• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊

高含黏(粉)粒土料充填管袋高效脱水工艺现场模型试验

吴海民, 束一鸣, 常广品, 刘云锋, 刘欣欣, 顾克

吴海民, 束一鸣, 常广品, 刘云锋, 刘欣欣, 顾克. 高含黏(粉)粒土料充填管袋高效脱水工艺现场模型试验[J]. 岩土工程学报, 2016, 38(zk1): 209-215. DOI: 10.11779/CJGE2016S1039
引用本文: 吴海民, 束一鸣, 常广品, 刘云锋, 刘欣欣, 顾克. 高含黏(粉)粒土料充填管袋高效脱水工艺现场模型试验[J]. 岩土工程学报, 2016, 38(zk1): 209-215. DOI: 10.11779/CJGE2016S1039
WU Hai-min, SHU Yi-ming, CHANG Guang-pin, LIU Yun-feng, LIU Xin-xin, GU Ke. Field model tests on effective dewatering technology of geotextile tube filled by soil with high clay (silt) particle content[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(zk1): 209-215. DOI: 10.11779/CJGE2016S1039
Citation: WU Hai-min, SHU Yi-ming, CHANG Guang-pin, LIU Yun-feng, LIU Xin-xin, GU Ke. Field model tests on effective dewatering technology of geotextile tube filled by soil with high clay (silt) particle content[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(zk1): 209-215. DOI: 10.11779/CJGE2016S1039

高含黏(粉)粒土料充填管袋高效脱水工艺现场模型试验  English Version

基金项目: 国家十二五科技支撑课题(2012BAB03B02); 国家自然科学基金项目(51179065); 江苏高校优势学科建设工程项目(PAPD)
详细信息
    作者简介:

    吴海民(1982- ),男,博士,副教授,主要从事土石坝与堤防工程、土工合成材料工程应用方面的科研和教学工作。E-mail: wuhaimin@hhu.edu.cn。

Field model tests on effective dewatering technology of geotextile tube filled by soil with high clay (silt) particle content

  • 摘要: 针对高含黏(粉)粒土料充填管袋脱水固结速率慢,无法满足一天一层管袋施工要求的问题,通过现场大型充填管袋脱水模型试验来验证前期室内试验研究提出的放水排泥、充排结合的快速脱水施工方法。通过现场实时监测管袋充填施工及脱水过程中不同部位土体的孔隙水压力、固结度、含水率、级配和干密度等指标的变化情况,对比分析了不同施工方法的优劣,验证了室内试验提出的高含黏(粉)粒土料充填管袋坝高效脱水施工工艺的可行性和实际效果。
    Abstract: The dewatering velocity of geotextile tubes filled by soil with high clay (silt) particle content is very slow. That cannot meet the requirements of construction speed that a layer of geotextile tubes must be completely filled and preliminary solidified within one day. Several large-scale field model tests are conducted to verify the previously proposed construction methods, which combines actively discharging muddy water with the alternately filling and discharging methods. The indexes including pore water pressure, consolidation degree, water content, particle gradation and dry density of the filled soil in different positions within the geotextile tubes are real-time monitored during the whole filling and discharging process. Through the monitoring data, the comprehensive dewatering velocities of different construction methods are comparatively analyzed. The results have verified the feasibility and actual effect of the proposed dewatering method for high clay (silt) particle-content soil-filled geotextile tubes.
  • [1] OUMERACI H, BLECK M, KUBLER S. Großmaßstabliche untersuchungen zur hydraulischen stabilität geotextiler sandcontainer unter wellenbelastun[R]. Leichtweiss Intitute for Hydraulic Engineering and Water Resources, 2002b. (OUMERACI H, BLECK M, KUBLER S. Large-scale Model Tests for Hydraulic Stability of Geotextile Sand Containers under Wave Attack)[R]. Leichtweiss Intitute for Hydraulic Engineering and Water Resources, 2002b. (in German))
    [2] FOWLER Jack. Geotextile tubes and flood control [J]. Geotechnical Fabrics Report, 1997, 15(5): 28-37.
    [3] 吴维均. 国外充土长管袋工艺的开发概况 1994-2001[J]. 上海建设科技, 1994, 12(1): 30-32. (WU Wei-jun. Development survey of the technology of the long geo-tub in the foreign.1994-2001[J]. Shanghai Construction Science and Technology, 1994, 12(1): 30-32. (in Chinese))
    [4] FOWLER, Jack, C.Ortiz, N.Ruiz, E.Martinez. Use of geotubes in Colombia, South America[C]// Seventh International Conference on Geosynthetics. Nice, 2002.
    [5] FOWLER Jack, STEPHENS T C, SANTIAGO M, P. de Bruin. Amwaj Islands Constructed with Geotubes, Bahrain [C]// Western Dredging Association Twenty-Second Technical Conference and Thirty-Forth Annual Texas A&M Dredging Seminar. Denver, 2002.
    [6] 束一鸣, 吴海民.围垦堤防施工技术研究[J].水利经济, 2012, 30(3): 31-34, 50. (SHU Yi-ming, WU Hai-min. Construction techniques for reclamation dikes in coastal[J]. Journal of Economics of Water Resource, 2012, 30(3): 31-34, 50. (in Chinese))
    [7] JTJ 239—2005 水运工程土工合成材料应用技术规范[S]. 北京: 人民交通出版社, 2006. (JTJ 239—2005 Technical specifications of geosynthetics on water transport engineering[S]. Beijing: China Communications Press, 2006. (in Chinese))
    [8] 吴月龙, 朱方方, 陈东东. 吹填海泥掺水泥充灌模袋筑堤试验[J]. 水利与建筑工程学报, 2014, 12(5): 79-82. (WU Yue-long, ZHU Fang-fang, CHEN Dong-dong, et al. Test on embankment built with hydraulic filled geotextile bags of sea sludge with cement additive[J]. Journal of Water Resources and Architectural Engineerin, 2014, 12(5): 79-82. (in Chinese))
    [9] 董 晶, 费义昆, 梁佳斌. 土工管袋污泥脱水工程的设计注意事项[J]. 环境科技, 2014, 27(1): 38-41. (DONG Jing, FEI Yi-kun, LIANG Jia-bin. Design attention of sludge dewatering in geo-tub[J]. Environmental Science and Technology, 2014, 27(1): 38-41. (in Chinese))
    [10] 张景辉, 刘朝辉, 卢 丹. 超声辅助絮凝强化污染底泥土工管袋脱水减容[J]. 化学工程, 2011, 29(10): 16-18. (ZHANG Jing-hui, LIU Zhao-hui, LU Dan, et al. Dewatering of contaminated reservoir/lake sediment by using geotextile tubes aided by ultrasound[J]. Chemical Engineering (China), 2011, 29(10): 16-18. (in Chinese))
  • 期刊类型引用(9)

