A pore level modeling of heat transfer in SAGD process

سال انتشار: 1394
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 762

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شناسه ملی سند علمی:

CHCONF01_002

تاریخ نمایه سازی: 20 دی 1394

چکیده مقاله:

Steam Assisted Gravity Drainage (SAGD) is a thermal EOR method that uses steam injection from a horizontal well and creates a steam chamber to provide better sweep of the reservoir toward the horizontal production well. Heat transfer plays an important role in SAGD process. Although many experiments and simulations are executed to study this method, the role of the morphology of porous media has not simulated. The main goal of this article as the first study of its kind is to study heat transfer in SAGD process using a pore network mathematical modeling. A 2-D pore network model is created and assumed to be in contact with saturated vapor. A control volume approach is used to study heat transfer through the network. This study is performed for pore networks by solid body material of sandstone and common glass that is used generally for pore level experimental studies and then the effect of porosity and fractures is investigated. It was found that glass micromodels are not reliable to investigate heat transfer in sandstones. Also this study showed that models with lower porosity transfer heat faster. Vertical fractures reduce heat transfer more than the horizontal fractures.

نویسندگان

Reza Taghipour Bibalan

Department of Chemical Engineering, Amirkabir University of Technology

Mitra Dadvar

Department of Chemical Engineering, Amirkabir University of Technology

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  • Butler, R.M., G.S. McNab, H.Y. Lo, 1981. Theoritical studies on ...
  • Queipo, N.V., J.V. Goicochea, S. Pintos, 2002. Surrogate mo deling-based ...
  • Akin, S., 2006. Mathematical modeling of steam-assisted gravity drainage. Computers ...
  • Canbolat, S., S. Akin, A.R. Kovscek, 2004. Nonc ondensable gas ...
  • Barillas, J.L.M., T.V. Dutra Jr, W. Mata, 2006. Reservoir and ...
  • Heidari, M., et al., 2009. Effect of drainage height and ...
  • Al-Bahlani, A.-M. and T. Babadagli, 2009. SAGD laboratory experimental and ...
  • M _ hammadzadeh, O., Chatzis, I., 2010. Pore-Level Investigation of ...
  • Rodriguez, E. and J. Orjuela, 2004. Feasibility to apply the ...
  • Jani, F. and M. Dadvar, 2010. Thre e-dimensionl pore network ...
  • Carslaw, H.S. and J.C. Jaeger, 1959. Conduction of heat in ...
  • Nelson, P.H., 2009. Pore-throat sizes in sandstones, tight sandstones, and ...
  • نمایش کامل مراجع