Experimental and numerical investigation of coupled radial electroosmotic flow and electric field using pi electrokinetic up-scaled reservoir model
نام عام مواد
[Thesis]
نام نخستين پديدآور
Ancy Susan Koshy
نام ساير پديدآوران
Harid, Noureddine
وضعیت نشر و پخش و غیره
نام ناشر، پخش کننده و غيره
The Petroleum Institute (United Arab Emirates)
تاریخ نشرو بخش و غیره
2015
مشخصات ظاهری
نام خاص و کميت اثر
308
يادداشت کلی
متن يادداشت
Committee members: Al Hammadi, Khalid; Barkat, Braham; Beig, Abdul Rahiman; ElSheakh, Ahmed; Haroun, Mohammed R.
یادداشتهای مربوط به نشر، بخش و غیره
متن يادداشت
Place of publication: United States, Ann Arbor; ISBN=978-1-339-16141-9
یادداشتهای مربوط به پایان نامه ها
جزئيات پايان نامه و نوع درجه آن
M.S.
نظم درجات
Electrical Engineering
کسي که مدرک را اعطا کرده
The Petroleum Institute (United Arab Emirates)
امتياز متن
2015
یادداشتهای مربوط به خلاصه یا چکیده
متن يادداشت
The application of electrokinetic phenomena in the petroleum and environmental engineering has been developing since the last few decades with promising results in both laboratory studies and field pilots. Electrokinetic Enhanced Oil Recovery (EKEOR) is gaining increased popularity due to a number of reservoir-related advantages such as reduced water-cut, reduced HSE concerns, increased reservoir permeability and no depth of limitation. All previous studies have used one-dimensional (1-D) electrode configuration to apply electric field during EK treatment and have consistently proved that recovery enhances 2 to 3 fold owing to electroosmotic mobilization or enhanced viscous drag forces while increasing reservoir permeability. However, there is lack of experimental research conducted on the feasibility of applying multiple electrode configurations in sandstone and carbonate reservoirs to enhance this process. This study closely examines radial electroosmotic flow with the help of an up-scaled laboratory reservoir model designed at the Petroleum Institute to compare the performance of various two-dimensional (2-D) electrode configurations in enhancing electroosmotic flow rate and reservoir permeability while targeting minimum power consumption, induced current density and electrode life.
موضوع (اسم عام یاعبارت اسمی عام)
موضوع مستند نشده
Electrical engineering
اصطلاحهای موضوعی کنترل نشده
اصطلاح موضوعی
Applied sciences;Electric field modeling for ek eor;Electrokinetic eor;Electroosmosis;Radial flow ek eor
نام شخص به منزله سر شناسه - (مسئولیت معنوی درجه اول )