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    • 2. 发明公开
    • Dynamic subsurface engineering
    • Dynamische Untergrundtechnik
    • EP2431767A2
    • 2012-03-21
    • EP11181092.5
    • 2011-09-13
    • Services Pétroliers SchlumbergerLogined B.V.
    • Brown, Alan LeeBulman, Simon DavidCrick, Martin VincentSagert, RussMathieu, GillesWardell-Yerburgh, Peter
    • G01V1/30E21B49/00
    • G01V11/00E21B49/00
    • An example system includes interconnected modeling modules that share knowledge to create a unified earth model dynamically representing a subsurface site. The system models and may simulate subsurface operations associated with, for example: hydrocarbon production and stimulation, natural gas storage, carbon capture and storage, aquifer maintenance, geothermal energy production, and in-situ leachable ore processing. The system integrates a reporting module, and also an economic module to evaluate cost versus benefit of each subsurface operation. A related example method for performing subsurface engineering includes generating a model of a subsurface site including a geological horizon, obtaining an offset relative to the geological horizon, and locating an operation based on the offset. When field data update the model in real time, positions of 3D objects and 3D surfaces are dynamically updated in the model, including the positions of the modeled operations.
    • 示例系统包括互连的建模模块,其共享知识以创建动态表示地下站点的统一地球模型。 该系统模拟并可以模拟与例如:碳氢化合物生产和刺激,天然气储存,碳捕获和储存,含水层维护,地热能生产和原位可浸出的矿石加工相关的地下作业。 该系统集成了一个报告模块,也是一个经济模块,用于评估每个地下操作的成本与收益。 用于执行地下工程的相关示例方法包括生成包括地质水平的地下站点的模型,获得相对于地质层面的偏移,以及基于偏移定位操作。 当现场数据实时更新模型时,3D对象和3D曲面的位置将在模型中动态更新,包括建模操作的位置。