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首页> 外文期刊>Applied Mathematical Modelling >Application of Smoothed Particle Hydrodynamics for modelling gated spillway flows
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Application of Smoothed Particle Hydrodynamics for modelling gated spillway flows

机译:平滑粒子流体动力学在闸门溢洪道建模中的应用

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Computational models of spillways are important for evaluating and improving dam safety, optimising spillway design and updating operating conditions. Traditionally, scaled down physical models have been used for validation and to collect hydraulic data. Computational fluid dynamics (CFD) models however provide advantages in time, cost and resource reduction. CFD models also provide greater efficiency when evaluating a range of spillway designs or operating conditions. Within the present literature, most studies of computational spillway models utilise a mesh-based method. In this work we use the particle based method of Smoothed Particle Hydrodynamics (SPH) to model weir flow through a four bay, gated, spillway system. Advantages of SPH for such modelling include automatic representation of the free surface flow behaviour due to the Lagrangian nature of the method, and the ability to incorporate complex and dynamic boundary objects such as gate structures or debris. To validate the SPH model, the reservoir water depth simulated is compared with a related physical study. The effect of SPH resolution on the predicted water depth is evaluated. The change in reservoir water level with discharge rates for weir flow conditions is also investigated, with the difference in simulated and experimental water depths found to range from 0.16% to 11.48%. These results are the first quantitative validation of the SPH method to capture spillway flow in three dimensions. The agreement achieved demonstrates the capability of the SPH method for modelling spillway flows.
机译:溢洪道的计算模型对于评估和改善大坝安全性,优化溢洪道设计和更新运行状况非常重要。传统上,按比例缩小的物理模型已用于验证和收集水力数据。但是,计算流体动力学(CFD)模型在时间,成本和资源减少方面具有优势。在评估一系列溢洪道设计或运行条件时,CFD模型还可以提供更高的效率。在当前文献中,大多数计算溢洪道模型的研究都采用基于网格的方法。在这项工作中,我们使用基于粒子的平滑粒子流体动力学(SPH)方法来模拟通过四舱门,闸门,溢洪道系统的堰流。 SPH用于此类建模的优点包括:由于方法的拉格朗日性质,可以自动表示自由表面流动行为,并且可以合并复杂的动态边界对象(例如门结构或碎屑)。为了验证SPH模型,将模拟的储层水深与相关的物理研究进行了比较。评估了SPH分辨率对预测水深的影响。还研究了堰流条件下水库水位随排放率的变化,模拟和实验水深的差异范围为0.16%至11.48%。这些结果是SPH方法在三个维度上捕获溢洪道流量的首次定量验证。达成的协议证明了SPH方法能够建模溢洪道流量。

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