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A Mechanistic Model for Hydrocarbon Plumes Rising Through Water

机译:通过水上升的碳氢化合物羽毛的机械模型

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For releases of hydrocarbons from a subsea pipeline, riser, or production facility, the shape of the plume rising through the water must be predicted prior to any assessment of gas dispersion, liquid pools, or fire above the water surface. The location and size of the plume at the water surface are key parameters for subsequent consequence modeling. A mechanistic model has been developed to predict the plume trajectory and size, based on mass and momentum balances and an empirical water entrainment ratio from the literature. With suitable physical property values available, the model is applicable to releases of gas and/or liquid hydrocarbons, predicting the vaporization and vapor expansion due to decreasing hydrostatic pressure as the plume rises through the water. Some validation of the model was obtained with sixteen tests in a small-scale transparent tank. The data cover a wide range of flowrates, including both choked and unchoked flow. The predicted and measured trajectories (centerline displacement) agreed reasonably well. Predictions of the model are presented for three fluids. The model is valuable for assessing the consequences of underwater hydrocarbon releases, providing input for subsequent modeling of gas dispersion or liquid pools and pool fires.
机译:对于来自海底管道,提升管或生产设施的烃释放,必须在水分散,液体池或水面上方的任何评估之前预测通过水的羽流的形状。水面上的羽流的位置和尺寸是随后后果建模的关键参数。已经开发了一种机械模型来预测基于来自文献的质量和动量余额和经验水夹带比率的羽流轨迹和尺寸。具有适当的物理性质值可用,该模型适用于释放气体和/或液态烃,预测由于羽流通过水升高而导致的液压压力导致的蒸发和蒸汽膨胀。在小尺寸透明罐中获得了型号的一些验证。数据涵盖了各种流量,包括窒息和未经编织的流量。预测和测量的轨迹(中心线位移)合理达成了同意。三种流体呈现模型的预测。该模型对于评估水下烃释放的后果,提供了用于随后的气体分散或液体池和池火灾的输入提供输入。

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