冲击波强度。但是,解决了扩展不可逆性的简单模型所产生的结果更接近于当前模型的预测。

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