期刊文献+

The simulation of ultrasonic beams with a Gaussian beam equivalent point source model 被引量:6

The simulation of ultrasonic beams with a Gaussian beam equivalent point source model
原文传递
导出
摘要 Point Sources and Gaussian beams are used frequently as fundamental building blocks for developing ultrasonic beam models. Both these models have different weaknesses that limit their effectiveness. Here, we will show that one can develop a Gaussian Beam Equivalent Point Source (GBEPS) model that removes those weaknesses and combines the accuracy and versatility of the point source models with much of the speed and well-behaved nature of Gaussian beam models. We will demonstrate the efficiency and versatility of this new GBEPS model in simulating the beams generated from ultrasonic phased arrays, using as few as one Gaussian beam per element of the array. A single element GBEPS model will be shown to be as accurate as a point source model even when substantial beam focusing or steering is present in the array or where the array beam is transmitted through an interface. At the same time the GBEPS model will be shown to be several orders of magnitude faster than the point source model. Point Sources and Gaussian beams are used frequently as fundamental building blocks for developing ultrasonic beam models. Both these models have different weaknesses that limit their effectiveness. Here, we will show that one can develop a Gaussian Beam Equivalent Point Source (GBEPS) model that removes those weaknesses and combines the accuracy and versatility of the point source models with much of the speed and well-behaved nature of Gaussian beam models. We will demonstrate the efficiency and versatility of this new GBEPS model in simulating the beams generated from ultrasonic phased arrays, using as few as one Gaussian beam per element of the array. A single element GBEPS model will be shown to be as accurate as a point source model even when substantial beam focusing or steering is present in the array or where the array beam is transmitted through an interface. At the same time the GBEPS model will be shown to be several orders of magnitude faster than the point source model.
出处 《Chinese Journal of Acoustics》 2010年第2期97-106,共10页 声学学报(英文版)
基金 supported by the National Science Foundation Industry/University Cooperative Research Center program at Iowa State University the Natural Sciences and Engineering Research Council of Canada by the National Natural Science Foundation of China(NSFC)
  • 相关文献

参考文献7

  • 1SCHMERR L W Jr. Fundamentals of ultrasonic nondestructive evaluation-a modeling approach. Plenum Press, New York, 1998.
  • 2LHMERY C A, LECOEUR-TAIBI P I, RAILLON R, PARADIS L. Modeling tools for ultrasonic inspection of welds. NDT&E Int., 2000; 33:499-513.
  • 3GARTON M. Refining automated ultrasonic inspections with simulation models. Review of Progress in Quantitative Nondestructive Evaluation, D.O. Thompson and D.E. Chimenti, Eds., Plenum Press, New York, N.Y., 1998; 17B: 1825-1829.
  • 4GENGEMBRE N, LHMERY A. Pencil method in elastodynamics: application to ultrasonic field computation. Ultrasonics, 2000; 38:495-499.
  • 5SCHMERR L W, SONG S -J. Ultrasonic nondestructive evaluation systems - models and measurements. Springer, New York, N.Y., 2007.
  • 6PRANGE M D, SHENOY R G, A fast Gaussian beam description of ultrasonic fields based on Prony's method. Ultrasonics, 1996; 34:117 119.
  • 7MARPLE S L. Digital spectral analysis with applications. Prentice-Hall, Inc., Englewood Cliffs, New Jersey, 1987.

同被引文献68

引证文献6

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部