A Mathematical Modeling of 3D Cubical Geometry Hypothetical Reservoir under the Effect of Nanoparticles Flow Rate,Porosity,and Relative Permeability  

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作  者:Mudasar Zafar Hamzah Sakidin Abida Hussain Loshini Thiruchelvam Mikhail Sheremet Iskandar Dzulkarnain Roslinda Nazar Abdullah Al-Yaari Rizwan Safdar 

机构地区:[1]Department of Fundamental and Applied Sciences,Universiti Teknologi PETRONAS,Bandar Seri Iskandar,32610,Malaysia [2]School of Mathematics,Actuarial and Quantitative Studies(SOMAQS),Asia Pacific University of Technology and Innovation(APU),Kuala Lumpur,57000,Malaysia [3]Center for Research in Enhanced Oil Recovery,Universiti Teknologi PETRONAS,Bandar Seri Iskandar,32610,Malaysia [4]Department of Physical and Mathematical Sciences,Faculty of Science,Universiti Tunku Abdul Rahman,Perak,31900,Malaysia [5]Laboratory on Convective Heat and Mass Transfer,Tomsk State University,Tomsk,634050,Russia [6]Department of Mathematical Sciences,Faculty of Science&Technology,Universiti Kebangsaan Malaysia,Bangi,43600,Malaysia [7]Henan Province International Collaboration Lab of Forest Resources Utilization,School of Forestry,Henan Agricultural University,Zhengzhou,450002,China [8]Higher Institution Centre of Excellence(HICoE),Institute of Tropical Aquaculture and Fisheries(AKUATROP),Universiti Malaysia Terengganu,Kuala Nerus,21030,Malaysia

出  处:《Computer Modeling in Engineering & Sciences》2024年第11期1193-1211,共19页工程与科学中的计算机建模(英文)

基  金:The APC of this article is covered by Research Grant YUTP 015LCO-526。

摘  要:This study aims to formulate a steady-state mathematical model for a three-dimensional permeable enclosure(cavity)to determine the oil extraction rate using three distinct nanoparticles,SiO_(2),Al_(2)O_(3),and Fe_(2)O_(3),in unconventional oil reservoirs.The simulation is conducted for different parameters of volume fractions,porosities,and mass flow rates to determine the optimal oil recovery.The impact of nanoparticles on relative permeability(kr)and water is also investigated.The simulation process utilizes the finite volume ANSYS Fluent.The study results showed that when the mass flow rate at the inlet is low,oil recovery goes up.In addition,they indicated that silicon nanoparticles are better at getting oil out of the ground(i.e.,oil reservoir)than Al_(2)O_(3)and Fe_(2)O_(3).Most oil can be extracted from SiO_(2),Al_(2)O_(3),and Fe_(2)O_(3)at a rate of 97.8%,96.5%,and 88%,respectively.

关 键 词:Unconventional reservoir cubical cavity oil recovery rate reservoir engineering mathematical modeling 

分 类 号:TB383[一般工业技术—材料科学与工程]

 

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