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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Enhanced deformation of limestone and sandstone in the presence of high Pco2 fluids
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Enhanced deformation of limestone and sandstone in the presence of high Pco2 fluids

机译:在高Pco2流体存在下,石灰石和砂岩的变形增强

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Geological repositories subject to the injection of large amounts of anthropogenic carbon dioxide will undergo chemical and mechanical instabilities for which there are currently little experimental data. This study reports on experiments where low and high P co 2 (8 MPa) aqueous fluids were injected into natural rock samples. The experiments were performed in flow-through triaxial cells, where the vertical and confining stresses, temperature, and pressure and composition of the fluid were separately controlled and monitored. The axial vertical strains of two limestones and one sandstone were continuously measured during separate experiments for several months, with a strain rate resolution of 10?11 s?1. Fluids exiting the triaxial cells were continuously collected and their compositions analyzed. The high P co 2 fluids induced an increase in strain rates of the limestones by up to a factor of 5, compared to the low P co 2 fluids. Injection of high P co 2 fluids into the sandstone resulted in deformation rates one order of magnitude smaller than the limestones. The creep accelerating effect of high P co 2 fluids with respect to the limestones was mainly due to the acidification of the injected fluids, resulting in a significant increase in solubility and reaction kinetics of calcite. Compared to the limestones, the much weaker response of the sandstone was due to the much lower solubility and reactivity of quartz in high P co 2 fluids. In general, all samples showed a positive correlation between fluid flow rate and strain rate. X-ray tomography results revealed significant increases in porosity at the inlet portion of each core; the porosity increases were dependent on the original lithological structure and composition. The overall deformation of the samples is interpreted in terms of simultaneous dissolution reactions in pore spaces and intergranular pressure solution creep.
机译:注入大量人为二氧化碳的地质库将经历化学和机械不稳定,目前尚缺乏实验数据。这项研究报告了将低和高P co 2(8 MPa)水性流体注入天然岩石样品的实验。实验在流通的三轴单元中进行,其中垂直和限制应力,温度,压力和流体成分分别受到控制和监控。在单独的实验中连续数月连续测量了两个石灰岩和一个砂岩的轴向垂直应变,应变速率分辨率为10?11 s?1。连续收集离开三轴孔的流体并分析其组成。与低P co 2流体相比,高P co 2流体引起石灰石的应变率增加高达5倍。向砂岩中注入高P co 2流体会导致变形速率比石灰石小一个数量级。高P co 2流体相对于石灰石的蠕变加速作用主要是由于注入流体的酸化,导致方解石的溶解度和反应动力学显着提高。与石灰石相比,砂岩的响应要弱得多,这是由于石英在高P co 2流体中的溶解度和反应性低得多。通常,所有样品在流体流速和应变率之间显示出正相关。 X射线断层扫描结果表明,每个岩心入口处的孔隙度均显着增加。孔隙率的增加取决于原始的岩性结构和组成。样品的整体变形是根据孔空间中的同时溶解反应和晶间压力溶液蠕变来解释的。

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