Analysis of Modulus and Phase of Resonance Scattered Elastic Waves from Cylindrical Fluid Scatterers

원통형 유체 산란체에 의한 공명 산란 탄성파의 진폭 및 위상 해석

  • Published : 2001.05.01

Abstract

Based on the recently developed resonance scattering theory for elastic waves, a relationship between the stress components, which may be measured using ultrasonic transducers, of partial waves scattered from cylindrical fluid scatterer, cavity, and resonance scatterer has been derived. The computed resonance scattered stresses exhibit frequency behaviors similar to the corresponding scattering coefficients: particularly, abrupt changes in phase by 180°near the resonant frequencies. By studying the behavior of pressure in the fluid scatterer, the physics of the theory has been further understood. Using the method studied and developed in this paper, nondestructive characterization of fluid inclusions in elastic media is expected to become more reliable.

최근 개발된 탄성파 공명산란이론에 기초하여, 원통형 유체산란체, 원통형 구멍 및 공명산란체의 문제에서 초음파탐촉자로 측정할 수 있는 응력 성분간 관계식을 유도하였다. 계산된 공명산란 응력부분파는 산란계수와 유사한 주파수 거동을 보이는데, 특히 공명주파수 근처에서 180°의 급격한 위상변화를 보인다. 유체 매질내 압력의 주파수 거동도 고찰함으로써, 탄성파 공명산란이론에 대한 이해를 증진하였다. 본 논문에서 연구되고 개발된 방법을 사용하면, 탄성매질 내의 유체개재물에 대한 비파괴평가의 신뢰성이 더욱 향상될 것이다.

Keywords

References

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