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Numerical simulation of mono-disperse gravity-driven granular flow around a wedge using two-fluid model

机译:双流体模型楔形单分散重力驱动粒度的数值模拟

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The numerical simulation of glass beads granular flow around a wedge located in a rectangular channel is performed by the Two-Fluid Model (i.e. the Euler-Euler approach) aiming to make a comparison between the numerical and the available experimental data. The channel is tilted against the horizon making the glass beads fall under the action of the gravity force. The numerical simulation shows the glass beads structure that resembles a bow shock wave around the wedge. The computed bow shock stand-off distance is compared to the data extracted from the experimental results. The details of the comparison between the numerical and the experimental data are discussed.
机译:玻璃珠的数值模拟位于矩形通道中的楔形围绕矩形的颗粒流动由两个流体模型(即欧拉 - 欧拉方法)进行,其旨在在数值和可用的实验数据之间进行比较。 通道倾斜,使得使玻璃珠在重力力的作用下落下。 数值模拟显示了玻璃珠结构,其在楔形周围类似于弓形冲击波。 将计算的弓形冲击脱扣距离与从实验结果中提取的数据进行比较。 讨论了数值和实验数据之间比较的细节。

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