首页> 外文期刊>Journal of Volcanology and Geothermal Research >Mechanical and physical properties of hydrothermally altered rocks, Taupo Volcanic Zone, New Zealand
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Mechanical and physical properties of hydrothermally altered rocks, Taupo Volcanic Zone, New Zealand

机译:新西兰陶波火山区热液蚀变岩石的力学和物理性质

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摘要

Mechanical characterization of hydrothermally altered rocks from geothermal reservoirs will lead to an improved understanding of rock mechanics in a geothermal environment. To characterize rock properties of the selected formations, we prepared samples from intact core for non-destructive (porosity, density and ultrasonic wave velocities) and destructive laboratory testing (uniaxial compressive strength). We characterised the hydrothermal alteration assemblage using optical mineralogy and existing petrography reports and showed that lithologies had a spread of secondary mineralisation that occurred across the smectite, argillic and propylitic alteration zones. The results from the three geothermal fields show a wide variety of physical rock properties. The testing results for the non-destructive testing shows that samples that originated from the shallow and low temperature section of the geothermal field had higher porosity (15 - 56%), lower density (1222 - 2114 kg/m~3) and slower ultrasonic waves (1925 - 3512 m/s (v_p) and 818 - 1980 m/s (v_s)), than the samples from a deeper and higher temperature section of the field (1.5 - 20%, 2072 - 2837 kg/m~3, 2639 - 4593 m/s (v_p) and 1476 - 2752 m/s (v_s), respectively). The shallow lithologies had uniaxial compressive strengths of 2 - 75 MPa, and the deep lithologies had strengths of 16 - 211 MPa. Typically samples of the same lithologies that originate from multiple wells across a field have variable rock properties because of the different alteration zones from which each sample originates. However, in addition to the alteration zones, the primary rock properties and burial depth of the samples also have an impact on the physical and mechanical properties of the rock. Where this data spread exists, we have been able to derive trends for this specific dataset and subsequently have gained an improved understanding of how hydrothermal alteration affects physical and mechanical properties.
机译:来自地热储层的热液蚀变岩石的力学特性将有助于人们更好地理解地热环境中的岩石力学。为了表征所选地层的岩石特性,我们从完好的岩心中制备了样品,以进行非破坏性(孔隙度,密度和超声波速度)和破坏性实验室测试(单轴抗压强度)。我们使用光学矿物学和现有的岩相学报告对热液蚀变组合进行了表征,结果表明,岩性具有次生矿化分布,遍及蒙脱石,泥质和丙炔蚀变区。这三个地热场的结果显示出各种物理岩石性质。非破坏性测试的测试结果表明,来自地热田浅低温段的样品孔隙率较高(15-56%),密度较低(1222-2114 kg / m〜3),而超声波较慢波浪(1925-3512 m / s(v_p)和818-1980 m / s(v_s)),比来自更深和更高温度区域的样本(1.5-20%,2072-2837 kg / m〜3) ,2639-4593 m / s(v_p)和1476-2752 m / s(v_s))。浅岩性的单轴抗压强度为2-75 MPa,深岩性的强度为16-211 MPa。通常,由于每个样品产生的蚀变带不同,来自整个油田的多个井的相同岩性样品具有可变的岩石性质。但是,除了蚀变带以外,样品的主要岩石性质和埋藏深度也对岩石的物理和机械性质有影响。在存在这种数据分布的地方,我们已经能够得出该特定数据集的趋势,随后对水热变化如何影响物理和机械特性有了更好的了解。

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