Rock mass critical sliding surface limit analysis method
An analysis method and sliding surface technology, applied in the direction of instruments, complex mathematical operations, design optimization/simulation, etc., can solve the problems of poor applicability and inapplicability of the slip line method, and it is difficult to figure out the constitutive relationship of the rock mass, so as to achieve good results. The effect of engineering practical value, rigorous theoretical foundation, and strong applicability
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Embodiment 1
[0039] Example 1: as figure 1 As shown in the figure, this embodiment takes the problem of the bearing capacity of the foundation under the action of the strip uniform load as an example to illustrate the calculation method of the critical sliding surface of the rock mass according to the present invention. The process is as follows figure 2 shown.
[0040] like figure 1 As shown, a strip-shaped uniform load 2 acts on the top of the foundation 1 within 16m, the viscous force c of the foundation 1 is 200kPa, and the internal friction angle Zero, zero stamina. The method of the present invention is used to solve the critical slip surface of foundation 1 below.
[0041] S1, collect the distribution ranges of rock masses of different properties, structural planes, and weak layers in the target area; for this embodiment, foundation 1 is a homogeneous rock mass, and there are no rock masses of different properties, no structural planes, no weak layer;
[0042] S2, obtain the ...
Embodiment 2
[0082] In the calculation of the critical sliding surface of the three-dimensional rock mass, the unit is divided by hexahedral elements, and the unit static equilibrium constraint equation, the nodal stress known boundary condition constraint equation and the nodal stress yield criterion constraint equation The three-dimensional element static equilibrium constraint equation, the nodal stress known boundary condition constraint equation, the nodal stress yield criterion constraint equation and the objective function are established, and the mathematical model for the calculation of the critical sliding surface of the rock mass is established; Constraints, further solve all tight nodes, and obtain the critical sliding surface of the rock mass.
[0083] In conclusion, the limit analysis method for critical sliding surface of rock mass provided in this application provides a rock mass that does not need to introduce stress-strain relationship, does not need to introduce assumptio...
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