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Experimental Investigations into CO2 Injection Associated Fracture Behaviour in Shale Caprocks

机译:对页岩脚轮中CO2注射相关骨折行为的实验研究

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Leakage of CO2 through fractures is a risk for the secure storage of CO2. Fracture closure, stress state and fracture geometry will control CO2 leakage rates in storage reservoirs where the seal has been compromised by fractures. This study investigates an acid induced fracture closure remediation technique using a series of laboratory acid injection experiments in shale caprocks. The test aims to reduce the permeability of fractures through induced fracture closure in order to demonstrate the technique as a remedial measure to reduce leakage. In the tests viscous acid is injected through a range of fractured shale caprock samples under confining stress. Preliminary tests on a single sample of shale caprock show that a significant reduction in fracture permeability is achieved using acid injection across a range of confining stresses. CT scans of the fracture show the fracture closure, and appear to suggest that dissolution of asperities on the fracture face may promote fracture closure. Ongoing work will involve testing the technique in a wide range of caprock samples with different mineralogy, artificial fracture surfaces and with gaseous CO2 and CO2 rich brines included in the injected fluids to determine any reduction in the effectiveness of the remediation technique, more extensive analysis of the CT imagery will also be carried out.
机译:CO2通过骨折泄漏是CO2安全储存的风险。断裂闭合,应力状态和断裂几何形状将控制储存储存器中的CO2泄漏速率,其中密封件被裂缝受到裂缝。本研究研究了使用页岩座上的一系列实验室酸注射实验的酸诱导的骨折闭合修复技术。该试验旨在通过诱导骨折闭合来降低骨折的渗透率,以便证明该技术作为减少泄漏的补救措施。在测试中,在限制应力下通过一系列裂缝的页岩脚克样品注入粘性酸。对单个页岩谱样本的初步测试表明,使用酸注射在一系列限制应力中,实现了骨折渗透性的显着降低。裂缝的CT扫描显示断裂闭合,并且似乎表明骨折面上的抑制症的溶解可能促进断裂闭合。正在进行的工作将涉及在具有不同矿物学,人造骨折表面和注射流体中包含的气态CO2和CO 2和CO 2富含盐水的各种脚克样品中的技术进行测试,以确定修复技术的有效性,更广泛地分析也将进行CT图像。

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