JIANG Xin-liang;XU Bing-wei. SIMPLIFIED ANALYTICAL MODEL OF DIAPHRAGM WALL IN LONG FOUNDATION PIT[J]. Engineering Mechanics, 2009, 26(增刊Ⅰ): 33-036.
Citation: JIANG Xin-liang;XU Bing-wei. SIMPLIFIED ANALYTICAL MODEL OF DIAPHRAGM WALL IN LONG FOUNDATION PIT[J]. Engineering Mechanics, 2009, 26(增刊Ⅰ): 33-036.

SIMPLIFIED ANALYTICAL MODEL OF DIAPHRAGM WALL IN LONG FOUNDATION PIT

More Information
  • Received Date: December 31, 1899
  • Revised Date: December 31, 1899
  • Through studying long foundation pits, a simplified computing model of diaphragm wall is established to improve model’s computing efficiency. In the model, the hyperbolic nonlinear spring element was adopted to simulate the elasto-plastic interaction between the wall and the foundation soil. The model’s calculation width is supposed to be that of the diaphragm wall segment and its six kinds of boundary conditions are determined according to the locations of the segments’ junctions and the way they joint. Furthermore, soil stratifying and the supports’ pre-force are considered. The model’s computed results agree quite well with the in-place data by computing the diaphragm wall of one foundation pit in Tianjin. It gives a simple and effective computing method for simulating the process of foundation pits’ excavation and for forecasting diaphragm walls’ deformation.
  • Related Articles

    [1]LI Xue-bing, CAO Jin-feng, WEI Yin-tao. FINITE ELEMENT MODELLING ON POLYTROPIC PROCESS OF AIR SPRINGS[J]. Engineering Mechanics, 2019, 36(2): 224-228. DOI: 10.6052/j.issn.1000-4750.2017.12.0925
    [2]XU Guo-wen, WANG Shi-min, WANG Dong-bing. SHELL-SPRING-CONTACT-GROUND MODEL BASED ON SEGMENT JOINT STIFFNESS NONLINEARITY[J]. Engineering Mechanics, 2016, 33(12): 158-166. DOI: 10.6052/j.issn.1000-4750.2015.05.0402
    [3]SONG Meng-yan, TIAN Ge, YUAN Ming-wu, GE Li-na, SONG Jing-jing, FU Xiang-rong. THE EQUIVALENT SPRING ELEMENTS TO THE ANALYSIS OF TWO AND THREE DIMENSIONAL CONTINUUM[J]. Engineering Mechanics, 2014, 31(增刊): 5-6. DOI: 10.6052/j.issn.1000-4750.2013.04.S019
    [4]XU Wei-liang, ZHENG Ting-yin. A SIMPLIFIED P- EFFECTS ANALYSIS APPROACH FOR TALL BUILDING STEEL FRAMES WITH SEMI-RIGID CONNECTIONS[J]. Engineering Mechanics, 2009, 26(7): 66-071.
    [5]XU Bing-wei;JIANG Xin-liang. DIAPHRAGM WALL’S DEFORMATION FORECASTING BASED ON BP-RBF NEURAL NETWORKS[J]. Engineering Mechanics, 2009, 26(增刊Ⅰ): 163-166.
    [6]GAO Guang-fan, DING Xin-wei. NONLINEAR STATIC ANALYSIS OF AXISYMMETRIC BULGED HYPERBOLIC THIN-METAL SHELLS[J]. Engineering Mechanics, 2007, 24(8): 72-076,.
    [7]HE Yong-jun, ZHOU Xu-hong, DONG Shi-lin. THE METHOD OF COMBINING SUPER FINITE ELEMENTS AND SUBSTRUCTURES FOR ANALYSIS OF LATTICE-INTERSECTED THREE-DIMENSIONAL RETICULATED MEGA-STRUCTURES[J]. Engineering Mechanics, 2005, 22(3): 5-10,2.
    [8]ZHOU Kui, FANG Li-xin, SONG Qi-gen. NONLINEAR ANALYSIS OF COMPOSITE STRUCTURES USING COMP-ELEMENT[J]. Engineering Mechanics, 2001, 18(4): 67-72.
    [9]LIAO Wen, LU Wen-da, LIU Ren-huai. FINITE ELEMENT RELIABILITY ANALYSIS OF HYPERBOLIC COOLING TOWERS[J]. Engineering Mechanics, 1999, 16(1): 49-55.
    [10]He Yunzheng, Zou Guangping, Pan Xinji, Zhang Fengmin, He Wenbo. NONLINEAR THEORY AND EXPERIMENTAL STUDY OF HELICAL SPRING[J]. Engineering Mechanics, 1997, 14(1): 56-61.

Catalog

    JIANG Xin-liang;XU Bing-wei

    1. On this Site
    2. On Google Scholar
    3. On PubMed

    Article Metrics

    Article views (1246) PDF downloads (430) Cited by()

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return