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圆管结构中周向导波非线性效应的模式展开分析
引用本文:高广健,邓明晰,李明亮.圆管结构中周向导波非线性效应的模式展开分析[J].物理学报,2015,64(18):184303-184303.
作者姓名:高广健  邓明晰  李明亮
作者单位:后勤工程学院, 重庆 401331
基金项目:国家自然科学基金(批准号: 11474361, 11274388)资助的课题.
摘    要:在二阶微扰近似条件下, 采用导波模式展开分析方法研究了圆管结构中周向导波的非线性效应. 伴随基频周向导波传播所发生的二次谐波, 可视为由一系列二倍频周向导波模式叠加而成. 从动量定理出发, 结合柱坐标系下非线性应力张量及其散度的数学表达式, 针对圆管中某一基频周向导波模式, 推导出相应的二倍频应力张量及二倍频彻体驱动力的数学表达式, 建立了确定二倍频周向导波模式展开系数的控制方程, 得到了伴随基频周向导波传播所发生的二次谐波声场的形式解. 理论分析和数值计算表明, 当构成二次谐波声场的某一二倍频周向导波模式与基频周向导波的相速度匹配时, 该二倍频周向导波模式的位移振幅表现出随传播周向角积累增长的性质; 当两者的相速度失配时, 二倍频周向导波的振幅随传播周向角表现出“拍”效应.

关 键 词:周向导波  非线性效应  二次谐波发生  模式展开分析
收稿时间:2015-05-18

Modal expansion analysis of nonlinear circumferential guided wave propagation in a circular tube
Gao Guang-Jian,Deng Ming-Xi,Li Ming-Liang.Modal expansion analysis of nonlinear circumferential guided wave propagation in a circular tube[J].Acta Physica Sinica,2015,64(18):184303-184303.
Authors:Gao Guang-Jian  Deng Ming-Xi  Li Ming-Liang
Institution:Logistics Engineering University, Chongqing 401331, China
Abstract:Within the second-order perturbation approximation, the nonlinear effect of primary circumferential guided wave propagation in a circular tube is investigated using modal expansion analysis for waveguide excitation. The nonlinearity of the wave equation governing the wave propagation ensures the second-harmonic generation accompanying primary circumferential guided wave propagation. This nonlinearity may be treated as a second-order perturbation of the linear elastic response. The fields of the second harmonics of primary circumferential guided wave propagation are considered as superpositions of the fields of a series of double frequency circumferential guided wave (DFCGW) modes. Based on the momentum theorem and mathematical formulae of nonlinear stress tensor and its divergence under the cylindrical coordinate system, the mathematical expressions of the corresponding double frequency traction stress tensors and bulk driving forces are deduced for a certain primary circumferential guided wave mode. Subsequently, the equation governing the DFCGW mode expansion coefficient is established. Finally, the mathematical expression of second-harmonic field of the primary circumferential guided wave mode in a tube is derived. The results of the theoretical analyses and numerical calculations indicate that the degree of cumulative growth of the DFCGW mode with circumferential angle is obviously influenced by that of phase velocity matching between the primary and double frequency wave modes. It is found that the amplitude of the DFCGW mode can grow with circumferential angle when its phase velocity matches with that of the primary circumferential guided wave, and that the amplitude of the DFCGW mode will show a beat effect with circumferential angle when its phase velocity is not equal to that of the primary wave mode. The DFCGW mode, whose phase velocity matches with that of the primary wave mode, plays a dominant role in the field of second harmonic generated by the primary wave mode propagation, and the contribution of the other DFCGW modes to the said second-harmonic field is negligible after the primary wave mode has propagated some circumferential angle.
Keywords:circumferential guided wave  nonlinear effect  second-harmonic generation  modal expansion analysis
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