首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >COMPARISON OF SINGLE AND OVERSET GRID TECHNIQUES FOR CFD SIMULATIONS OF A SURFACE EFFECT SHIP
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COMPARISON OF SINGLE AND OVERSET GRID TECHNIQUES FOR CFD SIMULATIONS OF A SURFACE EFFECT SHIP

机译:表面效应船CFD模拟的单一和重叠网格技术的比较

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Overset, or Chimera meshes are used to discretize the governing equations within a computational domain using multiple meshes that overlap in an arbitrary manner. The overset mesh technique is most applicable to problems dealing with multiple or moving bodies. In order to extend existing full craft CFD (RANS) simulations of a surface effect ship (SES) into shallow water and maneuvering cases, an overset mesh is needed. Deep water simulations were carried out using both single and overset grid techniques for evaluation of the overset grid application. The single grid technique applies a hexahedral mesh to the fluid domain and SES geometry. An adequate mesh resolution was determined by performing a grid convergence study on a series of systematically refined meshes. An overset mesh of the same resolution was then constructed and was fixed to the body. Drag and pitch results are compared among the two simulations. Free surface elevations around the craft and under the air cushion for simulations with the single and overset meshes are compared. Steady-state simulations using the overset mesh and the single mesh show general similarities in drag, pitch, and free surface elevations.
机译:Overset或Chimera网格用于使用多个以任意方式重叠的网格对计算域内的控制方程进行离散化。覆盖网格技术最适用于处理多个或移动物体的问题。为了将现有的表面效应舰艇(SES)的完整CFD(RANS)模拟扩展到浅水和操纵箱中,需要使用过冲网格。使用单一网格和覆盖网格技术进行深水模拟,以评估覆盖网格的应用。单网格技术将六面体网格应用于流体域和SES几何形状。通过对一系列系统精炼的网格进行网格收敛研究,确定了足够的网格分辨率。然后构造一个具有相同分辨率的覆盖网格并将其固定到主体上。在两个模拟中比较了阻力和俯仰结果。比较了使用单个网格和覆盖网格进行模拟的飞行器周围和气垫下方的自由表面高度。使用重覆网格和单个网格的稳态仿真显示了阻力,俯仰和自由曲面高程的普遍相似之处。

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