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   sensitivity analysis of time lapse gravity for monitoring fluid saturation changes in a giant multi-phase gas reservoir located in south of iran  
   
نویسنده khosravi a. ,motavalli-anbaran s-h ,sarallah- zabihi s. ,emami niri m.
منبع فيزيك زمين و فضا - 2019 - دوره : 44 - شماره : 4 - صفحه:53 -61
چکیده    The time lapse gravity method is a widely used technique to monitor the subsurface density changes in time and space. in hydrocarbon reservoirs, the density variations are due to different factors, such as: substitution of fluids with high density contrast, water influx, gas injection, and the variation in reservoir geomechanical behavior. considering the monitoring of saturation changes in the reservoir that cannot be inferred directly by seismic survey, a forward modelling followed by a sensitivity study is performed to examine that in what conditions the saturation changes are detectable by means of 4d gravity method in the understudy reservoir. then static and dynamic models of a giant multiphase gas reservoir are constructed. then, synthetic gravity data are generated after variation of production time intervals and the number of production and injection wells. in addition to detecting the gravity signal for shallower reservoirs with similar characteristics to our reservoir, a sensitivity analysis was conducted for variation in depth of the reservoir. as either the depth of the reservoir decreases or the number of the production wells and production time periods increases, the produced gravity signal is more prone to be detectable by means of modern offshore gravimeters. the gravity signal could be detected with the maximum magnitude range of 9  in different scenarios as a consequence of gaswater substitution, which is consistent with water drive support from surrounding aquifers. therefore, this method is applicable for providing complementary and even independent source of information about the saturation front changes in the understudy reservoir.
کلیدواژه 4d gravity ,water influx ,aquifer ,fluid saturation
آدرس university of tehran, institute of geophysics, department of earth physics, ایران, university of tehran, institute of geophysics, department of earth physics, ایران, national iranian oil company, ایران, university of tehran, institute of petroleum engineering, ایران
 
   Sensitivity analysis of time lapse gravity for monitoring fluid saturation changes in a giant multiphase gas reservoir located in south of Iran  
   
Authors Khosravi Abdolmalek ,Motavalli-Anbaran Seyed Hani ,Sarallah- Zabihi Sajad ,Emami Niri Mohammad
Abstract    The time lapse gravity method is a widely used technique to monitor the subsurface density changes in time and space. In hydrocarbon reservoirs, the density variations are due to different factors, such as: substitution of fluids with high density contrast, water influx, gas injection, and the variation in reservoir geomechanical behavior. Considering the monitoring of saturation changes in the reservoir that cannot be inferred directly by seismic survey, a forward modelling followed by a sensitivity study is performed to examine that in what conditions the saturation changes are detectable by means of 4D gravity method in the understudy reservoir. Then static and dynamic models of a giant multiphase gas reservoir are constructed. Then, synthetic gravity data are generated after variation of production time intervals and the number of production and injection wells. In addition to detecting the gravity signal for shallower reservoirs with similar characteristics to our reservoir, a sensitivity analysis was conducted for variation in depth of the reservoir. As either the depth of the reservoir decreases or the number of the production wells and production time periods increases, the produced gravity signal is more prone to be detectable by means of modern offshore gravimeters. The gravity signal could be detected with the maximum magnitude range of 9  in different scenarios as a consequence of gaswater substitution, which is consistent with water drive support from surrounding aquifers. Therefore, this method is applicable for providing complementary and even independent source of information about the saturation front changes in the understudy reservoir.
Keywords 4D gravity ,Water influx ,Aquifer ,Fluid saturation
 
 

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