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Experimental and theoretical investigations of scour at bridge abutment

机译:桥基冲刷的实验和理论研究

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Numerical and experimental studies were carried out to investigate the effect of different contraction ratios and entrance angles of bridge abutment on local scour depth. A 3-D numerical model is developed to simulate the scour at bridge abutment. This model solves 3-D Navier–Stokes equations and a bed load conservation equation. The k ? ε turbulence model is used to solve the Reynolds-stress term. In addition, the model verification is made by comparing the computed results with existing experimental data. The results show the ability of the numerical model to simulate local scouring at bridge abutments for different contraction ratios and entrance angles of abutment with high accuracy. The determination coefficient and mean relative absolute error, in average, are 0.95 and, 0.12, respectively.
机译:进行了数值和实验研究,以研究不同的收缩率和桥基的入射角对局部冲刷深度的影响。开发了3-D数值模型来模拟桥基处的冲刷。该模型解决了3-D Navier-Stokes方程和床载守恒方程。 k? ε湍流模型用于求解雷诺应力项。另外,通过将计算结果与现有实验数据进行比较来进行模型验证。结果表明,该数值模型能够以较高的精度模拟桥基在不同收缩率和基台入射角下的局部冲刷。测定系数和平均相对绝对误差平均分别为0.95和0.12。

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