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高斯 DPSM(G-DPSM)和元素源法(ESM)对 DPSM 的改进,用于超声场建模。

Gaussian-DPSM (G-DPSM) and Element Source Method (ESM) modifications to DPSM for ultrasonic field modeling.

机构信息

Department of Civil Engineering and Engineering Mechanics, University of Arizona, P.O. Box 210072, CE Bldg, Tucson, AZ, USA.

出版信息

Ultrasonics. 2011 Jul;51(5):625-31. doi: 10.1016/j.ultras.2011.01.004. Epub 2011 Jan 18.

Abstract

In the last few years, Distributed Point Source Method (DPSM) a mesh-free semi-analytical technique has been developed. In spite of its many advantages, one shortcoming of the conventional DPSM method is that the field obtained by conventional DPSM method needs to be scaled to match the theoretical solutions. Two modification techniques called Gaussian-DPSM (G-DPSM) and Element Source Method (ESM) are developed here to avoid the scaling need. G-DPSM technique introduces additional fictitious point sources around every parent point source. Gaussian weight functions determine the strength of these additional fictitious point sources that are denoted as child point sources. ESM replaces discrete point sources used in the conventional DPSM by continuous sources. In the ESM formulation individual point sources are denoted as nodes. Special elements are formed on the boundary by connecting these nodes. The source strength inside the element can vary linearly or non-linearly depending on the order of the interpolation function used inside the element. Results generated by both these methods are compared with the conventional DPSM solution and analytical solution. It is shown that the ultrasonic field in front of the transducer computed by G-DPSM and ESM matches very well with the theory without using any scaling factor.

摘要

在过去的几年中,分布式点源方法(DPSM)作为一种无网格半解析技术已经得到了发展。尽管它有许多优点,但传统 DPSM 方法的一个缺点是,传统 DPSM 方法获得的场需要进行缩放才能与理论解匹配。这里开发了两种称为高斯 DPSM(G-DPSM)和单元源方法(ESM)的修正技术来避免缩放需求。G-DPSM 技术在每个父点源周围引入额外的虚拟点源。高斯权重函数确定这些额外虚拟点源的强度,这些点源被表示为子点源。ESM 用连续源替代了传统 DPSM 中使用的离散点源。在 ESM 公式中,单个点源被表示为节点。通过连接这些节点,在边界上形成特殊的元素。根据元素内使用的插值函数的阶数,元素内的源强度可以线性或非线性变化。这两种方法生成的结果与传统 DPSM 解和解析解进行了比较。结果表明,G-DPSM 和 ESM 计算的换能器前方的超声场与理论值非常吻合,而无需使用任何缩放因子。

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