[1]吴昱甫,吴攀,陆彦,等.新孟河运南支河闸控方案下河湖水动力影响探讨[J].江苏水利,2024,(02):27-32.
 WU Yufu,WU Pan,LU Yan,et al.Discussion on the hydrodynamic responses of rivers and lakes under the gate-controlled schemes of the southern branch of the Xinmeng River[J].JIANGSU WATER RESOURCES,2024,(02):27-32.
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新孟河运南支河闸控方案下河湖水动力影响探讨()
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《江苏水利》[ISSN:1006-6977/CN:61-1281/TN]

卷:
期数:
2024年02期
页码:
27-32
栏目:
水利规划与设计
出版日期:
2024-02-15

文章信息/Info

Title:
Discussion on the hydrodynamic responses of rivers and lakes under the gate-controlled schemes of the southern branch of the Xinmeng River
文章编号:
1007-7839(2024)02-0027-0006
作者:
吴昱甫吴攀陆彦王志力
(南京水利科学研究院,江苏 南京 210029)
Author(s):
WU Yufu WU Pan LU Yan WANG Zhili
(Nanjing Hydraulic Research Institute, Nanjing 210029, China)
关键词:
新孟河引水运南支河闸控方案滆湖水量分配
Keywords:
water diversion through Xinmeng River the southern branch of the Xinmeng River gate-controlled scheme Gehu Lake water allocation
分类号:
TV212
文献标志码:
A
摘要:
通过构建太湖流域北部一维、二维耦合的河湖水动力数学模型,模拟并分析了新孟河延伸拓浚工程运南段主要无闸控支河设控前后对引水沿线河道和滆湖水动力的影响。结果表明,新孟河运南段支河口门设控下,引水后运南段河道水位、流速将明显上升,经北干河东侧入滆湖流量有所增加,但支河闸控有利于北干河西侧分流比升高,支河口门东侧闸控将导致滆湖北部水体交换能力降低、水动力有所减弱,滆湖东侧出湖河道流量受新孟河运南段支河闸控的影响较小。为提高新孟河工程引水效益,探讨提出了支河闸控方案在引水期、非引水期和应急排水期等时期的实施建议,为新孟河工程运行及优化调度提供一定的参考。
Abstract:
By constructing a one-dimensional and two-dimensional coupled river lake hydrodynamic mathematical model in the north of the Taihu Lake basin, this paper simulates and analyzes the influence of the main non gate-controlled tributaries in the southern section of the Xinmeng River extension and dredging project on the hydrodynamic forces of the rivers and Gehu Lake along the water diversion line before and after the gate control is set. The results show that under the control of the estuary gate of the southern branch of the Xinmeng River, the water level and flow velocity of the southern section of the river will significantly increase after water diversion, and the flow into Gehu Lake will increase on the east side of the northern main river. However, the gate control of the branch river is conducive to the increase of the diversion ratio on the west side of the northern main river. The gate control on the east side of the estuary gate of the branch river will lead to a decrease in the water exchange capacity and a weakening of hydrodynamic forces in the northern part of Gehu Lake. The flow of the river on the east side of Gehu Lake is less affected by the gate control of the southern branch river of the Xinmeng River. In order to improve the water diversion efficiency of the Xinmeng River project, implementation suggestions for the gate-controlled scheme of branch river during the water diversion period, non water diversion period, and emergency drainage period were discussed and proposed, providing a certain reference for the operation and optimization scheduling of the Xinmeng River project.

参考文献/References:

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备注/Memo

备注/Memo:
收稿日期:2023-11-22
基金项目:江苏省水利科技项目(2022041,2023018);长江水科学联合基金项目(U2240208)
作者简介:吴昱甫(1995—),男,博士研究生,研究方向为水力学及河流动力学。E-mail:wuyufunky@163.com
通信作者:吴攀(1988—),男,高级工程师,博士,主要从事河湖水环境研究工作。E-mail:pwu@nhri.cn
更新日期/Last Update: 2024-02-15