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螺旋波在径向非均匀弹性介质中的传播特性。

Dispersion properties of helical waves in radially inhomogeneous elastic media.

机构信息

Schlumberger Moscow Research, Pudovkina 13, Moscow, 119285 Russia.

出版信息

J Acoust Soc Am. 2012 Jun;131(6):4263-71. doi: 10.1121/1.4707485.

Abstract

In this paper, a method describing dispersion curve calculation for waves propagating in radially layered, inhomogeneous isotropic elastic waveguides is developed. Particular emphasis is placed on the helical waves with noninteger azimuthal wavenumbers, which can be potentially applied in such fields as nondestructive evaluation, acoustic tomography, etc., stipulating their practical importance. To solve the problem under consideration, the matrix Riccati equation is formulated for an impedance matrix. The use of the latter yields a simple form of the dispersion equation. Numerical computation of dispersion curves can encounter difficulties, which are due to potential singularities of the impedance matrix and the necessity to separate roots of the dispersion equation. These difficulties are overcome by employing the Cayley transform and invoking the parametric continuation method. The method developed by the authors is demonstrated by calculating dispersion diagrams in support of helical waves for several models of practical interest. Such computations for an inhomogeneous layer and its approximation by a set of homogeneous layers using a transfer matrix and Riccati equation methods revealed higher computational accuracy of the latter. Dispersion curves calculated for layers with different types of inhomogeneity demonstrated significant discrepancies at low frequencies.

摘要

本文提出了一种用于计算在径向分层、各向同性弹性导波中传播的波的频散曲线的方法。特别强调了具有非整数角波数的螺旋波,它们在无损评估、声层析成像等领域有潜在的应用,这说明了它们的实际重要性。为了解决所考虑的问题,针对阻抗矩阵推导出了矩阵黎卡提方程。使用后者得到了一个简单形式的频散方程。频散曲线的数值计算可能会遇到困难,这是由于阻抗矩阵的潜在奇点和分离频散方程的根的必要性。通过使用 Cayley 变换和参数连续方法克服了这些困难。作者提出的方法通过计算几个实际感兴趣的模型的螺旋波的频散图得到了验证。对于非均匀层及其使用传递矩阵和黎卡提方程方法的均匀层集的近似,这种计算显示出后者具有更高的计算精度。对于具有不同类型非均匀性的层计算的频散曲线在低频下显示出显著的差异。

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