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Big Loop Technology in Modeling Paleozoic Traps of the Bolshekinelsky Fault Zone: A Case Study

机译:Bolshekinelsky故障区古生代陷阱建模的大环技术 - 以案例研究

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Construction of up-to-date reservoir models depends on the input data,the quality of the geologic,geophysical and petrophysical field data,as well as utilized technology.In case of limited or poor geological and petrophysical data geological modeling could result in several different variants or reservoir model.When making a decision according to one of the possible variants all available data as well as regional geology and tectonic information of the region should be taken in account.For the developing fields relevance of geological model is checked at the stage of hydrodynamic modeling when matching to history data.Work on the project in such cases consists of several iterations and implies specialized software and close collaboration between specialists.Advanced technologies have a wide range of modeling tools,which constantly evolve to ensure the speed and efficiency of their use.The Big Loop solution integrates static and dynamic model uncertainty under one streamlined workflow.
机译:最新水库模型的构建取决于输入数据,地质,地球物理和岩石物理领域数据的质量,以及利用技术。在有限或地质和岩石物理数据地质建模的情况下可能导致几种不同的情况变型或储层模型。根据可能的变体之一进行决定,应考虑到该地区的所有可用数据以及区域地质和构造信息。对于地质模型的发展领域,在阶段检查了地质模型的相关性与历史数据相匹配时的流体动力学建模。此类案例中的项目组成包括几个迭代,并意味着专业的软件和专家之间的密切合作.Advanced技术具有广泛的建模工具,这不断发展,以确保其速度和效率使用。在一个简化的工作流程下,大环路解决方案集成了静态和动态模型不确定性。

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