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超声场建模:分析、半分析和数值技术的比较。

Ultrasonic field modeling: a comparison of analytical, semi-analytical, and numerical techniques.

机构信息

Department of Civil Engineering and Engineering Mechanics, University of Arizona, Tucson, AZ, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2010 Dec;57(12):2795-807. doi: 10.1109/TUFFC.2010.1753.

Abstract

Modeling ultrasonic fields in front of a transducer in the presence and absence of a scatterer is a fundamental problem that has been attempted by different techniques: analytical, semi-analytical, and numerical. However, a comprehensive comparison study among these techniques is currently missing in the literature. The objective of this paper is to make this comparison for different ultrasonic field modeling problems with various degrees of difficulty. Four fundamental problems are considered: a flat circular transducer, a flat square transducer, a circular concave transducer, and a point focused transducer (concave lens) in the presence of a cavity. The ultrasonic field in front of a finite-sized transducer can be obtained by Huygens-Fresnel superposition principle that integrates the contributions of several point sources distributed on the transducer face. This integral which is also known as the Rayleigh integral or Rayleigh-Sommerfeld integral (RSI) can be evaluated analytically for obtaining the pressure field variation along the central axis of the transducer for simple geometries, such as a flat circular transducer. The semi-analytical solution is a newly developed mesh-free technique called the distributed point source method (DPSM). The numerical solution is obtained from finite element analysis. Note that the first three problems study the effect of the transducer size and shape, whereas the fourth problem computes the field in presence of a scatterer.

摘要

在换能器前存在和不存在散射体的情况下对超声场进行建模是一个基本问题,已经尝试过不同的技术:分析、半分析和数值。然而,目前文献中缺少这些技术之间的全面比较研究。本文的目的是针对不同难度程度的不同超声场建模问题进行这种比较。考虑了四个基本问题:存在腔体时的平面圆形换能器、平面方形换能器、圆形凹面换能器和点聚焦换能器(凹透镜)。有限大小换能器前的超声场可以通过惠更斯-菲涅耳叠加原理获得,该原理整合了分布在换能器表面上的几个点源的贡献。对于简单的几何形状,如平面圆形换能器,该积分也称为瑞利积分或瑞利-索末菲尔德积分(RSI),可以进行分析评估,以获得沿换能器中心轴的压力场变化。半分析解是一种新开发的无网格技术,称为分布式点源法(DPSM)。数值解是从有限元分析中获得的。请注意,前三个问题研究了换能器尺寸和形状的影响,而第四个问题计算了存在散射体时的场。

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