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Influence of turbulence on the wake of a marine current turbine simulator

机译:湍流对船用水轮机模拟器尾流的影响

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摘要

Marine current turbine commercial prototypes have now been deployed and arrays of multiple turbines under design. The tidal flows in which they operate are highly turbulent, but the characteristics of the inflow turbulence have not being considered in present design methods. This work considers the effects of inflow turbulence on the wake behind an actuator disc representation of a marine current turbine. Different turbulence intensities and integral length scales were generated in a large eddy simulation using a gridInlet, which produces turbulence from a grid pattern on the inlet boundary. The results highlight the significance of turbulence on the wake profile, with a different flow regime occurring for the zero turbulence case. Increasing the turbulence intensity reduced the velocity deficit and shifted the maximum deficit closer to the turbine. Increasing the integral length scale increased the velocity deficit close to the turbine due to an increased production of turbulent energy. However, the wake recovery was increased due to the higher rate of turbulent mixing causing the wake to expand. The implication of this work is that marine current turbine arrays could be further optimized, increasing the energy yield of the array when the site-specific turbulence characteristics are considered.
机译:现在已经部署了船用涡轮机商业原型,并且正在设计多个涡轮机的阵列。它们在其中运行的潮汐流是高度湍流的,但是在当前的设计方法中并未考虑流入湍流的特性。这项工作考虑了流入湍流对船用水轮机致动器盘代表后面的尾流的影响。在较大的涡流模拟中,使用gridInlet产生了不同的湍流强度和积分长度尺度,该网格由入口边界上的网格图案产生湍流。结果强调了湍流在尾流剖面上的重要性,对于零湍流情况,发生了不同的流动状态。湍流强度的增加减小了速度不足,并使最大不足移近了涡轮机。由于增加了湍流能量的产生,积分长度比例的增加增加了靠近涡轮机的速度赤字。但是,由于较高的湍流混合速率导致尾流膨胀,从而使尾流恢复提高。这项工作的意义在于,当考虑特定地点的湍流特性时,可以进一步优化船用水轮机阵列,从而增加阵列的能量产量。

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