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Steam-Zone Electrical Characteristics for Geodiagnostic Evaluation of Steamflood Performance.

机译:蒸汽区电气特性对蒸汽驱性能的地理诊断评价。

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An essential part of the development of electrical geodiagnostic techniques for mapping thermal recovery processes is understanding the relationship of formation resisitivity to the thermal recovery process. As a result of laboratory measurements of a one-dimensional steamflood, a preliminary understanding of some of the mechanisms of the electrical resistivity change has been gained. The theory of electrical resistivity of a steamflood is reviewed and used to evaluate the resistivity changes expected. A conceptual electrical model of a steamflooded porous reservoir is presented. This conceptual model is based on a qualitative description of the fluid zones of an ideal heavy oil steamflood. The model assumes that salinity, temperature, and saturation are the important factors controlling the resistivity changes, and that Archie's law applies. It is found that the characteristic of each individual reservoir must be considered before the in situ resistivity changes are predicted, and that the in situ resistivity can either increase or decrease as a result of steamflooding. 25 refs., 5 figs., 2 tabs. (ERA citation 14:021707)

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