Petroleum and Natural Gas Engineering(Oil and Gas Field Development Engineering)

Jirui Hou

Personal Profile

Unconventional Oil and Gas Science and Technology Research Institute

Ph.D

Researcher

Oil and Gas Field Development Engineering

houjirui@126.com

Research Projects


[1] National Science and Technology Major Project: Research on Foam-assisted Gas Flooding Enhanced Recovery Technology for Fractured Reservoirs(2016ZX05014-004-004);


[2] National Science and Technology Major Project: New Technology for Enhanced Oil Recovery in the Later Stage of Oilfield Exploitation (2011ZX05009-004);




[3] National Science and Technology Major Project: Optimal Experimental Research on Supplementary Energy Injection System (2011ZX05014-003);




[4] National Science and Technology Major Project: Enhanced Oil Recovery Demonstration Project of Daqing Changqian Special High Water Cut Oilfield-Chemical Composite Flooding Surface Combination Optimization Method(2011ZX05052-006-006);




[5] National Science and Technology Major Project: Enhanced Oil Recovery Demonstration Project of Lhasa Apricot High Water-cut Oilfield in Songliao Basin-Research on Composite Flooding Mechanism (2008ZX05052-03);




[6] Project 973: Research and optimization of enhanced oil recovery methods for fractured cave reservoirs (2011CB20100603);




[7] 973 Project: Diffusion mechanism and law study in the process of CO2 displacement (2006CB70580502);




[8] 973 Topic: Formation mechanism of ultra-low interfacial tension under weak alkali/no alkali conditions and its role in oil displacement process (2005CB22130303);




[9] National Natural Science Foundation of China: Research on oil-water interfacial tension change law and residual oil start-up mechanism of ASP composite flooding reservoir (51174216);




[10] National Science and Technology Support Program: Evaluation of CO2 Sequestration and Enhanced Oil Recovery(2012BAC26B02);

Publications


[1] Three-dimensional physical simulation and optimization of water injection of a multi-well fractured-vuggy unit, Petroleum Science, 2016;




[2] In-situ CO2 generation huff-n-puff for enhanced oil recovery: Laboratory experiments and numerical simulations, Journal of Petroleum Science and Engineering, 2016;




[3] Application of organic alkali for heavy-oil enhanced oil recovery (EOR), in comparison with inorganic alkali, Energy & Fuels, 2016;




[4] Determination and controlling of gas channel in CO2 immiscible flooding, Journal of the Energy Institute, 2016;




[5] Residual oil distribution characteristic of fractured-cavity carbonate reservoir after water flooding and enhanced oil recovery by N2 flooding of fractured-cavity carbonate reservoir, Journal of Petroleum Science and Engineering, 2015;




[6] Macroscopic three-dimensional physical simulation of water flooding in multi-well fracture-cavity unit, Petroleum Exploration and Development, 2014;




[7] Evaluation of oil-tolerant foam for enhanced oil recovery: Laboratory study of a system of oil-tolerant foaming agents, Journal of Petroleum Science and Engineering, 2014;




[8] Organic alkali for heavy oil chemical EOR improves the performance over inorganic alkali, SPE International Heavy Oil Conference and Exhibition, 2014;




[9] The pressure-decay method for nature convection accelerated diffusion of CO2 in oil and water under elevated pressures, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2013;




[10] Preparation and application of cationic surfactant ion-selective electrode, Tenside Surfactants Detergents, 2013;