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Numerical Experimental Set-Up of Oil Containment by Rigid Floating Boom in Wave

机译:波浪中刚性浮臂围油的数值实验装置

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Based on the Navier-Stokes equations for viscous, incompressible fluid and VOF method, the numerical experiment platform of oil containment by rigid floating boom in wave is established, utilizing the commercial CFD software FLUENT, and the waves are generated by defining the velocity of water particle on the inlet boundary. The volume of fluid (VOF) model is used to distinguish the three immiscible fluids (air, oil and water) and to track the interface between them. In this paper, a second order Stokes-wave with the relative wave height of 0.16 is selected as the incoming wave to simulate the shape of the oil slick and analyze the oil containment by rigid floating boom under this wave. The numerical simulation of the oil containment of the spilled oil on the sea under wave conditions is achieved. Numerical results of oil containment by boom in wave agree well with the corresponding researches and the real conditions. Compared to the traditional physics model experiment, the numerical experiment platform can be carried out with the advantages of low cost, easy reconstruction, unlimited to the model scale, high measuring accuracy and so on. It is shown that the present numerical platform is effective, reliable and accurate and can be applied to simulate the oil containment by booms in wave conditions.
机译:基于粘性,不可压缩流体的Navier-Stokes方程,VOF法,利用商用CFD软件FLUENT建立了波浪形刚性浮臂围油的数值实验平台,并通过定义水速产生了波浪。入口边界上的粒子。流体体积(VOF)模型用于区分三种不混溶的流体(空气,油和水)并跟踪它们之间的界面。本文选择相对波高为0.16的二阶斯托克斯波作为入射波,以模拟浮油的形状,并分析该波作用下刚性浮臂的含油量。实现了波浪条件下海上溢油含油量的数值模拟。波浪中动臂围油的数值结果与相应的研究和实际情况吻合得很好。与传统的物理模型实验相比,该数值实验平台具有成本低,易于重构,模型规模不受限制,测量精度高等优点。结果表明,该数值平台是有效,可靠,准确的,可以应用于波浪条件下动臂围油模拟。

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