Lateral Deformation of Cellular Diaphragm Wall at Excavation Stage
-
摘要: 为获得格形地下连续墙受力和变形的一般规律,结合实际工程,采用离心模型试验和现场监测方法对其侧向变形规律、设计参数对墙体位移的影响、围护结构最大侧向位移与开挖深度的关系进行了分析.结果表明:墙顶水平位移较大,墙体发生重力式位移模式;前后墙的变形规律相似,开挖深度、前后墙间距、隔墙间距、土质和临时支撑对墙体位移有显著影响;与拉锚地下连续墙相比,格形地下连续墙整体刚度大,抗水平变形能力强,最大侧向位移(平均值)为开挖深度的0.15%~0.50%,满足软土地区深基坑变形的基本要求.Abstract: To get the general rules of stress and deformation of cellular diaphragm wall, a centrifugal model test and field monitoring were made to analyze the lateral deformation rule, effects of design parameters on wall deformation, and relationship between maximum lateral displacement and excavation depth. The research results show that horizontal displacement of wall top is large and gravitated, and front and back walls have a similar deformation rule. Excavation depth, front and rear walls' spacing, partition wall spacing, soil property and temporary bracing have great effects on the horizontal displacement. Compared with anchored diaphragm wall, cellular diaphragm wall has large and strong integral rigidity and resistance, its maximum lateral displacement is on average about 0.15% to 0.5% of excavation depth, meeting the basic deformation requirement of deep foundation pit in soft soil areas.
-
梅英宝. 自立式格形地下连续墙围护基坑变形实测分析 [J]. 岩土工程学报,2010,32(增刊1): 463-467. MEI Yingbao. Measured deformation of self-supporting lattice concrete diaphragm walls [J]. Chinese Journal of Geotechnical Engineering, 2010, 32(Sup.1): 463-467. 侯永茂. 软土地层中格形地下连续墙围护结构性状研究 [D]. 上海:上海交通大学船舶海洋与建筑工程学院,2010. 杨志豪,陈柳娟,贺春宁,等. 上海外环沉管隧道设计(五):浦西岸壁保护结构的设计 [J]. 地下工程与隧道,2004(5): 6-10. YANG Zhihao, CHEN Liujuan, HE Chunning, et al. Design of Shanghai outer ring immersed tunnel (the fifth): design of bulkhead wall in Puxi [J]. Under-ground Engineering and Tunnel, 2004(5): 6-10. 陈宇. 新型自立式复合地连墙在基坑工程中的应用 [D]. 上海:同济大学土木工程学院,2010. 左玉柱. 自立式格形地下连续墙受力机理研究 [D]. 上海:同济大学土木工程学院,2011. 包承纲,饶锡保. 土工离心模型的试验原理 [J]. 长江科学院院报,1998,15(2): 1-7. BAO Chenggang, RAO Xibao. The principle of geotechnical centrifuge model test [J]. Journal of Yangtze River Scientific Research Institute, 1998, 15(2): 1-7. 南京水利科学研究院土工研究所. 土工试验技术手册 [M]. 北京:人民交通出版社,2002: 72-160. 廖俊棠. 山区高液限土公路地基处治技术研究 [D]. 重庆:重庆交通大学土木建筑学院,2008. 张莎莎,谢永利. 离心力场中固结理论适用性的影响因素研究 [J]. 西安建筑科技大学学报:自然科学版,2013,45(1): 58-65 ZHANG Shasha, XIE Yongli. Research on influencing factors of consolidation theory applicability in centrifugal force field [J]. Journal of Xi'an University of Architecture and Technology: Natural Science Edition, 2013, 45(1): 58-65. OVESEN N K. The use of physical models in design [C]//The 7th European Conference on Soil Mechanics and Foundation Engineering. Brighton: [s. n.], 1979: 318-323. 徐光明,章为民. 离心模型中粒径效应和边界效应研究 [J]. 岩土工程学报,1996,18(3): 80-88. XU Guangming, ZHANG Weimin. Centrifuge model test on grain-size and boundary effects [J]. Chinese Journal of Geotechnical Engineering, 1996, 18(3): 80-88. 马险峰,刘光云,徐前卫. 软土超深基坑端头开挖效应的模拟试验研究 [J]. 岩土工程学报,2008,30(增刊): 505-508. MA Xianfeng, LIU Guangyun, XU Qianwei. Model tests on excavation effect of deep foundation pit in soft soil [J]. Chinese Journal of Geotechnical Engineering, 2008, 30(Sup.): 505-508. 马险峰,张海华,朱卫杰. 超深基坑开挖对超临近高层建筑影响的离心模型试验研究 [J]. 岩土工程学报,2008,30(增刊): 499-504. MA Xianfeng, ZHANG Haihua, ZHU Weijie. Centrifugal model tests on effect of excavation super-deep foundation pits on adjacent high-rise buildings [J]. Chinese Journal of Geotechnical Engineering, 2008, 30(Sup.): 499-504. 王建华,徐中华,王卫东. 支护结构与主体地下结构相结合的深基坑变形特性分析 [J]. 岩土工程学报,2007,29(12): 1899-1903. WANG Jianhua, XU Zhonghua, WANG Weidong. Analysis of deformation behavior of deep excavations supported by permanent structure [J]. Chinese Journal of Geotechnical Engineering, 2007, 29(12): 1899-1903. 徐中华,王卫东. 深基坑变形控制指标研究 [J]. 地下空间与工程学报,2010,6(3): 619-626. XU Zhonghua, WANG Weidong. Deformation control criteria of deep excavations [J]. Chinese Journal of Underground Space and Engineering, 2010, 6(3): 619-626.
点击查看大图
计量
- 文章访问数: 1206
- HTML全文浏览量: 71
- PDF下载量: 486
- 被引次数: 0