首页> 外文期刊>Bulletin of engineering geology and the environment >The influence of hydrothermal argillization on the physical and mechanical properties of tuffaceous rocks: a case study from the Upper Pauzhetsky thermal field, Kamchatka
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The influence of hydrothermal argillization on the physical and mechanical properties of tuffaceous rocks: a case study from the Upper Pauzhetsky thermal field, Kamchatka

机译:水热静脉化对凝灰岩岩体物理和力学性能的影响 - 以上霸茨基热场,堪察加

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摘要

The development of geothermal sites for electricity production, direct utilization, or tourist destinations has increased in recent decades worldwide. Such development requires investigation of the engineering geological setting, including an assessment of the physical-mechanical properties of rocks. Geothermal regions in the Kuril-Kamchatka arc are composed of Neogene-Quaternary volcanic formations with relatively high strength and deformation properties. Thermal fluids circulating within rocks change their compositions, porosities, and physical-mechanical properties. The most intense alterations occurring in the thermal fields are due to argillization. This study investigates the effects of hydrothermal alteration on the physical-mechanical properties of tuffites in the Upper Pauzhetsky thermal field located in South Kamchatka. The aims are to consider the entire range of hydrothermal argillization and to analyze the relationships between physical-mechanical properties and degrees of alteration. The variations in mineralogy, microstructure, particle size distribution, consistency, and rock properties along the section of the thermal field are studied. The results show that argillic alteration gradually decomposes tuffites to weak clay-rich soils, forming a cover several meters thick. The alteration is accompanied by decreases in strength and rock weakening; minor variations are observed between fresh and altered tuffites, whereas a dramatic reduction in strength occurs when tuffites disintegrate and are converted into clays. The heterogeneity of the clayey layer and the presence of secondary siliceous minerals and residual components of parent rocks are the factors that distinguish hydrothermal clays from sedimentary deposits.
机译:近几十年来,电力生产,直接利用或旅游目的地的地热部位的发展在全球范围内增加。这种发展需要调查工程地质环境,包括评估岩石的物理力学性质。 Kuril-Kamchatka Arc中的地热区域由Neogene-armaternary火山形成,具有相对高的强度和变形性能。在岩石内循环的热流体改变它们的组合物,孔隙率和物理机械性能。在热场中发生的最强烈改变是由于armillization。本研究研究了水热改变对位于堪察加南南汉克卡的上部Pauzhetsky热场的胶合物理力学的影响。目的是考虑整个水热颗粒的范围,并分析物理机械性能与变化程度之间的关系。研究了沿着热场截面的矿物学,微观结构,粒度分布,一致性和岩石性能的变化。结果表明,岩石改变逐渐将胶合物分解为富含粘土的土壤,形成厚度厚的盖子。改变伴随着强度和岩石削弱的减少;在新鲜和改变的胶合物之间观察到微小的变化,而当胶合物崩解并转化成粘土时,会发生显着的强度降低。粘土层的异质性和母岩的第二硅质矿物质和残留成分的存在是区分水热粘土从沉积沉积物中的因素。

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