分侧式闸站枢纽下游底坎整流特性
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TV135

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国家自然科学基金(51779082,51009051);中央高校基本科研业务费专项(2019B18414)


Sill rectification characteristics downstream a unilaterally arranged pump-gateway
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    摘要:

    采用Flow-3D数值模拟结合物理模型试验的方法,探索底坎对分侧式闸站枢纽下游回流和偏流问题的改善效果,建立了漩长、漩宽、流速不均匀系数等水力特性与底坎尺寸、位置的相关关系,为底坎的优化设计提供依据。结果表明,底坎能有效改善回流和偏流问题,使单侧水流能够更快扩散到整个河宽断面;随着坎高和坎墩间距增大,漩长、漩宽和流速不均匀系数均明显降低,整流效果提高;随着坎宽增大,上述水力特性参数均先降低后升高,整流效果先提高而后出现减弱现象;流速不均匀系数沿水流方向变化趋势相同,均是先增大后减小。

    Abstract:

    The improvement of the sill on the recirculation flow and the deflected flow downstream a unilaterally arranged pump-gateway was investigated based on a method combined numerical simulation of Flow-3D with physical model experiments. The effects of the size and location of the sill on the length and width of the recirculation flow and the velocity non-uniformity coefficient were studied, which can provide references for optimal design of the sill. The results show that the sill can suppress the recirculation flow and the deflected flow effectively, resulting in quick diffusion of the unilateral flow into the whole river width. The length and the width of the recirculation zone and the non-uniformity coefficient all decrease with the increase of both the height and adjacent distance of the piers, indicating a good rectification effect. With the increase of the sill width, the above parameters decrease at first and then increase, corresponding to better and non-significant rectification effect respectively. The variation trend of the velocity non-uniformity coefficients for all cases is similar in the flow direction, which increases at first and then decreases.

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冯建刚,孟湘云,钱尚拓.分侧式闸站枢纽下游底坎整流特性[J].水利水电科技进展,2019,39(6):62-67.(FENG Jiangang, MENG Xiangyun, QIAN Shangtuo. Sill rectification characteristics downstream a unilaterally arranged pump-gateway[J]. Advances in Science and Technology of Water Resources,2019,39(6):62-67.(in Chinese))

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  • 在线发布日期: 2019-12-24
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