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A Numerical Study of Fluid Flow in a Vertical Slot Fishway with the Smoothed Particle Hydrodynamics Method

机译:平滑粒子流体动力学法的垂直槽鱼类流体流动的数值研究

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Fishways have a great ecological importance as they help mitigate the interruptions of fish migration routes. In the present work, the novel DualSPHysics v4.4 solver, based on the smoothed particle hydrodynamics method (SPH), has been applied to perform three-dimensional (3-D) simulations of water flow in a vertical slot fishway (VSF). The model has been successfully calibrated against published field data of flow velocities that were measured with acoustic Doppler velocity probes. A state-of-the-art algorithm for the treatment of open boundary conditions using buffer layers has been applied to accurately reproduce discharges, water elevations, and average velocity profiles (longitudinal and transverse velocities) within the observed pool of the VSF. Results herein indicate that DualSPHysics can be an accurate tool for modeling turbulent subcritical free surface flows similar to those that occur in VSF. A novel relation between the number of fluid particles and the artificial viscosity coefficient has been formulated with a simple logarithmic fit.
机译:鱼道具有巨大的生态重要性,因为它们有助于减轻鱼类迁徙路线的中断。在本作工作中,基于平滑粒子流体动力学方法(SPH)的新型双散型V4.4求解器已经应用于在垂直槽(VSF)中执行三维(3-D)模拟水流。该模型已成功校准,以针对用声学多普勒速度探针测量的流速的公布现场数据。用于处理使用缓冲层的开放边界条件的最先进的算法,以精确地再现了VSF的观察到的池内的放电,水升高和平均速度剖视图(纵向和横向速度)。这里的结果表明,双散肌可以是用于建模类似于VSF中发生的湍流的亚临界自由表面流量的准确工具。用简单的对数拟合配制了流体颗粒数与人工粘度系数之间的新关系。

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