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Analysis of fault leakage from Leroy underground natural gas storage facility, Wyoming, USA

机译:美国怀俄明州勒洛伊地下天然气存储设施的故障泄漏分析

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Leroy natural-gas storage site is an anticlinal, fault-bounded, aquifer-storage system located in Wyoming, USA. Based on its abundant data, uncontrolled leakage history and subsequent control by the facility operators, a modeling framework was developed for studying reservoir behavior, examining pressure and gas-inventory histories, as well as gas and brine leakage, and evaluating the sensitivity of that behavior to uncertainty about reservoir properties. A three-dimensional model capturing the bounding fault, layered geologic stratigraphy, and surface topography was calibrated by history data of reservoir pressure and gas inventory. The calibrated model predicted gas arrival at the ground surface that was consistent with the timing of observed gas bubbling into a creek. A global sensitivity analysis was performed to examine the parameters influencing fault leakage, and a geomechanical stability analysis was conducted to investigate the likelihood of fault reactivation. In general, it is shown that a discrete leakage pathway is required to explain the observed gas leakage and its subsequent operational control by reducing reservoir pressures. Specifically, the results indicate that fault leakage is a plausible explanation for the observed gas leakage. The results are relevant to other natural-gas storage sites, as well as other subsurface storage applications of buoyant fluids, such as CO2.
机译:Leroy天然气存储站点是位于美国怀俄明州的一个背斜,断层界定的含水层存储系统。基于其丰富的数据,不受控制的泄漏历史以及设施运营商的后续控制,开发了一个建模框架,用于研究油藏行为,检查压力和天然气库存历史以及天然气和盐水泄漏,并评估该行为的敏感性。不确定储层性质。利用储层压力和天然气储量的历史数据,对捕获边界断层,分层地质地层和地貌的三维模型进行了校准。校准模型预测的气体到达地面的时间与观察到的气体冒泡进入小溪的时间一致。进行了整体敏感性分析以检查影响断层渗漏的参数,并进行了地质力学稳定性分析以调查断层重新激活的可能性。通常,表明需要一个离散的泄漏路径来解释所观察到的气体泄漏及其通过降低储层压力而进行的后续控制。具体而言,结果表明故障泄漏是观察到的气体泄漏的合理解释。该结果与其他天然气存储地点以及诸如CO2之类的浮力流体的其他地下存储应用有关。

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