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Rock Stress, Rock Stress Measurements, and the Integrated Stress Determination Method (ISDM)

机译:岩石应力,岩石应力测量和综合应力确定方法(ISDM)

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摘要

The primary objectives of this work are to (1) improve the understanding of the prevailing stress distribution at the Aspo Hard Rock Laboratory (HRL) in SE Sweden by employing an integrated stress determination approach, and in order to accomplish this (2) extend the existing stress integration methodology denominated integrated stress determination method (ISDM; Cornet in Comprehensive Rock Engineering vol 3, Pergamon Press, Oxford, pp 413-432, 1993a). The new developments of the ISDM involve a 12-parameter representation of the regional stress field in the rock mass (i.e., the full stress tensor and its variation with depth) that is applicable to hydraulic stress data (sleeve fracturing, hydraulic fracturing, and hydraulic tests on pre-existing fractures), over-coring data (CSIR- and CSIRO-type of devices), and to combinations of hydraulic and overcoring stress data. For the latter case, the elastic parameters of the overcoring technique may be solved in situ by allowing the hydraulic stress data to constrain them. As a result, the problem then involves 14 model parameters. Results from the study show that the ISDM effectively improves the precision of the prevailing stress field determination and that it is especially powerful for identification of consistencies/inconsistencies in an existing data set. Indeed, this is the very basic premise and goal of stress integration; combine all available data to achieve as complete a characterization of the mechanical stress model as possible, and not to identify a solution that fits only loosely the maximum amount of stress data.
机译:这项工作的主要目标是(1)通过采用综合应力确定方法来提高对瑞典东南部Aspo硬岩实验室(HRL)普遍应力分布的理解,并为此实现(2)扩展现有的应力积分方法称为积分应力确定方法(ISDM; Cornet in全面岩石工程第3卷,Pergamon Press,牛津,第413-432页,1993a)。 ISDM的新发展涉及岩体中区域应力场的12参数表示(即,全应力张量及其随深度的变化),适用于水力应力数据(套管压裂,水力压裂和水力压裂)对先前存在的裂缝进行测试),过度取芯数据(CSIR和CSIRO类型的设备)以及水力和过度取芯应力数据的组合。对于后一种情况,可以通过允许水力应力数据约束过芯技术的弹性参数来原位求解。结果,问题然后涉及14个模型参数。研究结果表明,ISDM有效地提高了当前应力场确定的精度,并且它对于确定现有数据集中的一致性/不一致性特别有力。确实,这是压力整合的最基本前提和目标。合并所有可用数据以尽可能完整地表征机械应力模型,而不是找到仅适合最大应力数据量的宽松解决方案。

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