    1. 孟凌霄,徐龙伟,王桂梅,姜润豪,孙湲惠,许英东,付涛. 接头形式与位置对装配式箱涵动力性能影响研究. 市政技术. 2024(06): 142-149 . 百度学术
    2. 李国维,米帅奇,仇红超,吴建涛,李军,吴桂胜. 深埋盖板涵路基填土应力场分布特征试验研究. 岩石力学与工程学报. 2022(11): 2311-2319 . 百度学术
    3. 王伟. 高速公路高填土路基病害及处理措施研究. 交通世界. 2021(Z2): 71-72 . 百度学术
    4. 陶庆东,何兆益,贾颖. 结构参数与填料特性对盖板涵洞土涵作用影响. 地下空间与工程学报. 2021(02): 468-478 . 百度学术
    5. 米帅奇,陈伟,苏彤,AGO Cadnel. 涵周土性状对高填方盖板涵涵顶应力影响分析. 粉煤灰综合利用. 2021(06): 34-40 . 百度学术
    6. 陶庆东,何兆益,贾颖. 涵洞-填土-地基共同作用的涵洞减载效应研究. 三峡大学学报(自然科学版). 2020(05): 67-74 . 百度学术
    7. 徐湉源,王明年,于丽. 高填方双层衬砌式明洞土压力和结构内力特性研究. 铁道学报. 2019(02): 146-153 . 百度学术
    8. 赵立芳,段金辉. 混凝土盖板涵的施工要点. 黑龙江交通科技. 2019(08): 116-117 . 百度学术
    9. 冯忠居,李少杰,郝宇萌,董芸秀,方元伟,胡海波,潘放,李军. 上埋式涵洞基础埋深效应下的地基承载力研究. 长江科学院院报. 2019(11): 83-90 . 百度学术

    其他类型引用(11)

计量
  • 文章访问数: 
  • HTML全文浏览量:  0
  • PDF下载量: 
  • 被引次数: 20
出版历程
  • 收稿日期:  2015-11-29
  • 发布日期:  2016-03-24

目录

    /

    返回文章
    返回