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Horizontal Bedding Shale Geostress Calculation Method

机译:水平层状页岩地应力计算方法

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Background:Since the fragile anisotropy of shale, it is difficult to carry out laboratory experiments of geostress by shale cores. The existing geostress calculation model that is based on the homogeneous hypothesis also cannot meet the accuracy requirement. Therefore, it is necessary to establish the new geostress calculation model and test methods which are suitable for shale and provide the effective guidance for drilling and fracturing.Methods:Firstly, the triaxial stress experiments were carried out. It showed that the mechanical parameters had strong difference between parallel and vertical bedding direction. The characteristics of transversely isotropic were shown obviously. Then, the geostress calculation model which considers the mechanical parameters of anisotropy in different direction was established by the constitutive relation of transversely isotropic materials. Finally, it was assumed that there is no relative displacement between formations in the process of deposition and the late tectonic movement; the prediction method for the shale geostress was established by the adjacent homogeneous formation. The sensitivity factors and influence laws were analyzed for the horizontal bedding shale geostress.Results:The results showed that the shale geostress was controlled by the elastic parameters of its own and the adjacent beds’.Conclusion:The research can provide the theoretical basis and easy way for calculating the shale geosterss.
机译:背景:由于页岩的各向异性很脆弱,很难进行页岩岩心的地应力实验室实验。现有基于均质假设的地应力计算模型也不能满足精度要求。因此,有必要建立一种适用于页岩的新地应力计算模型和试验方法,为钻井和压裂提供有效的指导。方法:首先进行了三轴应力试验。结果表明,力学参数在平行和垂直方向上差异很大。横观各向同性的特征明显地表现出来。然后,通过横观各向同性材料的本构关系,建立了考虑不同方向各向异性力学参数的地应力计算模型。最后,假设在沉积过程和晚期构造运动之间地层之间没有相对位移;页岩地应力的预测方法是由邻近的均质地层建立的。分析了水平层理页岩地应力的敏感性因素和影响规律。结果:结果表明,页岩地应力受其自身和邻近地层的弹性参数控制。结论:该研究可提供理论依据和简便性页岩地质体的计算方法。

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