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闫相祯, 王保辉, 杨秀娟, 杨恒林. 确定地应力场边界载荷的有限元优化方法研究[J]. 岩土工程学报, 2010, 32(10).
引用本文: 闫相祯, 王保辉, 杨秀娟, 杨恒林. 确定地应力场边界载荷的有限元优化方法研究[J]. 岩土工程学报, 2010, 32(10).
Finite element optimization method of boundary load of in-situ stress field[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(10).
Citation: Finite element optimization method of boundary load of in-situ stress field[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(10).

确定地应力场边界载荷的有限元优化方法研究

Finite element optimization method of boundary load of in-situ stress field

  • 摘要: 从弹性力学基本方程出发,针对煤层气储层地应力场反问题,结合对区域地应力场认识,利用阻尼最小二乘法建立了应力场反演的优化约束模型,提出了一种用于反演地应力场边界力的优化分析方法,该方法根据部分实测点的应力值进行边界力反演,并与有限元方法和有限差分法相结合,通过改变边界力参量达到优化逼近目标函数。该方法根据研究区域少量地应力实测资料进行最优化计算, 使得计算应力场与实测应力达到最优拟合,以弥补回归反演方法和边界载荷调整法的不足,来提高计算精度。针对沁水盆地少数控制井的地应力大小和方向作为约束条件,计算了区域地应力场,算例证明了该方法的计算精度和可靠性,本文提出的优化方法可有效解决地应力场边界力的反演问题。

     

    Abstract: The constrained optimization model based on the least square method is established. According to the fundamental equations of elastic mechanics, an optimization inversion method of the boundary load of in-situ stress field of CBM reservoir is proposed. The method combines the finite element and the finite-difference methods together to optimize and approximate the objective function through the variation of boundary load on the basis of the stress value of partial measured points, and eventually the inverse boundary load is obtained. The optimization calculation is performed on the basis of the method which makes the calculated results agree well with the measured data of in-situ stress. This method can overcome the shortage of common back analysis method such as adjusting boundary loads and regression method, so it can improve the calculation precision. Taking the numerical magnitude and azimuth of in-situ stress in a typical well for Qinshui Basin as a constraint, the in-situ stress field has been calculated. The example shows that the proposed method is credible and has high precision, and can effectively solve the boundary load inversion of in-situ stress field.

     

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