首页> 外文会议>ICAMCS 2011;International conference on advanced materials and computer science >Studying the Rock Seepage Parameters Identification Method Based on Finite Element Method and Difference Evolution Arithmetic
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Studying the Rock Seepage Parameters Identification Method Based on Finite Element Method and Difference Evolution Arithmetic

机译:基于有限元和差分进化算法的岩石渗流参数识别方法研究

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The seepage of rock and soil is a common problem in geotechnical engineering, because of the uncertainty property of rock and soil, how to ascertain the seepage parameter of rock and soil becomes a problem to solve. Aiming to the problem, after introducing the theory of seepage parameter identification, the paper combines unstable seepage finite element method (FEM) and difference evolution (DE) arithmetic, constructs intelligent identification FEM method of seepage parameter, and develops the procedure. The hydraulic head distribution of seepage field can be calculated accurately by FEM and the optimal solution can be obtained by DE, the seepage FEM being embedded in DE, overcoming the local optimization problems of conventional methods and improving the precision of identification. A tarn sample is calculated by the method, it states that the convergence speed is quick and result is satisfied. It is a powerful method for seepage parameter identification.
机译:岩土的渗流是岩土工程中的普遍问题,由于岩土的不确定性,如何确定岩土的渗流参数成为亟待解决的问题。针对该问题,在介绍了渗流参数识别理论之后,结合不稳定渗流有限元法和差分演化算法(DE)算法,构建了渗流参数的智能识别有限元方法,并开发了程序。利用有限元法可以准确地计算出渗流场的水头分布,并通过DE获得最优解,将渗流有限元嵌入DE中,克服了传统方法的局部优化问题,提高了识别精度。通过该方法计算出塔恩样本,表明收敛速度快,结果令人满意。这是一种用于渗流参数识别的强大方法。

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