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AN ACOUSTIC SUPERPOSITION METHOD FOR COMPUTING STRUCTURAL RADIATION IN SPATIALLY DIGITIZED DOMAINS

机译:空间数字化域中结构辐射的声叠加方法

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This paper presents a new method for computing acoustic fields of structural radiators based on acoustic superposition methods using meshless, spatially digitized domains (ASMDD). Here the system matrices are assembled knowing only coordinate points in 3D space that describe the geometry of the radiating structure. In contrast to conventional methods, ASMDD does not require numerical, high orders of integration over elemental surfaces to populate system matrices. The system's Green functions are computed simply between source and receiver locations at their respective points. A new derivation provides an analytical solution for coincident source and receiver points where the Green function is singular. The digital domain of ASMDD is a uniform distribution of points equidistant in the x, y, and z directions. The centroid of each activated voxel (used only as a means for visualizing the 3D surface) represents a point on the structural surface being modeled. Work in this paper exploits the inherent uniformity of neighboring points to formulate a locally determined outward-pointing, surface normal needed for acoustic radiation problems. The ability of the calculated surface normals to model the curvature of the continuous radiating surface depends on the density of the meshless grid, i.e., higher curvature requires higher grid densities. The attractiveness of the digital domain approach is its simplicity for morphing of structural shapes in optimization. Shape iterations in the digitized space reduce to a simple process of activating or deactivating selected points in a contiguous manner depending on the desired shape during an optimization. As an example, the ASMDD formulation is used to compute the modal radiation from a square plate in an infinite and cubic baffle. The ASMDD surface points are shown to blend seamlessly with the surface vibration results of the plate generated via meshless structural dynamics (Meshless Local Petrov Galerkin method - MLPG). This is achieved by solving the modal radiated acoustic power from the plate where the surface velocity is specified by the modal
机译:本文提出了一种使用无网格,空间数字化域(ASMDD)的基于声学叠加方法的结构散热器声场计算的新方法。在这里,仅在描述3D空间中描述辐射结构几何形状的坐标点的情况下组装系统矩阵。与常规方法相比,ASMDD不需要在元素表面上进行数值高阶的积分即可填充系统矩阵。系统的绿色功能仅在源和接收器位置各自的点之间进行计算。一个新的推导为格林函数为奇异的源点和接收点重合提供了一种解析解决方案。 ASMDD的数字域是沿x,y和z方向等距分布的点的均匀分布。每个激活的体素的质心(仅用作可视化3D表面的手段)代表要建模的结构表面上的一个点。本文的工作利用了相邻点的固有均匀性来制定声辐射问题所需的局部确定的向外指向的表面法线。计算出的表面法线对连续辐射表面的曲率建模的能力取决于无网格网格的密度,即更高的曲率需要更高的网格密度。数字域方法的吸引力在于其在优化中简化结构形状的变形。在优化过程中,根据所需的形状,数字化空间中的形状迭代可简化为以连续方式激活或停用选定点的简单过程。例如,ASMDD公式用于计算无限和立方挡板中来自正方形板的模态辐射。显示了ASMDD表面点与通过无网格结构动力学(Meshless Local Petrov Galerkin方法-MLPG)生成的板的表面振动结果无缝融合。这是通过求解板的模态辐射声功率来实现的,该模态辐射声功率由模态指定表面速度

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