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首页> 外文期刊>Marine and Petroleum Geology >Assessment and geological characterisation of the CO2CRC Otway Project CO2 storage demonstration site: From prefeasibility to injection
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Assessment and geological characterisation of the CO2CRC Otway Project CO2 storage demonstration site: From prefeasibility to injection

机译:CO2CRC Otway项目CO2储存示范点的评估和地质特征:从可行性到注入

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The CO2CRC Otway Project, located in south-eastern Australia, has demonstrated geological storage of CO2 in a depleted natural gas field. Prior to injection, a comprehensive site characterisation study established that the site should meet the requirements of safe and effective storage. In contrast to the conventional methods applied to characterising oil and gas reservoirs for production purposes, CO2 storage site assessments place greater emphasis on injectivity, capacity, and long-term containment. The site location was assessed in the context of accessibility for monitoring activities and impact on local communities and natural resources. Additional well-log data and cores were acquired from the gas field, in conjunction with the drilling of the CRC-1 injector well, in order to reduce the uncertainty surrounding the geological heterogeneity of the reservoir, capacity of the seal to retain CO2, fault seal geomechanics, and regional hydrodynamics. Specialised core analysis revealed that small scale sedimentary features, related to depositional environment impact reservoir quality, CO2 trapping and plume migration behaviour. Based on these effects, a depositional model was established to better understand storage potential away from well control. Finally, a nearby gas storage facility provided a valuable analogue for the project and added confidence that the CO2CRC Otway Project site would be suitable to inject, store and contain CO2 within the technological and economical limits of the project. Following the injection period, long term monitoring of the reservoir, as well as the overlying aquifers, soil, groundwater and the atmosphere above the site, have confirmed the storage concept is effective and that the CO2 is safely contained. As a result, the site characterisation methodology serves as an example for others contemplating CO2 storage into depleted gas fields.
机译:位于澳大利亚东南部的CO2CRC Otway项目已经证明了在枯竭的天然气田中二氧化碳的地质封存。注射之前,需要进行全面的场地特征研究,以确保场地应符合安全有效存储的要求。与用于生产目的来描述油气储层特征的常规方法相比,CO2储存地点评估更加注重注入性,容量和长期围堵。在无障碍环境中评估了地点的位置,以监测活动及其对当地社区和自然资源的影响。结合CRC-1注入井的钻井,从气田获得了更多的测井数据和岩心,以减少围绕储层地质非均质性,密封层保留CO2的能力,断层的不确定性。密封地质力学和区域水动力。专门的岩心分析表明,与沉积环境有关的小规模沉积特征会影响储层质量,CO2捕集和羽流运移行为。基于这些影响,建立了沉积模型,以更好地了解井控之外的储藏潜力。最后,附近的天然气储存设施为该项目提供了有价值的类似物,并增加了人们对CO2CRC Otway项目现场将适合在该项目的技术和经济范围内注入,储存和容纳CO2的信心。在注入期之后,对储层,上覆含水层,土壤,地下水和现场上方的大气层进行了长期监测,证实了储层概念是有效的,并且可以安全地封存二氧化碳。结果,现场表征方法学成为其他人考虑将CO2储存到贫气田中的一个例子。

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