c958 兴隆枢纽二线船闸输水系统设计
兴隆枢纽二线船闸输水系统设计
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Design of filling and emptying system for Xinglong Hub Second-line Ship Lock
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    摘要:

    兴隆枢纽二线船闸建设等级为Ⅱ级,船闸有效尺度300 m×34 m×5.6 m,最大设计水头13.73 m,属中水头大型船闸,一次最大输水体量达15.5万m3,采用闸墙长廊道侧支孔分散输水系统,对于如此输水规模采用闸墙长廊道侧支孔输水系统目前工程实例较少,需认真研究该输水系统能否确保此输水规模下船舶安全过闸以及过闸效率的问题。借助该工程实例,采用三维水动力数学模型对闸墙长廊道侧支孔输水系统水力特性、廊道压力、闸室停泊条件进行研究,结果表明:兴隆二线船闸采用闸墙长廊道侧支孔输水系统切实可行,各项输水水力特征指标均满足设计和规范要求,闸室输水时水流条件满足船舶安全通行需要,输水时间可以控制在设计所要求的12 min范围内。

    Abstract:

    The construction level of the Xinglong Hub Second Line Ship Lock is Grade II,with the effective scale of 300 m×34 m×5.6 m and maximum design water head of 13.73 m.It belongs to the medium head large ship lock,with the maximum water transport volume of 155,000 m3?at a time.This article adopts a decentralized water supply system with gate walls,long corridors,and side support holes.There are currently few engineering examples of using a gate wall long corridor side branch hole filling and emptying system for such a water transmission scale.It is necessary to carefully study whether this filling and emptying system can ensure the safe and efficient passage of ships under such a water transmission scale.With the help of engineering examples,a three-dimensional hydrodynamic mathematical model is used to study the hydraulic characteristics,gallery pressure,and gate chamber parking conditions of the side branch hole water delivery system of the gate wall corridor.The results indicate that the Xinglong Second Line Ship Lock is feasible to use the filling and emptying system with gate walls long corridors and side support holes.All hydraulic characteristic indicators of water transmission meet the design and specification requirements.The water flow conditions during the transfer of water in the lock chamber meet the requirements for safe passage of ships,and the water delivery time can be controlled within the 12 minute range required by the design.

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卜美飞,杨洪祥,孙保虎,等.兴隆枢纽二线船闸输水系统设计[J].水运工程,2025(11):158-165.

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  • 在线发布日期: 2025-11-13
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