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Integration of geology, geophysics, and numerical simulation in the interpretation of a well test in a fluvial reservoir

机译:地质物理学,地球物理学和数值模拟的整合在河流水库中井试验中的解释中的解释

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The focus of this paper is the incorporation of geologic and geophysical data in the analysis of pressure tests in a fluvial reservoir. Using a 3,105,851 cell 'porosity cube' derived by seismic and well-log data, this work outlines the steps involved in developing a three-dimensional model with 7,128 cells that was used to estimate reservoir properties (permeability, skin, permeability-porosity relationship, reservoir connectivity, fault factor, etc.). The principal steps involved in developing the reservoir model include:
机译:本文的重点是在河流储层中的压力试验分析中结合地质和地球物理数据。使用由地震和良好的数据数据产生的3,105,851个细胞“孔隙度立方体”,这项工作概述了开发三维模型的步骤,其中用于估计储层性质的7,128个细胞(渗透性,皮肤,渗透性 - 孔隙关系,储层连接,故障因子等)。开发储层模型所涉及的主要步骤包括:

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