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MICRO-HYDROKINETIC TURBINE OPERATING IN THE VICINITY OF A FREE SURFACE: MULTIPHASE LARGE EDDY SIMULATIONS

机译:在自由表面附近运行的微水力涡轮机:多相大涡模拟

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Large Eddy Simulation (LES) turbulence and multiphase Volume of Fluid (VOF) model are employed to predict the spatial and temporal characteristics of the turbulent flow structures near micro-hydrokinetic turbine operating in the proximity of a free surface. The turbine power performance and the free surface dynamics, and its interaction with the turbine are characterized by examining the results of both single-phase and multiphase flow simulations. Simulations are conducted at the turbine's best efficiency point at a tip speed ratio of 1.86 with the rotation rate of 150 rpm and the free stream water velocity of 2.25 m/s. The multiphase flow simulation is carried out at Froude number of 1.06. The results indicate slight interaction between the deformed free surface and the turbine wake structures. Acceleration in the flow velocity is observed near the free surface due to the physical confinement. The results indicate that turbine power generation is reduced by about 2.0%, and the thrust coefficient is reduced by 1.60%. It is demonstrated that the turbine performance at this Froude number is hardly influenced by the presence of the free surface.
机译:大涡模拟(LES)湍流和多相流体体积(VOF)模型用于预测在自由表面附近运行的微流体动力涡轮机附近的湍流结构的时空特征。通过检查单相和多相流模拟的结果来表征涡轮机的功率性能和自由表面动力学,以及其与涡轮机的相互作用。在涡轮机的最佳效率点,叶尖速度比为1.86,转速为150 rpm和自由流水速度为2.25 m / s的情况下进行模拟。多相流动模拟是在Froude数为1.06的情况下进行的。结果表明,变形后的自由表面与涡轮机尾流结构之间存在轻微的相互作用。由于物理限制,在自由表面附近观察到流速加快。结果表明,涡轮机发电量降低了约2.0%,推力系数降低了1.60%。证明了在该弗洛德数下的涡轮机性能几乎不受自由表面的影响。

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