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首页> 外文期刊>Journal of hydraulic research >The need for high order numerical schemes to model dispersive high frequency acoustic waves in water-filled pipes
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The need for high order numerical schemes to model dispersive high frequency acoustic waves in water-filled pipes

机译:需要高阶数值方案来模拟水填充管中的分散高频声波

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Probing fluid pipelines with high frequency transient waves permits high resolution defect detection. For probing frequency above the first cut-off frequency, radial and/or azimuthal modes are excited and plane wave theory does not apply. A two dimensional explicit scheme based on the finite-volumes method uses an approximate Riemann solver to evaluate hyperbolic terms. To minimize numerical dissipation and reduce computations, higher order schemes using weighted essential non-oscillatory cell-reconstruction and the Runge-Kutta method for time evolution are developed and tested. The parabolic (viscous) part is spatially discretized by second-order finite differences and operator splitting (fourth-order Runge-Kutta) for simultaneous evaluation of inviscid and viscous parts. The characteristic boundary condition for dispersive high frequency waves is also studied. Radial wave propagation from rapid valve closure is discussed and results show the propagation of radial waves if closure time induced frequency is higher than cut-off frequencies.
机译:具有高频瞬态波的探测流体管道允许高分辨率缺陷检测。对于高于第一截止频率的探测频率,激励径向和/或方位角模式,并且平面波理论不适用。一种基于有限卷方法的二维显式方案使用近似的Riemann求解器来评估双曲术语。为了最大限度地减少数值耗散和减少计算,开发和测试了使用加权基本非振荡电池重建的高阶方案和用于时间进化的跳动库方法。抛物线(粘性)部分通过二阶有限差和操作员分离(四阶runge-kutta)来分离地离散化,用于同时评估Inciscid和粘性部分。还研究了分散高频波的特征边界条件。讨论了从快速阀闭件的径向波传播,并且如果闭合时间感应频率高于截止频率,则结果示出了径向波的传播。

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