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Progress in key technologies for evaluating marine shale gas development in China

机译:评价中国海相页岩气开发关键技术的进展

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The Lower Paleozoic Longmaxi and Qiongzhusi Formatiion shale plays were taken as research objects to summarize the geologic and reservoir characteristics of marine shale gas in China. Based on the theory and technology achievements made during the twelfth five-year plan, a key index system was established to evaluate shale gas well production effect in China, and a comprehensive classification was consequently presented by integrating geological statistical indexes and economic evaluation indexes; to characterize the complex fracture network formed by fracturing, a generalized analytical model was established by incorporating fractal and continuum geometry theory to capture the transient behavior of such fractured horizontal well throughout production life. An associated probabilistic analysis, based on the Monte Carlo simulation was presented by linking a probabilistic worksheet with the analytical model, and then used to determine a range of possible outcomes (i.e., EUR, decline rate and production time). Meanwhile, an optimization approach for development parameters, including fractured horizontal segment, fracture geometry (i.e., fracture length, conductivity, number), well spacing and drawdown management was advanced. There are still many unresolved problems on geologic theory, flow mechanism and productivity evaluation method, development technical policy and economic benefits, which limit large-scale and high-efficiency exploitation of shale gas resource in China.
机译:以下古生界龙马溪组和琼竹寺甲级组页岩为研究对象,总结了中国海相页岩气的地质特征和储层特征。根据“十二五”期间取得的理论和技术成果,建立了评价我国页岩气井生产效果的关键指标体系,综合了地质统计指标和经济评价指标,进行了综合分类。为了表征压裂形成的复杂裂缝网络,通过结合分形和连续几何理论建立了一个通用的分析模型,以捕获此类压裂水平井在整个生产寿命中的瞬态行为。通过将概率工作表与分析模型链接起来,提出了基于蒙特卡罗模拟的关联概率分析,然后将其用于确定可能的结果范围(即欧元,下降率和生产时间)。同时,提出了开发参数的优化方法,包括裂缝水平段,裂缝几何形状(即裂缝长度,电导率,数量),井距和井下管理。地质理论,流动机理和产能评价方法,开发技术政策和经济效益等方面仍存在许多未解决的问题,制约了我国页岩气资源的大规模,高效开采。

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