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Nonlinear wave modulation in a fluid-filled linearly tapered elastic tube

机译:充液线性锥形弹性管中的非线性波调制

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In the present work, treating the arteries as a thin-walled, linearly tapered, prestressed elastic tube and using the reductive perturbation method, we have studied the amplitude modulation of nonlinear waves in such a fluid-filled elastic tube. By considering the blood as an incompressible viscous fluid, the evolution equation is obtained as the dissipative nonlinear Schroedinger equation with variable coefficient. It is shown that this type of evolution equations admit a solitary wave type of solution with variable wave speeds and amplitude. It is observed that, the speed of enveloping wave increases with the scaled time parameter τ for negative tapering angle while it decreases for positive tapering. On the other hand, the speed of harmonic wave increases for positive tapering whereas it decreases for negative tapering.
机译:在目前的工作中,将动脉视为薄壁,线性渐缩的预应力弹性管,并使用还原扰动法,我们研究了这种充满流体的弹性管中非线性波的振幅调制。通过将血液视为不可压缩的粘性流体,将演化方程作为具有可变系数的耗散非线性Schroedinger方程获得。结果表明,这种演化方程允许波速和振幅可变的孤立波解。可以看出,对于负锥形角,包络波的速度随时间参数τ的增加而增大,而对于正锥形角,包络波的速度减小。另一方面,对于正锥形,谐波的速度增加,而对于负锥形,谐波的速度降低。

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