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Progress on the boundary element method to study the disturbance fields of bodies moving in an unbounded medium

机译:边界元法研究无边界介质中物体扰动场的研究进展

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For studying flow problems involved with complex physics it is now common to use numerical field methods for solving Navier-Stokes or Euler equations. However, for a large class of fluid mechanics problems, which can be dealt with linearized potential equations, the boundary element method proves to be quite useful, especially for its easy application and relatively less computational effort compared to the field methods. The boundary element method has undergone some significant advancements in the last decade with respect to the study of steady and unsteady flow problems concerning wing aerodynamics in compressible medium, flow fields of propellers and rotors and acoustical disturbance propagation from moving bodies. In this paper a few recent contributions which evolved in the DLR as research projects and as doctoral and diploma thesis of the Technical University Braunschweig are concisely described.
机译:为了研究与复杂物理学有关的流动问题,现在通常使用数值场方法来求解Navier-Stokes或Euler方程。但是,对于一大类可以用线性化势能方程解决的流体力学问题,边界元方法被证明是非常有用的,尤其是与现场方法相比,它易于应用且计算量相对较少。在研究可压缩介质中的机翼空气动力学,螺旋桨和旋翼的流场以及运动物体的声扰动传播的稳态和非稳态流动问题方面,边界元方法在过去十年中取得了重大进展。本文简要描述了最近在DLR中作为研究项目以及不伦瑞克工业大学的博士学位和文凭论文发展起来的一些贡献。

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