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A fixed-grid model for simulation of a moving body in free surface flows

机译:用于模拟自由表面流中的运动物体的固定网格模型

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A two-dimensional computer model is developed to simulate free surface flow interaction with a moving body. The model is based on the cut-cell technique in a fixed-grid system. In this model, a body is approximated by the partial cell treatment (PCT), in which an irregular body is represented by the volumetric fraction of solid in Cartesian cells. The body motion is tracked by Lagrangian method whereas the fluid motion around the body is solved by Eulerian method. The concept of "locally relative stationary (LRS)" is introduced in this study. In the LRS method, a source term is added locally to the conventional continuity equation on body surfaces to take account of body motions, which subsequently affects the computational results of fluid pressure and flow velocity around the body. The LRS method is incorporated into an earlier Reynolds averaged Navier-Stokes (RANS) equations model developed by Lin and Liu [A numerical study of breaking waves in the surf zone. J Fluid Mech 1998;359:239-64]. The new model is capable of simulating generic turbulent free surface flows and their interaction with a moving body or multiple moving bodies. A series of numerical experiments have been conducted to verify the accuracy of the model for simulation of moving body interaction with a free surface flow. These tests include the generation of a solitary wave with the prescribed wave paddle movements, water exit and water impact and entry of a horizontal circular cylinder, fluid sloshing in a horizontally excited tank, and the acceleration/deceleration of an elliptical cylinder near a water surface. Excellent agreements are obtained when numerical results are compared to available analytical, experimental, and other numerical results. The model is a simple-to-implement computational tool for simulating a moving body in turbulent free surface flows.
机译:开发了二维计算机模型来模拟自由表面流与移动体的相互作用。该模型基于固定网格系统中的切割单元技术。在此模型中,通过部分细胞处理(PCT)对物体进行近似,其中不规则物体由笛卡尔细胞中固体的体积分数表示。通过拉格朗日方法跟踪身体运动,而通过欧拉方法求解围绕身体的流体运动。本研究介绍了“局部相对平稳(LRS)”的概念。在LRS方法中,将源项局部添加到体表上的常规连续性方程中,以考虑到体动,这随后会影响体周围的流体压力和流速的计算结果。 LRS方法被结合到由Lin和Liu开发的更早的雷诺平均Navier-Stokes(RANS)方程模型中[海浪中的破碎波数值研究。 J Fluid Mech 1998; 359:239-64]。新模型能够模拟一般的湍流自由表面流及其与一个或多个运动物体的相互作用。已经进行了一系列数值实验,以验证用于模拟运动体与自由表面流相互作用的模型的准确性。这些测试包括产生具有规定的波桨运动的孤波,出水和水的冲击以及水平圆柱的进入,水平激励罐中的流体晃动以及水表面附近的椭圆圆柱的加速/减速。将数值结果与可用的分析,实验和其他数值结果进行比较,即可获得极好的协议。该模型是一种易于实现的计算工具,用于在湍流自由表面流中模拟运动物体。

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