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Volume 38 Issue 4
Aug.  2019
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LI Qiang, Qin Yushun. Technologies to deal with karst caves beneath pile foundation of the big bridge on the Laos-China railway[J]. CARSOLOGICA SINICA, 2019, 38(4): 607-611. doi: 10.11932/karst20190420
Citation: LI Qiang, Qin Yushun. Technologies to deal with karst caves beneath pile foundation of the big bridge on the Laos-China railway[J]. CARSOLOGICA SINICA, 2019, 38(4): 607-611. doi: 10.11932/karst20190420

Technologies to deal with karst caves beneath pile foundation of the big bridge on the Laos-China railway

doi: 10.11932/karst20190420
  • Publish Date: 2019-08-25
  • This work studies the techniques to deal problems associated with karst caves beneath the pile foundation of Nam Song bridge in the Laos-China railway. Many kinds of factors are considered such as construction safety, quality, work duration, cost, environment and forms of karst caves. Based on data derive from the construction site, comparative analyses are performed in the strengths and weaknesses as well as practicability of the macadam back-filling method (e.g. wall-building by throwing and filling clay and rubble) and follow-up steel casing method and their combination in dealing with karst caves of various shapes. Results show that for small empty caves and moderate caves fully or partially filled caves, the first method can deal with the karst caves rapidly, efficiently and economically. For moderate empty karst caves, large karst caves and caves with big channels of underground rivers, the combination of the two methods permit to solve the problems during construction such as low efficiency, hole collapse risk, concrete over pouring, and steel casing deformation by extrusion, to overcome the construction risk owing to the karst cave in an economical and efficient manner. Based on these study results, this paper proposes the feasible options and key technologies deal with karst caves beneath bridge pile foundation in karst areas.

     

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  • [1]
    金晓文,陈植华,曾斌,等.岩溶塌陷机理定量研究的初步思考 [J].中国岩溶,2013,32(4):437-446.
    [2]
    王建秀,杨立中,何静.岩溶塌陷演化过程中的水—土—岩相互作用分析[J].西南交通大学学报,2001,36(3):314-317.
    [3]
    王飞.复杂地质条件下长大钻孔桩施工控制技术[J].建筑技术开发,2016,43(5):72-73.
    [4]
    程星.岩溶塌陷机理及其预测与评价研究[M].北京:地质出版社,2006:157.
    [5]
    杨家福.溶岩地区钻孔桩施工方案及处理方法[J].北方交通,2007(11):68-69.
    [6]
    范业帅.岩溶发育区桩基施工技术[J].青海交通科技,2017,(2):91-93.
    [7]
    由瑞凯,李芳武,张延河,等.岩溶区大直径钻孔灌注桩施工技术[J].施工技术,2017,42(20): 61-64.
    [8]
    付勋勋,刘新社,邵晓州,等.鄂尔多斯盆地奥陶系古岩溶发育程度的分形特征[J].中国岩溶,2017,36(1):23-31.
    [9]
    张琳.针对高速公路岩溶区桥梁桩基的地质勘探研究[J].交通世界,2016(19):80-81.
    [10]
    金广营.武九铁路岩溶地质条件下桥梁桩基钻孔桩施工技术控制[J].建筑机械,2017(5):105-109.
    [11]
    贤良华.基于岩溶地质的桥梁桩基施工方法探讨[J].西部交通科技,2018(10):188-191.
    [12]
    袁广学.基于岩溶复杂地质的高速公路桥梁桩基施工技术研究[J].价值工程,2017(34):131-134.
    [13]
    邓成华.高速公路桥梁溶洞桩基施工技术[J].西部交通科技,2017(9):97-100.
    [14]
    胡胜召.岩溶地桩基施工常见问题分析[J].城市建筑理论研究,2017(22):31-34.
    [15]
    甘展孜.某工程岩溶桩基分析处理[J].矿产勘查,2000(9):16-17.
    [16]
    赵明华,曹文贵,何鹏翔,等.岩溶及采空区桥梁桩基桩端岩层厚度研究[J].岩土力学,2004,25(1):13-14.
    [17]
    邱斌.岩溶地区桥梁桩基设计[J].铁道建筑,2004(5):13-14.
    [18]
    李铁雄,黄振斌,安伟刚,等.岩溶地区桩基特性物理模拟[J].岩土力学,2002,33(4):339-343.
    [19]
    张文学,刘海陆,谢全懿,等.岩溶地区桩基注浆加固效果的影响因素分析[J].铁道建筑,2014(7):28-30.
    [20]
    欧强.岩溶地质条件下桥梁桩基施工技术[J].江西建材,2014(15):14-15.
    [21]
    祁昌旺.岩溶地段桥梁桩基施工技术要点[J].交通世界,2015(Z1):34-35.
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