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- W2024254582 abstract "Abstract A five spot pilot waterflood was designed to investigate the reservoir potential of the Upper Reservoir Section, Arab ‘C’, Dukhan Field, Qatar. The long term plan involves development of these reserves which have been by-passed by the peripheral waterflood presently generated through the Lower Section. The monitoring programme over the five year period of the pilot has consisted of pressure and production/injection testing, open hole and cased hole log surveying and processing, a full suite of laboratory measurements on the produced effluent water and a full programme of data acquisition on an observation well. Radioactive and chemical tracers have been injected and their activity regularly determined in the produced water. These data plus the production water-cuts and salinities represent important evidence in unravelling the complex behaviour of the Upper Reservoir Section. This complexity stems from the highly heterogenous reservoir material and the variable production and injection rates. This paper describes a three pronged approach to analysing these data:– AAnalytical Tracer EvaluationBSingle-Well ModelCThree Dimensional Models of the Region In Part A we apply analytical tools to interpret the tracer and salinity response. By assuming constant production rates, no permeability variation and no cross flow a broad characterisation of the reservoir is obtained. In Part B the variability in the reservoir and injection/production rates can be accommodated by the numerical simulator. Moreover, a tracer option in the simulator is used so that the formation, injection, and tritiated waters can be individually tracked. The results of Part B suggest that a reservoir characterisation based on many separate layers is unnecessary since much of the variability in tracer response can be produced by a few layers. Finally, in Part C by developing a three dimensional 10000 cell model of the five-spot area, based upon the findings from A and B and a previously constructed coarse full field model, the dependency between the different well responses can be more fully understood." @default.
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- W2024254582 date "1989-03-11" @default.
- W2024254582 modified "2023-09-26" @default.
- W2024254582 title "Evaluating Tracer Response of Waterflood Five-Spot Pilot: Dukhan Field, Qatar" @default.
- W2024254582 doi "https://doi.org/10.2118/17989-ms" @default.
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