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Effect of tether sag on vortex-induced vibration of tether in submerged floating tunnels

机译:绳索下垂对水下浮隧中的涡流引起的绳索振动的影响

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To study the effect of tether sag on vortex-induced vibration of tether in submerged floating tunnels, the nonlinear vortex-induced vibration equation of submerged floating tunnel tether is set up whether the sag effect is considered or not. Subsequently, an approximate numerical solution of planning submerged floating tunnel tether is obtained by applying Galerkin method and Runge-kutta method. Effect of tether sag on mid-span displacement and axial force of tether is analyzed when the vortex-induced resonance and parametric resonance takes place. The results show that, mid-span displacement and axial force of tether increases dramatically when the vortex-induced resonance and parametric resonance takes place; the tether sag results in the asymmetry of tether vibration amplitude; taking sag effect into account makes the mid-span displacement and axial force of tether larger; tether sag makes the parametric vibration of tether be induced in a shorter time.
机译:为了研究绳索下垂对淹没式浮水隧道系绳的涡激振动的影响,建立了考虑是否存在下沉效应的非线性浮置绳索的涡旋振动方程。随后,通过应用Galerkin方法和Runge-kutta方法,获得了对淹没式浮水隧道系绳进行规划的近似数值解。当发生涡激共振和参量共振时,分析了系链垂度对跨度位移和系链轴向力的影响。结果表明,当发生涡激共振和参量共振时,系绳的中跨位移和轴向力显着增加。系绳下垂导致系绳振动幅度不对称;考虑下垂效应会使系绳的中跨位移和轴向力变大;系绳下垂使系绳的参数振动在更短的时间内引起。

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