受限空间下龙头山二线船闸建设方案与运行方式研究
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Building scheme and operation mode of second-line ship lock in Longtoushan Junction under confined space
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    摘要:

    已建赣江龙头山枢纽位于弯道段,右岸一线船闸上下游引航道位于主流区,受枢纽运行和施工不完善影响,通航水流条件较为恶劣。拟在一线船闸右侧新建二线船闸,综合考虑对一线船闸的完善,提出降低现有隔流墙透空率并延长、增建一线船闸导航墙与靠船墩、新建下游护岸和辅以疏浚等措施,统筹优化二线船闸布置方案。采用整体物理模型试验的技术手段,在厂坝联合调度典型工况下验证两座船闸通航水流条件。结果表明,采用新型结构将隔流墙透空率降低至20%以内,同时泄水闸尽可能采用均匀开启方式,尤其是2 a一遇流量泄洪时,靠近船闸的20#~24#闸孔只能局开,可将一线船闸最大通航流量自5 000 m3/s提高至5 a一遇的15 100 m3/s,同时二线船闸最大通航流量也可达到5 a一遇。

    Abstract:

    The built Longtoushan Junction on the Ganjiang River is situated on a bend,where the upstream and downstream approach channels of the first-line ship lock on the right bank are located in the main flow area.Affected by hydro-junction operation and incomplete construction,the navigation flow conditions remain poor.The second-line ship lock is planned to be constructed on the right side of the existing first-line ship lock.Comprehensive improvements are proposed to improve the flow condition,such as reducing the porosity rate of existing partition walls and extending the length,constructing additional guide walls and berthing piers for the first-line ship lock and building new downstream revetments with complementary dredging measures.The layout scheme of the second-line ship lock is optimized comprehensively.Navigable water flow conditions for the two ship locks are validated by physical model tests under typical operating conditions involving joint operation of the power plant and dam.The results demonstrate that implementing the new wall structure can decrease the partition wall permeability low than 20%.Uniform opening patterns for sluice gates are adopted,and 20# to 24# holes adjacent to the ship locks maintain partial opening when flood discharges reach once in two years specifically.The maximum navigable discharge of the first-line ship lock can increase from 5,000 m3/s to once in five years (15,100 m3/s),while the second-line ship lock can also achieve navigation flow of once in five years.

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王志鹏,吴凌波,范红霞,等.受限空间下龙头山二线船闸建设方案与运行方式研究[J].水运工程,2025(7):143-149.

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  • 在线发布日期: 2025-07-15
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