抛填饱和粉质黏土夹淤泥质土围堰稳定性分析
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作者:
作者单位:

1.江西省港航建设投资集团 港航运输有限公司,南昌 330008;2.华东交通大学,土木建筑学院,南昌 330013;3.华东交通大学,江西省地下空间技术开发工程研究中心,南昌 330013;4.南昌龙行港口集团有限公司,南昌 330029;5.江西交远物流有限公司,南昌 330029;6.江西省路港工程有限公司,南昌 330029;7.江西省航道工程局,南昌 330000

作者简介:

江平(1979- ),男,高级工程师,主要从事公路与桥梁工程研究,E-mail:46559239@qq.com。
brief:JIANG Ping (1979- ), senior engineer, main research interests: highway and bridge engineering, E-mail: 46559239@qq.com.

通讯作者:

朱碧堂(通信作者),男,教授,博士生导师,E-mail:btangzh@hotmail.com。

中图分类号:

TV641.2

基金项目:

江西省交通运输厅重点工程科技项目(2019C0010、2019C0011);江西省岩土工程基础设施安全与控制重点实验室资助项目(20161BCD40010)


Stability analysis of cofferdam built with dredged saturated silty clay with soft clay dumped by boats
Author:
Affiliation:

1.Jiangxi Provincial Port & Waterway Construction Investment Group Co., Ltd, Nanchang 330008, P. R. China;2.a School of Civil Engineering and Architecture;3.b. Engineering Research & Development Centre for Underground Technology of Jiangxi Province, East China Jiaotong University, Nanchang 330013, P. R. China;4.Nanchang Longhang Port Group Co., Ltd, Nanchang 330029, P. R. China;5.Jiangxi Jiaoyuan Logistics Co., Ltd, Nanchang 330029, P .R. China;6.Road and Port Engineering Co., Ltd. of Jiangxi Province, Nanchang 330029, P. R. China;7.Jiangxi Waterway Engineering Bureau, Nanchang 330000, P. R. China

Fund Project:

Jiangxi Provincial Department of Transport Key Engineering Science and Technology Projects (No. 2019C0010, 2019C0011); Key Laboratory of Geotechnical Engineering Infrastructure Safety and Control in Jiangxi Province Funded Project (No. 20161BCD40010)

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    摘要:

    江西信江双港航运枢纽采用导流明渠开挖的饱和粉质黏土夹淤泥质土进行围堰填筑,施工过程中,水下围堰由明渠浚挖土直接采用挖泥船进行水上抛填,饱和粉质黏土受浚挖和抛填双重扰动,强度低且堰体内分布极不均匀,不仅围堰难于成型,且运行期内易发生堰坡失稳。为了评估这类围堰堰坡的稳定性、探究水位涨落条件下抛填饱和粉质黏土围堰边坡的变形破坏模式,采用有限元软件PLAXIS对信江双港航运枢纽上下游围堰开展不同水位及不同水位升降速率条件下的稳定性计算分析;针对抛填形成的围堰土体强度变化范围大、受环境影响明显的特性,开展堰坡稳定性的敏感性分析,同时,基于安全系数接近于1.0时的坡体最大侧向变形随时间的变化曲线,提出堰体稳定自动监控的预警和报警值。结果表明:采用坡度为1:4~1:5的平缓围堰边坡,通过设置反压平台,围堰在正常水位涨落条件下处于稳定状态;抛填土的强度降低会诱发滑动体从背水面坡脚贯通到堰顶;由于抛填饱和粉质黏土围堰的强度低和不均质性,为确保围堰稳定,须进行侧向变形、渗压及降雨量监测实时监控预警;抛填饱和粉质黏土围堰侧向变形报警值和预警值宜取1.5~2.0、1.1~1.5 mm/d。

    Abstract:

    Jiangxi Shuanggang Shipping & Navigation Project attempted to use the saturated silty clay with soft clay dredged from the open diversion channel to build the cofferdam. During construction, the dredged saturated silty clay was dumped by boats above the water, resulting in disturbed and non-homogenous silty clay with soft clay. This results in the difficulties to form the cofferdam with the desired gradients and failure of the cofferdam during operation. To assess the cofferdam stability during construction and operation with water level fluctuations, extensive numerical modelling using the finite element program PLAXIS was carried out. Further considering the non-uniformity of the dumped saturated silty clay and the variation of its strength with rainfall and evaporation, sensitivity analyses on the soil strength parameters were carried out. Based on the maximum lateral deformation curve of the cofferdam with the factor of safety close to 1.0, the yellow and red alarm levels were proposed for the remote real-time monitoring. The results indicate: the cofferdam with a slope of 1:4-1:5 and berms is stable at normal water levels; the reduction in strength of the dumped soil would induce instability of the downstream cofferdam slope from the toe to the top; due to the non-uniformity and low strength of the dumped saturated silty clay, remote real-time monitoring shall be carried out on the cofferdam lateral deformation, seepage pressure, and rainfall; based on the deformation curve with the factor of safety, the red and yellow alarm levels are 1.5-2.0 mm/d and 1.1-1.5 mm/d respectively.

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江平,杨航,朱碧堂,黄建宇,王浩,黄勇,刘斯浩.抛填饱和粉质黏土夹淤泥质土围堰稳定性分析[J].土木与环境工程学报(中英文),2022,44(6):22-32. JIANG Ping, YANG Hang, ZHU Bitang, HUANG Jiangyu, WANG Hao, HUANG Yong, LIU Sihao. Stability analysis of cofferdam built with dredged saturated silty clay with soft clay dumped by boats[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2022,44(6):22-32.10.11835/j. issn.2096-6717.2021.252

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  • 收稿日期:2021-07-28
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  • 在线发布日期: 2022-11-09
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