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Initial Rock Stress Measurement by Use of an Improved Conical-End Borehole Method

机译:通过使用改进的圆锥形钻孔法测定初始岩石应力测量

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The present paper describes an improved Conical-End Borehole Method (ImCEBM) and its field application to initial rock stress measurement. The ImCEBM is an improved version of the Conical-End Borehole Method (CEBM). The improvements are made such ways as 1) an inspection borehole is bored ahead of the conical-end borehole, 2) the same-diameter overcoring as that of the borehole is done. By use of the Fast Multipole Boundary Element Method (FMBEM), simulation of the overcoring was made and strains induced by overcoring are obtained. Using the strains, the conversion matrix from measured strains to initial rock stresses was determined. Field measurements were successfully carried out at a site of sandy shale and of fine-grained sandstone, respectively. Initial compressive principal stresses are, for example, 36, 12 and 7MPa, respectively directed in N100 deg E and horizontal, N10 deg E and 60 deg declined from the vertical, and N160 deg W and 30 deg declined from the vertical.
机译:本文描述了一种改进的圆锥形钻孔方法(IMCEBM)及其对初始岩石应力测量的现场应用。 IMCEBM是锥形末端钻孔方法(CEBM)的改进版本。 改进是这样的方式,如1),检查钻孔在锥形端钻孔前面钻孔,2)与钻孔的相同直径超滤波。 通过使用快速的多极边界元法(FMBEM),制备超煤的模拟,并获得通过过挖引起的菌株。 使用菌株,测定从测量菌株到初始岩石应力的转化基质。 现场测量分别在沙质页岩和细粒砂岩的场地成功进行。 初始压缩主应力是例如36,12和7MPa,分别指向N100°E和水平,N10°D和60°从垂直下降,并且N160°W和30°从垂直下降。

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