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Numerical analysis of a Pelton bucket free surface sheet flow and dynamic performance affected by operating head

机译:受操作头影响的佩尔顿铲斗自由表面流动和动力性能的数值分析

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The present paper aims to find out the influence of operating head on the rotating bucket free surface sheet flow and hydrodynamics performance for a Pelton turbine. Three-dimensional unsteady air-water two-phase flow simulations in the rotating buckets were performed by adopting the shear stress transport curvature correction turbulence model and homogenous model. The sensitivities of the unsteady simulation results to moving mesh resolution and computational fluid dynamics solver time-step have been evaluated to discuss the effect of Courant-Friedrichs-Lewy conditions on the two-phase flow simulation. The accuracy of the numerical predicted flow pattern and the hydrodynamic performance results are reasonable when compared with the experimental data. The simulation results indicate that the remaining kinetic energy carried by the outflow under the nondesigned water head is the main reason for the efficiency loss in the Pelton turbine. Under low water head conditions, jet distortion caused by the Coanda effect and flow interference will lead to more severe efficiency deterioration.
机译:本文旨在找出操作头对Pelton涡轮机的旋转叶片自由表面流动和流体力学性能的影响。采用剪切应力传递曲率校正湍流模型和均质模型对旋转桶中的三维非定常气水两相流进行了模拟。评估了非稳态模拟结果对移动网格分辨率和计算流体动力学求解器时间步长的敏感性,以讨论Courant-Friedrichs-Lewy条件对两相流模拟的影响。与实验数据相比,数值预测流型和水动力性能结果的准确性是合理的。仿真结果表明,非设计水头下流出物携带的剩余动能是造成佩尔顿水轮机效率下降的主要原因。在低水头条件下,由柯恩达效应引起的射流变形和流动干扰将导致效率严重降低。

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