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Ultrasonic Field Computation in Presence of a Scatterer of Finite Dimension

机译:有限尺寸散射体存在下的超声场计算

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摘要

A recently developed semi-analytical technique called DPSM (Distributed Point Source Method) is improved and used to model the ultrasonic field in a fluid generated by an ultrasonic transducer and scattered by a solid plate of finite dimension. Earlier works on the ultrasonic field modeling by the DPSM technique have been limited to homogeneous fluids or non-homogeneous media with infinite interfaces. This is the first attempt to model the complete ultrasonic field consisting of incident, reflected, transmitted and diffracted fields by a finite scatterer of any shape or size. No closed form analytical solution exists for ultrasonic field computation in presence of a scatterer and an ultrasonic transducer, both of which can have finite dimensions and any shape. Finite element solution for wave propagation analysis is very time consuming; therefore, the semi analytical technique used here appears to be the method of choice for solving such practical problems. The paper shows how the scattered field varies as the striking angle and dimensions of the scatterer change.
机译:改进了最近开发的称为DPSM(分布式点源方法)的半分析技术,该技术用于对由超声换能器生成并由有限尺寸的固体板散射的流体中的超声场进行建模。通过DPSM技术进行的超声场建模的早期工作仅限于具有无限界面的均质流体或非均质介质。这是首次尝试通过任何形状或大小的有限散射体对包括入射,反射,透射和衍射场的完整超声场建模。在存在散射体和超声换能器的情况下,不存在用于超声场计算的闭合形式的解析解决方案,这两者都可以具有有限的尺寸和任何形状。用于波传播分析的有限元解决方案非常耗时。因此,这里使用的半分析技术似乎是解决此类实际问题的首选方法。本文显示了散射场如何随着散射角和散射体尺寸的变化而变化。

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