参考文献/References:
[1] 朱晓颖:江苏扬中坍江险情处置:险情受控无人伤亡. www.chinanews.com 2017-11-10 20:26.
[2] 张幸农, 蒋传丰, 陈长英, 等. 江河崩岸的类型与特征[J]. 水利水电科技进展, 2008(5):66-70.
[3] 应强, 张幸农, 孙波. 长江窝崩机理研究现状的述评[C]∥长江重要堤防隐蔽工程建设管理局, 长江科学院. 长江护岸工程( 第六届)及堤防防渗工程技术经验交流会论文集. 北京:中国水利水电出版社, 2003:84-91.
[4] 陈引川, 彭海鹰. 长江下游大窝崩的发生及防护[A]. 长江中下游护岸论文集(第三集)[C]. 武汉:长江水利水电科学研究院, 1985:112-116.
[5] 余文畴, 苏长城. 长江中下游“口袋型”崩窝形成过程及水流结构[J]. 人民长江, 2007(8):156-159.
[6] 余文畴. 长江中下游河道"口袋型"崩窝形成机理初步研究[J]. 人民长江, 2007(6):40-42.
[7] 马海顺. 长江六合圩大窝崩的原因与治理意见[J]. 安徽水利科技,1990,(2).
[8] 冷魁. 长江下游窝崩形成条件及防护措施初步研究[J]. 水科学进展, 1993, 4(4):281-287.
[9] 丁普育, 张敬玉. 江岸土体液化与崩塌关系的探讨[A]. 长江中下游护岸论文集(第三集)[C]. 武汉:长江水利水电科学研究院, 1985:104-109.
[10] Pilarczyk K W. Dikes and revet米ents [M]. Balkema, Rotterdam, 1998.
[11] Victor H. Torrey Ⅲ, Joseph B. Dunbar. Richard W. Peterson. Progressive failure in sand deposits of the mississippi River, Field investigations, laboratory studies and analysis of the hypothesized failure mechanism, Retrogressive Failures in Sand 6Deposits of the mississippi River, Report 1[R]. Department Of The ARMY Waterway Experiment Station, Corps Of Engineers, USA, June 1988.
[12] 张岱峰. 从人民滩窝崩事件看长江窝崩的演变特性[J]. 镇江水利, 1996, 39-54.
[13] 孙梅秀, 吴道文, 李昌华. 长江八卦洲洲关控制工程及江岸崩窝的试验研究[R]. 南京:南京水利科学研究院, 1989.
[14] 朱宝平, 张永婷. 三江口河段窝崩机理分析[J]. 水电能源科学, 2013(1):127-130.
[15] 牛晨曦. 典型流滑型窝崩水流变化试验研究[C]. 南京水利科学研究院研究生论文. 2018.
[16] 闻云呈, 陈长英, 徐华, 等. 二期工程河段靖江边滩演变趋势及其对深水航道影响与对策. 南京水利科学研究院科研报告. 2018-7.
[17] 长江水利委员会长江科学院, 长江水利委员会水文局长江下游水文水资源勘测局. 长江扬中指南村江段崩岸成因及崩窝处置方案对河势影响分析报告[R].2017年12月.
[18] 镇江市工程勘测设计院. 扬中市11.8长江崩岸抢险工程[R]. 镇江市工程勘测设计院, 2017
相似文献/References:
[1]陈 进.长江水资源问题及调控方法[J].江苏水利,2016,(02):10.
CHEN Jin.Water resources problem and controlling method of Yangtze River[J].JIANGSU WATER RESOURCES,2016,(增刊2):10.
[2]李 红,林佳萌,周玲霞,等.大型涉水工程对长江南京河段河势的影响浅析[J].江苏水利,2016,(03):14.
LI Hong,LIN Jiameng,ZHOU Lingxia,et al.Effect Analysis of large wading project on river regime in Nanjing each of Yangtze River[J].JIANGSU WATER RESOURCES,2016,(增刊2):14.
[3]武雁刚,范 睿,王义坤,等.长江南京龙潭段华能金陵电厂水下
地形勘测工程技术分析[J].江苏水利,2016,(06):66.
WU Yangang,FAN Rui,WANG Yikun,et al.Analysis of underwater topographic survey engineering technology of Huaneng
Jinling power plant in Yangtze River Nanjing section of Longtan[J].JIANGSU WATER RESOURCES,2016,(增刊2):66.
[4]朱大伟,仲晓林,何孝光,等.新形势下的江苏江水东引灌区规划工程布局研究[J].江苏水利,2018,(01):1.
ZHU Dawei,ZHONG Xiaolin,HE Xiaoguang,et al.Study on the irrigation planning layout of the Yangtze River Water Diversion Project in Jiangsu under the new situation[J].JIANGSU WATER RESOURCES,2018,(增刊2):1.
[5]缪 俊,周 顺,陆纪友,等.江阴市全面深入实施长江大保护的实践与思考[J].江苏水利,2019,(09):56.
MIAO Jun,ZHOU Shun,LU Jiyou,et al.Practice and thoughts on the comprehensive and in-depth implementation of the Yangtze River Protection in Jiangyin City[J].JIANGSU WATER RESOURCES,2019,(增刊2):56.
[6]谢洪兴,潘张宇.江阴长江生态安全示范区建设措施与成效[J].江苏水利,2019,(增刊1):34.
XIE Hongxing,PAN Zhangyu.Construction measures and effects of Yangtze River ecological security demonstration zone in Jiangyin[J].JIANGSU WATER RESOURCES,2019,(增刊2):34.
[7]梅琳娜,周 顺,周 海,等.江阴市全力提升长江饮用水水源地安全保障水平的实践[J].江苏水利,2019,(增刊2):70.
MEI linna,ZHOU Shun,ZHOU Hai,et al.Practice on Jiangyin City fully promote the safety guarantee level of drinking water sources of the Yangtze River[J].JIANGSU WATER RESOURCES,2019,(增刊2):70.
[8]伏 洲,周宏萍,曹驰宇.浅析长江干流崩岸治理抛石护岸质量控制[J].江苏水利,2020,(12):61.
FU Zhou,ZHOU Hongping,CAO Chiyu.Analysis on quality control of riprap revetment in the bank collapse treatment of the main stream of the Yangtze River[J].JIANGSU WATER RESOURCES,2020,(增刊2):61.
[9]周 萍.在新的起点高质量推进江苏长江治理保护工作[J].江苏水利,2021,(增刊2):1.
ZHOU Ping.Promote the governance and protection of the Yangtze River in Jiangsu with high quality at a new starting point[J].JIANGSU WATER RESOURCES,2021,(增刊2):1.
[10]侍翰生,欧建锋,廖 涛,等.长江江苏段岸线利用现状评估与对策分析[J].江苏水利,2021,(增刊2):8.
SHI Hansheng,OU Jianfeng,LIAO Tao,et al.The Current situation Assessment and the Countermeasure Analysis of Shoreline Utilization in Jiangsu Reach of the Yangtze River[J].JIANGSU WATER RESOURCES,2021,(增刊2):8.
[11]罗龙洪,苏长城,应 强,等.长江扬中河段指南村窝崩应急治理及效果分析[J].江苏水利,2020,(02):25.
LUO Longhong,SU Changcheng,YING Qiang,et al.Emergency treatment and effect analysis of arc collapsing in Zhinan Village, Yangzhong Reach of the Yangtze River[J].JIANGSU WATER RESOURCES,2020,(增刊2):25.