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The Atzbach-Schwanenstadt Gas Field - A Potential Site for Onshore CO2-Storage

机译:Atzbach-Schwanenstadt Gas Field - 陆上二氧化碳储存的潜在网站

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Within the framework of the EU-funded CASTOR project the Atzbach-Schwanenstadt gas field in Upper Austria is being investigated as a potential underground CO2 storage site. Potential CO2 sources are a paper mill and a fertiliser plant. The digital geological model ranges from the base of the Hall Series (Miocene) to the Top Eocene, with a special focus on the main reservoir zone ("A4") of the Upper Puchkirchen Series (Oligocene to Miocene). Reservoir properties were stochastically assigned, conditioned by their occurrence in the wells with petrophysical interpretation and by their statistical distribution in the various facies. The reservoir model focuses on the A4 zone and includes only the central part of the field, where gas productivity is best and where a relatively uniform gas-water contact exists. Reservoir parameters were upscaled from the geological model to yield a model size that enables fast simulations. It is expected that injected CO2 will during the potential injection period replace produced gas in the reservoir. So far, approx. 3.2×109 sm3 gas have been produced from the field. Assuming that CO2 can replace all produced gas, this corresponds to a storage capacity of at least 3 million tonnes of CO2.
机译:在欧盟资助的Castor项目的框架内,正在调查上奥地利奥地利atzbach-schwanenstadt气田作为潜在的地下二氧化碳存储网站。潜在的CO2来源是造纸厂和肥料厂。数字地质模型从霍尔系列(中海岛)到顶部eocene的基础,特别关注上部Puchkirchen系列的主储层区(“A4”)(寡烯至中间烯)。储层属性随着岩石物理解释的井中的发生,调节,以及他们在各个相中的统计分布。储存器模型聚焦在A4区域上,仅包括该领域的中心部分,其中天然气生产率最佳,存在相对均匀的气体接触。储层参数从地质模型上升,以产生型号,可以快速模拟。预期注入的CO2将在潜在的注射期间更换储层中的产生气体。到目前为止,大约。 3.2×109 SM3气体已从该领域产生。假设CO2可以取代所有产生的气体,这相当于至少300万吨CO2的存储容量。

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