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Influence of Plunge Pool Geometry on High-Velocity Jet Impact Pressures and Pressure Propagation inside Fissured Rock Media

机译:切入池几何形状对裂隙岩石介质内部高速射流冲击压力和压力传播的影响

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摘要

The geometrical development of unlined plunge pools downstream large dams depends on both local geology and type of plunging jet and its diffusion pattern. Experimental investigations in plunge pools with different lateral confinements are presented. They show that the pool geometry influences plunging jet diffusion, air entrainment in the pool, and, as a consequence, impact pressures at the water-rock interface and inside the fissured rock mass. Results include impact pressures definition for variable pool depths, jet velocities, and pool geometries, depending explicitly on the lateral confinement of the jet. The main pool flow features are described focusing on their contribution to energy dissipation. Should the lateral confinement limit the development of macroturbulent rollers around the plunging jet (instead of the pool depth), the mean pressures at impact are considerably reduced, as well as RMS pressures in transitional and deep pools. For shallow pools, RMS pressures increase as a result of enhanced jet development.
机译:大型水坝下游无衬砌跳水池的几何发育既取决于局部地质和切入射流的类型,也取决于其扩散方式。提出了在不同侧向约束下的跳水池的实验研究。他们表明,水池的几何形状会影响射流的急速扩散,水池中夹带的空气,结果会影响水-岩石界面和裂隙岩体内部的压力。结果包括明确地取决于射流的侧向约束的,可变池深度,射流速度和池几何形状的冲击压力定义。主要池流量特征的描述着重于它们对能量耗散的贡献。如果侧向限制限制了急流围绕着急流的发展(而不是池深度),则冲击时的平均压力以及过渡池和深池中的RMS压力都将大大降低。对于浅水池,由于射流发育增强,RMS压力增加。

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