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Study on the Seismic Active Earth Pressure by Variational Limit Equilibrium Method

机译:变分均衡法研究地震活性接地压力研究

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摘要

In the framework of limit equilibrium theory, the isoperimetric model of functional extremum regarding the seismic active earth pressure is deduced according to the variational method. On this basis, Lagrange multipliers are introduced to convert the problem of seismic active earth pressure into the problem on the functional extremum of two undetermined function arguments. Based on the necessary conditions required for the existence of functional extremum, the function of the slip surface and the normal stress distribution on the slip surface is obtained, and the functional extremum problem is further converted into a function optimization problem with two undetermined Lagrange multipliers. The calculated results show that the slip surface is a plane and the seismic active earth pressure is minimal when the action point is at the lower limit position. As the action point moves upward, the slip surface becomes a logarithmic spiral and the corresponding value of seismic active earth pressure increases in a nonlinear manner. And the seismic active earth pressure is maximal at the upper limit position. The interval estimation constructed by the minimum and maximum values of seismic active earth pressure can provide a reference for the aseismic design of gravity retaining walls.
机译:在极限平衡理论的框架中,根据变分方法推断出关于地震活性接地压力的功能极值的等异型模型。在此基础上,引入了拉格朗日乘法器,以将地震有源土压力的问题转换为两个未确定函数参数的功能极值的问题。基于存在功能极值所需的必要条件,获得滑动表面的功能和滑动表面上的正常应力分布,并且功能极值问题进一步转换为具有两个未确定拉格朗日乘数的功能优化问题。计算结果表明,当动作点处于下限位置时,滑动表面是平面,地震有源接地压力最小。当动作点向上移动时,滑动表面变为对数螺旋,并且抗震性接地压力的相应值以非线性方式增加。并且地震有源地面压力在上限位置最大。由地震有源地球压力的最小值和最大值构造的间隔估计可以为重力挡土墙的抗空设计提供参考。

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