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STUDY OF WATER IMPACT AND ENTRY OF A FREE FALLING WEDGE USING CFD SIMULATIONS

机译:使用CFD仿真研究自由落体楔的水冲击和进入

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Many offshore constructions and operations involve water impact problems such as water slamming onto a structure or free fall of objects with subsequent water entry and emergence. Wave slamming on semi-submersibles, vertical members of jacket structures, crane operation of a diving bell and dropping of free fall lifeboats are some notable examples. The slamming and water entry problems lead to large instantaneous impact pressures on the structure, accompanied with complex free surface deformations. These need to be studied in detail in order to obtain a better understanding of the fluid physics involved and develop safe and economical design. In the special case of free-fall lifeboats, model testing can be expensive and time consuming. Here, numerical modelling can make useful contributions to the design process. The slamming of a free falling body into water involves several complex hydrodynamic features after its free-fall such as water entry, submergence into water and resurfacing. The water entry and submergence lead to formation of water jets and air cavities in the water resulting in large impact forces on the object. In order to evaluate the forces and hydrodynamics involved, the numerical model should be able to account for the complex free surface features, the instantaneous pressure changes around the lifeboat and accurately evaluate the loads on the lifeboat. As a step towards simulating free-fall lifeboats, water entry of a free-falling wedge into water is studied in this paper using a CFD model. The vertical velocity of the wedge during the process of free fall and water impact are calculated for dif- ferent cases and the free surface deformations are captured in detail. Numerical results are compared with experimental data and a good agreement is seen. The open-source CFD model REEF3D is used in this study. The model solves the Reynolds-Averaged Navier-Stokes equations to evaluate the fluid flow. The convec-tive terms are discretized using a Sth-order conservative finite difference WENO scheme. Time discretization is carried out using a 3rd-order Runge-Kutta scheme. Pressure discretization is carried out using Chorins projection method. The Poisson pressure equation is solved using a pre-conditioned BiCGStab algorithm. A sharp representation of the free surface is obtained using the level set method. The falling wedge is represented using the level set paradigm as well, avoiding the need for re-meshing during the simulation. Turbulence modeling is carried out using the k-ω model. Computational performance of the numerical model is improved by parallel processing using the MPI library.
机译:许多海上施工和作业都涉及水冲击问题,例如水撞击到建筑物上或物体随其后落水而自由落下。在半潜式潜水器上猛烈撞击,夹套结构的垂直构件,吊钟的吊车操作以及自由落体救生艇的掉落都是一些著名的例子。砰击和水进入问题导致结构上的大瞬时冲击压力,并伴随着复杂的自由表面变形。为了更好地理解所涉及的流体物理学并开发安全而经济的设计,需要对它们进行详细研究。在自由落体救生艇的特殊情况下,模型测试可能既昂贵又耗时。在这里,数值建模可以为设计过程做出有益的贡献。自由落体撞击到水中涉及自由落体后的几个复杂的水动力特征,例如水进入,浸入水中和重铺路面。水的进入和浸入导致水中形成水射流和气穴,从而在物体上产生较大的冲击力。为了评估所涉及的力和流体动力学,数值模型应能够考虑复杂的自由表面特征,救生艇周围的瞬时压力变化并准确评估救生艇上的载荷。作为模拟自由落体救生艇的一步,本文使用CFD模型研究了自由落体楔入水中的情况。计算了不同情况下自由落体和水冲击过程中楔形的垂直速度,并详细记录了自由表面变形。将数值结果与实验数据进行比较,可以看到很好的一致性。本研究使用开源CFD模型REEF3D。该模型求解雷诺平均Navier-Stokes方程,以评估流体流量。对流项使用S阶保守有限差分WENO方案离散化。时间离散使用三阶Runge-Kutta方案进行。压力离散使用Chorins投影法进行。泊松压力方程式是使用BiCGStab预处理算法求解的。使用水平设置方法可获得自由表面的清晰表示。下降楔形也使用水平集范例来表示,从而避免了在仿真过程中重新划分网格的需求。湍流建模是使用k-ω模型进行的。通过使用MPI库进行并行处理,可以提高数值模型的计算性能。

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