Wave propagating on cord in static viscous fluid under non-gravitational field

Toru Shimizu, K. Nakayama
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引用次数: 2

Abstract

In this paper, a two-dimensional wave equation for a cord (thin rope) that describes waves propagating on a cord in static viscous fluid under the non-gravitational field is derived. There, the viscous drag force is assumed to be proportional to the reverse velocity of motion. To solve this equation for a particular solution, micro-amplitude approximation is also assumed. As a result, unimodal and kink solitary wave solutions with damped velocities for this equation are found. It is denoted that progressive waves in the present system stop in nearly finite time. In appendix, the reason why the phase shifts between incident and reflective waves on connected two cords are inverse to the case of light waves is explained.
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非重力场作用下静态粘性流体中波在弦上的传播
本文推导了非引力场作用下静态粘性流体中波在细绳上传播的二维波动方程。在这里,假定粘性阻力与反向运动速度成正比。为了求解该方程的特解,还假定了微振幅近似。得到了该方程具有阻尼速度的单峰解和扭结孤波解。结果表明,该系统中的进阶波在近有限时间内停止。在附录中,解释了在连接的两条线上入射波和反射波之间的相移与光波相反的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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