Non-collinear interaction of Rayleigh–Lamb and shear horizontal waves in a finite region in a plate

IF 2.1 3区 物理与天体物理 Q2 ACOUSTICS
Yosuke Ishii, Tomoya Enoki , Shiro Biwa
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引用次数: 0

Abstract

Non-collinear interaction of guided elastic waves in a homogeneous and isotropic plate with quadratic material nonlinearity is analyzed theoretically to investigate the sum and difference frequency generation from a finite interaction region of primary waves. Using a perturbation approach and the time-harmonic Green function for isotropic plates, an explicit expression is derived for the displacement field of nonlinearly generated secondary waves when two primary monochromatic straight-crested Rayleigh–Lamb/shear horizontal waves intersect at an arbitrary angle in a right cylindrical region of arbitrary cross-section and height equal to the plate thickness. The resulting displacement observed far away from the interaction region in the direction of the wavevector of driving forces (i.e., the sum or difference of wavevectors of primary modes) is shown to grow in proportion to the interaction volume when the wavenumber of secondary mode coincides with that of driving forces with nonzero energy transfer from the primary to the secondary modes. The influence of the interaction volume and the intersection angle on the secondary wave field is investigated for a special case where the interaction region is a right circular cylinder. Furthermore, the non-collinear interaction generating the secondary mode with negative group velocity is also examined.
板内有限区域内瑞利-兰姆波与剪切水平波的非共线相互作用
从理论上分析了导弹性波在具有二次材料非线性的均匀各向同性板中的非共线相互作用,研究了有限相互作用区域内导弹性波的和频和差频产生。利用微扰方法和各向同性板的时调和格林函数,导出了当两个单色直顶瑞利-兰姆/剪切水平波在任意截面和高度等于板厚的右圆柱形区域内以任意角度相交时非线性产生的二次波位移场的显式表达式。当二次模的波数与从一次模到二次模的能量传递不为零的驱动力波数一致时,在远离相互作用区域的驱动力波向量方向上观测到的位移(即一次模的波向量的和或差)与相互作用体积成正比增长。研究了相互作用区域为右圆柱的特殊情况下,相互作用体积和相互作用角对二次波场的影响。此外,还研究了产生负群速度的二次模的非共线相互作用。
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来源期刊
Wave Motion
Wave Motion 物理-力学
CiteScore
4.10
自引率
8.30%
发文量
118
审稿时长
3 months
期刊介绍: Wave Motion is devoted to the cross fertilization of ideas, and to stimulating interaction between workers in various research areas in which wave propagation phenomena play a dominant role. The description and analysis of wave propagation phenomena provides a unifying thread connecting diverse areas of engineering and the physical sciences such as acoustics, optics, geophysics, seismology, electromagnetic theory, solid and fluid mechanics. The journal publishes papers on analytical, numerical and experimental methods. Papers that address fundamentally new topics in wave phenomena or develop wave propagation methods for solving direct and inverse problems are of interest to the journal.
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