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  • The introduction of block theory engineering analysis software

    Block theoretical engineering analysis software KBTE-2.0

    1. Main functional features and interface features of the software

    (1) Full space polar projection and analysis: directly display the type of joint cone, the movement mode of joint cone, the stability coefficient and residual sliding force ignoring the cohesive force on the graph;


    (2) Complex block shape analysis: no positioning block geometry analysis; Shape analysis of positioning blocks including concave blocks;


    (3) Block stability and support force analysis: considering the effects of groundwater, earthquake, external load, etc., block stability coefficient calculation, block support force analysis; Stability analysis of multi-slip surface blocks and complex blocks;


    (4) Analysis of the largest mass shape of underground cavern;


    (5) Equilibrium region diagram (Londe diagram);


    (6) three-dimensional structural plane network simulation considering positioning and random structural plane; Three-dimensional random block geometry search for cavern and slope problems; Statistical analysis of block geometric characteristics (size, average size, buried depth and coverage rate, etc.);


    (7) three-dimensional block cutting analysis of slope and cavern rock mass (full space block search), and progressive block instability analysis;


    (8) Block reliability analysis considering the random distribution of structural plane mechanical parameters and geometric parameters; Block occurrence probability and block failure probability analysis


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    图1.1-2  软件主界面

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    图1.1-4全空间赤平投影分析

     

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    图1.1-8  洞室内块体系统渐进失稳分析结果

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    图2.7-1  边坡的定位块体 

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    图2.7-3 曲面修正后的定位块体 

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       (a)三维块体                            (b)洞室和排水孔边界

    图2.9-4 水封洞库模型

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       (a)结构面网络                                      (b)三维块体

    图2.9-5洞室围岩三维切割分析

     

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    图2.9-9 三维块体切割分析在矮寨大桥桥台边坡支护分析中的应用

    (a)                       (b)                     (c)

     (a)结构面摩擦系数取0.5,得到942个失稳块体;(b)结构面摩擦系数取1.0,得到837个失稳块体;(c)结构面摩擦系数取1.5,得到445个失稳块体

    图2.9-10 考虑力学识别后得到的渐进失稳关键块体

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    (a)                                                         (b)

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    (c)                    (d)

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     (e)                             (f)

    图2.9-13 锚固力分布特征与渐进失稳块体位置对比