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首页> 外文期刊>Rock Mechanics and Rock Engineering >In Situ Stresses in Borehole Blanche-1/South Australia Derived from Breakouts, Core Discing and Hydraulic Fracturing to 2 km Depth
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In Situ Stresses in Borehole Blanche-1/South Australia Derived from Breakouts, Core Discing and Hydraulic Fracturing to 2 km Depth

机译:破裂,岩心爆破和水力压裂至深度2 km引起的Blanche-1 /南澳大利亚钻孔原位应力

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摘要

The development of Hot-Dry Rock (HDR) geothermal energy in Australia with drillings to some kilometres depth yields an impetus for deep stress logging. For the Olympic Dam HDR-project, borehole Blanche-1 was drilled to almost 2 km depth and provided the possibility to estimate the in situ stresses within the granitic borehole section by the analysis of borehole breakouts and core discing, as well as by hydraulic fracturing combined with acoustic borehole televiewer logging for fracture orientation determination. Although the stress magnitudes derived by the different methods deviate significantly, they clearly indicate for the depth range between 800 and 1,740 m a compressional stress regime of S v ≤ S h < S H and a consistent East–West orientation of maximum horizontal compression in agreement with existing stress data for Australia. The minor horizontal stress S h derived from the hydraulic fracturing closure pressure values is about equal to the overburden stress and may be regarded as most reliable.
机译:在澳大利亚发展热干岩(HDR)地热能并进行几公里深的钻探,为深层压力测井提供了动力。对于奥林匹克大坝HDR项目,钻探了Blanche-1钻孔,深度接近2 km,并提供了通过分析钻孔裂口和岩心盘以及水力压裂来估计花岗岩钻孔段内原位应力的可能性。结合声学钻孔远景测井仪确定裂缝方向。尽管通过不同方法得出的应力幅值明显不同,但它们清楚地表明了S v ≤S h H 和最大水平压缩的一致东西方向,与澳大利亚现有的应力数据一致。从水力压裂闭合压力值得出的较小水平应力S h 大约等于上覆应力,可以认为是最可靠的。

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