基于测井数据和实验室测量的应力状态测定——波兰上西里西亚煤盆地东南部的一口煤层气井

IF 0.4 Q4 ENVIRONMENTAL SCIENCES Geology, Geophysics and Environment Pub Date : 2020-10-16 DOI:10.7494/geol.2020.46.2.77
M. Kępiński
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引用次数: 0

摘要

本研究的主要目的是提出考虑应力边界模型、孔隙弹性水平应变模型和有效应力比法的水平应力剖面计算方法,并结合井筒破坏进行标定。利用测井资料和试井资料,对上西里西亚煤田东南部的一口井进行了力学地球模型(MEM)参数估算。在油气实践中,测井导出的水平井应力通常被视为地质力学建模的最终结果。一种不太流行的估计水平应力的方法是基于Kirsch方程,并结合在微成像仪或六臂卡尺上观察到的压缩和拉伸破坏。利用这种方法,当环向应力超过地层的抗拉强度时,就会产生张性裂缝,当环向应力超过地层的抗压强度时,就可以识别出裂缝。该方法的优点是可以在不进行原位应力测量的情况下运行。每次在可用数据集中进行图像日志和偶极子声波测量时,都需要观察故障区域和MEM,建议使用该工作流。
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Determination of stress state based on well logging data and laboratory measurements – a CBM well in the southeastern part of the Upper Silesian Coal Basin (Poland)
The main objective of this study is to present calculation methods of horizontal stress profiles, taking into account the stress boundaries model, poro-elastic horizontal strain model and the effective stress ratio approach , using calibration with wellbore failure. The mechanical earth model (MEM) parameters from log measurements and well testing data were estimated for a well located in the southeastern part of the Upper Silesian Coal Basin. Log-derived horizontal stresses of the well are commonly treated as the final product of geomechanical modelling in oil and gas practices. A less popular method for estimating horizontal stresses is based on Kirsch equations juxtaposed with compressional and tensile failure observed on a micro-imager or six-arm caliper. Using this approach, horizontal stresses are determined based on the fact that when hoop stresses exceed the formation's tensile strength, tensile fractures are created, and when those stresses exceed the compressive strength of the formation, breakouts can be identified. The advantage of this method is that it can be run without in situ stress measurements. The presented workflow is recommended every time there is an image log and dipole sonic measurement in the available dataset, both being necessary to observe the failure zones and MEM.
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