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Impact of chemical alteration on the poromechanical properties of carbonate rocks

机译:化学蚀变对碳酸盐岩孔隙力学性质的影响

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The technical and economic success of a CO2 geological storage project requires the preservation of the site injectivity and integrity properties over its lifetime. Unlike conventional hydrocarbon gas injection, CO2 injection may imply geochemical reactions between acidified pore fluids and target reservoir formations, leading to modifications of their poromechanical properties. To date, the chemical effects on the host rock mechanical behaviour are not satisfactorily taken into account in site-scale numerical models of CO2 injection, mainly due to a lack of quantitative data. The present experimental work aims at characterizing the evolution of carbonate poromechanical properties induced by acid alteration. Unlike standard experimental approaches, the implemented alteration method induces a homogeneous dissolution pattern, which ensures reliable poromechanical measurements on altered samples. These well-controlled alteration conditions allow a proper interpretation of the test results through the macroscopic continuous approach of poromechanics. Petrophysical, geomechanical, and petroacoustic properties of outcrop carbonate samples have been measured for different levels of alteration to mimic long-term exposure to reactive brine. The obtained experimental data show clear trends of chemically induced mechanical weakening. Nuclear magnetic resonance measurements and microscanner imaging performed before and after alteration have provided complementary insights into the alteration effects at the microscopic scale.
机译:CO2地质封存项目的技术和经济成功需要在其生命周期内保留现场的注入性和完整性。与常规的烃类气体注入不同,CO2注入可能暗示着酸化的孔隙流体和目标储层之间的地球化学反应,从而导致其岩石力学特性发生了变化。迄今为止,由于缺乏定量数据,在现场规模的二氧化碳注入数值模型中并未令人满意地考虑到对基质岩石力学行为的化学影响。目前的实验工作旨在表征由酸蚀引起的碳酸盐岩石力学性质的演变。与标准实验方法不同,已实施的变更方法会产生均匀的溶出模式,从而确保对变更后的样品进行可靠的物点力学测量。这些控制良好的变更条件允许通过宏观力学连续方法来正确解释测试结果。已经测量了露头碳酸盐样品的岩石物理,地质力学和岩石声学特性,以模拟不同程度的变化,以模拟长期暴露于活性盐水中。获得的实验数据表明化学诱导的机械削弱的明显趋势。蚀变之前和之后进行的核磁共振测量和显微扫描仪成像提供了微观尺度上蚀变效果的补充见解。

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