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Geomechanical monitoring of caprock and wellbore integrity using fiber optic cable: Strain measurement from the fluid injection and extraction field tests

机译:使用光纤电缆的脚轮和井筒完整性的地质力学监测:流体注入和提取场测试的应变测量

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This paper presents a new method to monitor caprock and wellbore integrity at CO2 storage sites by utilizing the Distributed Fiber Optic Sensing (DFOS). DFOS has an advantage to measure temperature and strain at any point in an unprocessed optical fiber, contrary to the conventional Fiber Bragg Grating (FBG) sensing which measures temperature and strain at a limited number of discrete points along the processed fiber cable. To put the DFOS technique into the practical use at the CO2 storage sites, we measured the frequency shifts of the Rayleigh and Brillouin scattering in an optical fiber attached to a sandstone sample under hydrostatic pressure, and also measured strain of the sample by conventional strain gages simultaneously. We applied the DFOS technique to our filed experiments when injecting and extracting fluid from a shallow well. The shallow well was drilled to a depth of 300m and three optical fiber cables were installed behind well casing for detecting impacted zones along the well depth direction. With this permanent installation behind casing, we successfully detected the deformed zone during the fluid injection and extraction tests. The field results suggest that the DFOS technique can be used in geomechanical monitoring of caprock and wellbore integrity by providing deformation details such as which depth and how much the target layer deformed in subsurface.
机译:本文通过利用分布式光纤感测(DFOS),提出了一种新方法来监测CO2存储站点的CAPROCK和井筒完整性。 DFOS具有优点在未加工的光纤中的任何点处测量温度和应变,与传统的光纤布拉格光栅(FBG)感测到沿着处理过的光纤电缆的有限数量的离散点测量温度和应变。为了将DFOS技术进入CO2存储场所的实际应用,我们测量了在静水压力下连接到砂岩样品的光纤中的瑞利和布里渊散射的频移,并通过常规应变计测量样品的菌株同时。我们将DFOS技术应用于我们从浅井中注入和提取液体时的提交实验。浅井钻到300米的深度,并且在井壳体后面安装了三根光纤电缆,用于沿着孔深度方向检测受冲击区域。通过这种永久安装在外壳后面,我们在流体注入和提取测试期间成功地检测到变形区域。该领域结果表明,通过提供变形细节,如哪个深度和靶层在地下变形的深度和多大程度上,可以使用DFOS技术在脚轮和井筒完整性的地质力学监测中。

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