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Numerical simulation of hydraulic characteristics of hydro-automatic gate

机译:液压自动闸门水力特性的数值模拟

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Uydro-mtomatic gates are widely used in flood control, irrigation and landscape projects. Hydraulic characteristics of Begemann gate is simulated based on the flow field characteristics of hydro-automatic gate with the application of RNG k-ε; turbulence model and computational fluid dynamics(CFD), fluid-structure interaction(FSI) technology. Then opening angle, pressure distribution and variation of the Begemann gate in the work process and transition process are obtained. The results show that there is a linear relationship between the opening angle of Begemann gate and the flow, water pressure distribution of the upstream gate flat is parabolic, and that of Romijn weir downstream surface is two straight. At increasing flow conditions, Begemann gate can reach a new steady state by the end of the flow variation; however, at reducing flow conditions, the Begemann gate can not reach a new steady state by the end of the flow variation, and it will need some time to reach a new steady state.
机译:超音速闸门广泛用于防洪,灌溉和园林工程。利用RNGk-ε,基于水力自动闸门的流场特性,模拟了贝格曼闸门的水力特性。湍流模型和计算流体动力学(CFD),流固耦合技术(FSI)。然后获得了在工作过程和过渡过程中贝格曼闸门的打开角度,压力分布和变化。结果表明,贝格曼闸门的开度角与流量呈线性关系,上游闸门平面的水压分布呈抛物线形,而罗米恩堰下游面的水压分布呈两直线形。在不断增加的流量条件下,贝格曼闸门可以在流量变化结束时达到新的稳态;但是,在流量减少的情况下,贝格曼门无法在流量变化结束之前达到新的稳态,因此需要一段时间才能达到新的稳态。

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