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Eulerian Oil Spills Model Using Finite-Volume Method with Moving Boundary and Wet-Dry Fronts

机译:欧拉省油溢出模型采用移动边界和湿干翼的有限体积法

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摘要

The world production of crude oil is about 3 billion tons per year. The overall objective of the model in present study is supporting the decision makers in planning and conducting preventive and emergency interventions. The conservative equation for the slick dynamics was derived from layer-averaged Navier-Stokes (LNS) equations, averaged over the slick thickness. Eulerian approach is applied across the model, based on nonlinear shallow water Reynolds-averaged Navier-Stokes (RANS) equations. Depth-integrated standard k-ε turbulence schemes have been included in the model. Wetting and drying fronts of intertidal zone and moving boundary are treated within the numerical model. A highly accurate algorithm based on a fourth-degree accurate shape function has been used through an alternating-direction implicit (ADI) scheme which separates the operators into locally one-dimensional (LOD) components. The solution has been achieved by the application of KPENTA algorithm for the set of the flow equations which constitutes a pentadiagonal matrix. Hydrodynamic model was validated for a channel with a sudden expansion in width. For validation of oil spill model, predicted results are compared with experimental data from a physical modeling of oil spill in a laboratory wave basin under controlled conditions.
机译:世界生产原油每年约有30亿吨。本研究模型的总体目标是在规划和进行预防和急诊干预方面支持决策者。 Slick Dynamics的保守方程源自来自层次平均的Navier-Stokes(LNS)方程,通过光滑厚度平均。基于非线性浅水reynolds平均Navier-Stokes(RAN)方程,在该模型中应用欧拉方向。模型中包含深度集成的标准K-ε湍流方案。在数值模型中处理透模区和移动边界的润湿和干燥前沿。基于第四度精确形状功能的高度精确算法已经通过交流方向隐式(ADI)方案,该方案将操作员分离为局部一维(LOD)组件。通过应用KPenta算法来实现构成五个矩阵的流动方程集的kpenta算法。流体动力学模型用于宽度突然膨胀的通道。为了验证漏油模型,将预测结果与来自受控条件下的实验室波盆中的油溢出的实验数据进行比较。

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