曹娥江清风船闸引航道通航水流条件*
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浙江省自然科学基金资助项目(LGF20E090003)


Navigable flow conditions of the approach channel of Qingfeng ship lock on the Cao’e River
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    摘要:

    清风枢纽位于曹娥江干流中游段,为满足上游水运需求,需改建现状枢纽,并新建船闸一座。枢纽泄洪闸泄水方向斜交新建船闸下游引航道,使船闸下游水流条件较复杂,通航条件相对较差。为保证船闸下游引航道正常通航,建立曹娥江中游段平面二维数学模型并开展计算,通过布设不同导流墙研究其对通航水流条件的改善效果。结果表明:1)平行于引航道的导流墙可以更好地改善航道内水流条件,改善效果70%~90%。2)延长导流墙长度可进一步改善引航道通航水流条件,改善效果可达100%。3)导流墩对纵向流速的改善效果优于横向流速,纵向流速的改善效果为100%,而横向流速的改善效果小于2%。

    Abstract:

    Qingfeng hub is located in the middle reaches of the Cao’e River. In order to meet the needs of upstream water transportation,it is necessary to rebuild the existing Qingfeng hub and build a new ship lock. The discharge direction of the sluice gate of the hub is oblique to the downstream approach channel of the new ship lock,which makes the downstream flow conditions of the ship lock more complex and the navigation conditions relatively poor. In order to ensure the normal navigation of the downstream approach channel of the ship lock,a plane two-dimensional mathematical model of the middle reaches of the Cao’e River is established and calculated,and its improvement effect on the navigation flow conditions is studied by arranging different diversion walls. The results show:1)The training wall parallel to downstream approach channel can better improve the flow conditions in the channel,and the improvement effect is 70%~90%. 2)Extending the length of the training wall can further improve the navigable flow conditions of the approach channel,and the improvement effect can reach 100%. 3)By diversion pier,the improvement of longitudinal velocity is more effective than that of transverse velocity,and the improvement effect of longitudinal velocity is 100%,while the improvement effect of transverse velocity is less than 2%.

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吴惠国,孙逸豪,史英标,等.曹娥江清风船闸引航道通航水流条件*[J].水运工程,2022(4):138-145.

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  • 在线发布日期: 2022-04-07
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