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A New Practical Approach to Building Tight Reservoir Development Integration Data Model in China

机译:一种建立我国紧密水库开发集成数据模型的新实践方法

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The integration data model between geology and engineering is proposed to tackle the key issue of improving average well production by making development plans in a reverse manner and conducting dynamic researches that have foresight, target ability, forecast ability, guidability, pragmaticality, and time effectiveness, accompanied by their instant applications. The model takes 3D geologic models as the core and the unified investigations of geology and reservoir as the foundation, with the complicated relationships and operation difficulties at all development phases considered. All sections are logically combined with each other and are scheduled in a global way where the integration between geology and engineering is taken as the guide, reservoir stimulation as the focus, maximizing production as the target, and factory-like operation as the measure. The fundamental geological and engineering factors that affect the productivity is analyzed, and the adaptivities of well completion and fracturing techniques are systematically assessed with in-depth investigations into the reservoir physical properties, geomechanics, fracture features, well layout and drilling, reservoir stimulation, and liquid discharge for production, et al. Assisted by effective organization, management, and operation practice, rapid accumulation and enrichment of operation experiences and multi-disciplined knowledge covering well drilling and cementation, fracturing, and production and its test production are achieved. Economic development is fulfilled in tight reservoirs by hierarchically and dynamically optimizing engineering efficiency and development profit that arise from continually adjusting and perfecting technical projects related to well drilling, fracturing, and so on.
机译:提出了地质与工程之间的集成数据模型,通过以相反的方式制定开发计划,并进行了具有远见,目标能力,预测能力,可引导性,务实和时间效率的动态研究,解决了改善平均生产的关键问题伴随着他们的即时申请。该模型以3D地质模型为核心和地质和水库统一调查作为基础,在考虑所有开发阶段的关系和运行困难。所有部分都彼此逻辑地组合,并按全球方式调度,其中地质和工程之间的集成作为指导,水库刺激作为焦点,最大化生产为目标,以及作为衡量的工厂形式。分析了影响生产率的基本地质和工程因素,并系统地评估了井完成和压裂技术的适应性,并深入调查了储层物理性质,地质力学,裂缝特征,井布局和钻井,水库刺激和储层和钻井生产等液体排放等。通过有效的组织,管理和运营实践,迅速积累和丰富的运营经验以及覆盖钻井和胶泥,压裂和生产的多学科知识以及其测试生产。经济发展通过分层和动态优化工程效率和开发利润,从而从不断调整和完善与井钻孔,压裂等相关技术项目的工程效率和开发利润进行了动态。

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