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黄雪峰, 杨校辉, 朱彦鹏, 张世径. 西宁地区常用基坑支护结构对比分析[J]. 岩土工程学报, 2012, 34(suppl): 432-439.
引用本文: 黄雪峰, 杨校辉, 朱彦鹏, 张世径. 西宁地区常用基坑支护结构对比分析[J]. 岩土工程学报, 2012, 34(suppl): 432-439.
HUANG Xue-feng, YANG Xiao-hui, ZHU Yan-peng, ZHANG Shi-jing. Comparative analysis of common retaining structures in Xining area[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(suppl): 432-439.
Citation: HUANG Xue-feng, YANG Xiao-hui, ZHU Yan-peng, ZHANG Shi-jing. Comparative analysis of common retaining structures in Xining area[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(suppl): 432-439.

西宁地区常用基坑支护结构对比分析

Comparative analysis of common retaining structures in Xining area

  • 摘要: 针对深基坑工程设计和施工现状,通过近年西宁地区基坑支护工程实践,对比分析了本地区常用的4种支护结构的作用机理、适用范围、设计现状及存在的不足,并为今后进一步研究指出了方向。实践证明:在西宁地区,当基坑周边环境允许放坡、深度不大于12 m、地下水位较低且经济性要求较高时,应首选土钉墙支护;当基坑周边环境允许、深度大于12 m、对位移控制要求较严、地下水位较高时,应优先选用复合土钉墙或框架预应力锚杆支护,尤其作为永久性支护结构且考虑美观、造价时,框架预应力锚杆优于复合土钉墙;当大型复杂深基坑周边环境狭小、位移要求严格、锚杆长度或桩径选择受限、地质情况复杂时,选择上部土钉下部桩锚联合支护较合理。最后,结合目前西宁地区大型复杂深基坑工程实例,对其应用情况进行了说明。

     

    Abstract: Based on the design and construction status of deep excavations and engineering practices of supporting and retaining structures in Xining area in recent years, the mechanism, application scope, design status and shortcomings of 4 kinds of supporting and retaining structures are compared and analyzed for the future research direction. The practices show that when the surrounding environment of excavations allows step-slope, the depth is not more than 12 m, the groundwater level is low and the economic requirements are high, soil-nailing wall should be used as the first choice. When the surrounding environment of excavations allows step-slope, the depth is more than 12 m, the requirements of displacement are strict and the groundwater level is high, composite soil-nailing wall or grillage with prestressed anchors should be used as the first choice. Considering beauty and cost, the grillage with prestressed anchors is better than the composite soil-nailing wall, especially as a permanent support. When the surrounding environment of large complex deep excavations is narrow, the requirements of displacement are strict, the anchorage length or pile diameter selection is limited and the geological conditions are complex, it is more reasonable to choose the combined support of soil-nailing wall at the upper part and anchor pile at the lower part. Finally, combined with the current large complex examples of deep excavations in Xining, the relevant applications are illustrated.

     

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