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Experimental and Numerical Investigation of Shock Wave Propagation Due to Dam-Break Over a Wet Channel

机译:潮湿通道坝断裂引起的冲击波传播的实验性和数值研究

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We investigated the propagation of shock waves in a prismatic rectangular channel with a horizontal wet bed. Saltwater was used as a Newtonian fluid within the entire channel instead of normal water for representing the different density fluids. It aims to point out seawater where tsunamis occur as an extreme example of shock waves. The shock waves were generated by sudden lifting of a vertical gate that separated a reservoir and a downstream channel with three different tailwater depths. The experimental data were digitized using image processing techniques. Furthermore, the flow was numerically solved by using Reynolds Averaged Navier-Stokes (RANS) equations and a DualSPHysics program (a code version of smoothed particle hydrodynamics (SPH)). After sudden removal of the vertical gate the propagations of shock waves were experimentally examined via image processing, which can yield both free surface profiles at several times and variations of flow depth with time at four specified locations. Solution successes of two different numerical methods for this rapidly varied unsteady flow are tested by comparing the laboratory data. The results indicate that the disagreements on graphs of time evolutions of water levels obtained from two numerical simulations decrease when the initial tailwater levels increase.
机译:我们调查了冲击波在具有水平湿床的棱柱形矩形通道中的传播。盐水用作整个通道内的牛顿液而不是正常水,用于表示不同的密度流体。它旨在指出海水,海啸发生作为冲击波的极端例子。通过突然抬起垂直栅极来产生冲击波,该垂直栅极分离具有三个不同的尾水深度的储存器和下游通道。使用图像处理技术数字化实验数据。此外,通过使用Reynolds平均Navier-Stokes(RANS)和Dualsphysphys程序(平滑粒子流体动力学(SPH)的代码版本)来数量地解决了该流程。在突然移除垂直栅极之后,通过图像处理实验检查冲击波的传播,其可以在几次下产生自由表面轮廓,并在四个指定位置处随时间的流动深度的变化。通过比较实验室数据,测试了两种不同数值方法的两种不同数值方法的成功。结果表明,当初始尾水水平增加时,从两个数值模拟中获得的水位的时间演变的分歧减少。

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