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Supercritical flow in bend with variable curvature radius

机译:变曲率半径弯曲中的超临界流

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In this study, a new variable curvature bend called the maximum probability bend was applied to supercritical flows. Based on the maximum probability bend, the geometric and mechanical continuity of supercritical flow were studied, and the regulation of its superelevation, that is, the water surface elevation difference between both sides in every cross section, was analysed. The hydraulic characteristics of both the maximum probability bend and the traditional fixed curvature bend were experimentally investigated. It was found that the flow transitioned stably between straight and curve reaches in the maximum probability bend. Furthermore, the superelevation is reduced by a maximum of 65% compared with that in the traditional fixed curvature bend. Data comparison indicated that the proposed theory agreed well with the experimental results in terms of superelevation and the bend apex position. It was concluded that the maximum probability bend performed much better than the traditional fixed curve bend in supercritical flow control.
机译:在这项研究中,将一种称为最大概率弯曲的新的可变曲率弯曲应用于超临界流。基于最大概率弯曲,研究了超临界流体的几何和机械连续性,并分析了其超高的规律,即每个截面两侧的水面高程差。实验研究了最大概率弯曲和传统固定曲率弯曲的水力特性。发现在最大概率弯曲中,流量在直线和曲线之间稳定过渡。此外,与传统的固定曲率弯头相比,超高最多减少了65%。数据比较表明,所提出的理论在超高和弯曲顶点位置方面与实验结果吻合良好。结论是,在超临界流控制中,最大概率弯曲的性能比传统的固定曲线弯曲好得多。

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