首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2007 >FORCE TRANSFER FOR HIGH ORDER FINITE ELEMENT METHODS USING INTERSECTED MESHES
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FORCE TRANSFER FOR HIGH ORDER FINITE ELEMENT METHODS USING INTERSECTED MESHES

机译:使用相交网格的高阶有限元方法的力传递

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High order Finite Element Methods have been shown to be an efficient approach for computing the behavior of fluids and structures alike. However the coupling of such methods in a framework for a partitioned fluid-structure interaction is still in its early stages. A difficulty hereby is a conservative transfer of the loads from the fluid to the solid and an appropriate transfer of the structural displacements back to the boundary of the fluid. This contribution describes the coupling of a high order finite element structural code to the commercial finite volume fluid solver CFX and focuses on the transfer of the loads. For this purpose, the fluid mesh and the structural mesh are intersected. The force acting on the solid is then computed by a composed integration scheme performed on the intersected mesh. The approach can be interpreted as a projection method taking into account the discretization on both sides, i.e. fluid and solid. Numerical examples will demonstrate the basic properties of this new type of data transfer.
机译:已经证明了高阶有限元方法是计算流体和结构的行为的有效方法。然而,这种方法在分配的流体结构相互作用框架中的耦合仍处于其早期阶段。特此难以从流体到固体的载荷的保守转移,并且将结构位移的适当转移回到流体的边界。该贡献描述了高阶有限元结构代码与商业有限体积流体求解器CFX的耦合,并专注于负载的转移。为此目的,相交流体网和结构网。然后通过在相交网格上执行的组合的集成方案来计算作用在固体上的力。该方法可以被解释为考虑到两侧的离散化的投影方法,即流体和固体。数值示例将演示这种新型数据传输的基本属性。

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