»Research Interests 1. Oil microbes µbial oil recovery theory and technology; 2. Oil and gas seepage theory and reservoir numerical simulation method; 3. High pour-point oil efficient development theory and method of heavy oil; 4. The polymer elastic microsphere of deep displacement technology; 5. Unconventional oil and gas high efficiency development theory and technology; 6. Environmental engineering problems in the field of oil and gas development.
»Courses Offered 1.Seepage Flow Mechanics I; 2.Seepage Flow Mechanics II; 3. Oil and Gas Percolation Mechanics; 4.Seepage Physical; 5.Petroleum Reservoir Physics; 6.Petroleum Reservoir Physics; 7.General Introduction of Petroleum Engineering
»Research Projects 1. 2013-2014, The key techniques of directional control microbial oil recovery. 2. 2012-2013, The efficiency test evaluation of microbial oil displacement in Changqing oilfield. 3. 2012-2013, The failure cause of zonal injection and improving methods in Qudi oilfield. 4. 2012-2013, Numerical simulation of microbial flooding in region 36-1, Suizhong oilfield. 5. 2012-2013, Pore-scale elastic microspheres morphology research and pressure-bearing mechanism analysis in reservoir temperature and pressure. 6. 2011-2013, The seepage mechanism simulation research of pore scale��s elastic microspheres. 7. 2011-2012, The working test and management system of screw pump well. 8. 2011-2012, Percolation characteristic and improved recovery mechanism of elastic microspheres system. 9. 2011-2012, Numerical simulation of microbial flooding to improve oil recovery in region Nanpu 35-2-7. 10. 2010-2011, Numerical simulation of endogenous microbial flooding in region Zhan 3 (sub-Project 863). 11. 2009-2010, The profile control and oil displacement technology research of polymer elastic microsphere in Xinjiang oilfield. 12. 2009-2010, Hydrothermal catalytic pyrolysis of heavy oil to reduce viscosity under low temperature condition. 13. 2008-2010, The comprehensive matching production technology for low permeability and high pour-point oil reservoir. 14. 2009-2009, Enhanced oil recovery technology in thin oil low permeability fracture reservoir. 15. 2008-2009, The technology application of cavitation acoustic magnetic coupling to control paraffin. 16. 2008-2009, The synthesis and characterization of rock pore-scale polymer gel microspheres. 17. 2007-2009, Online profile control and flooding technology of pore-scale polymeric microspheres. 18. 2007-2009, Improve oil recovery technology after polymer flooding. 19. 2007-2009, Microbial rheological fluid expansion and microcosmic oil displacement mechanism. 20. 2007-2008, Profile control flooding technology by enrichment of microbial sludge. 21. 2007-2008, Numerical simulation and project design of indigenous microbial flooding. 22. 2006-2007, Microbial flooding pilot test after polymer flooding in center region 1, Gudao oilfield. 23. 2005-2006, The theory and method of air assisted Microbial oil displacement. 24. 2004-2005, Formula and experimental design of foam complex flooding. 25. 2004-2005, Profile control oil displacement experiment of microorganism producing polymer. 26. 2004-2004, Plugging experiments of polymer microspheres. 27. 2003-2004, The software development of fine reservoir displacement simulation. 28. 2002-2003, Microbial seepage law research. 29. 2000-2001, The countermeasures of Sand production prediction and prevention in Dagang oilfield. 30. 1999-2000, The microbial enhanced recovery mechanism research. 31. 1998-2000, The acoustic technology to control paraffin. 32. 1999-2000, The depth profile control mechanism of compound ion polymer. 33. 1998-2000, The electric heating oil recovery technique 34. 1999-2000, The CAI courseware of permeation fluid mechanics. 35. 1998-2000, The acoustic augmented injection technology.
»Paper and Publications Publication: [1] Zhang Jianguo, Lei Guanglun, Zhang Yanyu. Oil and gas percolation mechanics[M]. Dong Ying: China University of Petroleum Press. [2] Lei Guanglun. The new indepth profile control and oil displacement technology by using pore-scale elastic microspheres[M]. Dong Ying: China University of Petroleum Press. Software: [1] Yao Chuanjin, Lei Guanglun, Jiang Baoyun, Li Lei, Gao Xuemei. High pour-point oil wellbore electric heating mining optimization design software[CP]. Register number: 2013SR011843. [2] Yao Chuanjin, Lei Guanglun, Li Wenzhong, Cheng Mingming, Jiang Baoyun, Peng Shangqian. Working condition test and management system of screw pump well[CP]. Register number: 2013SR011847. Paper: [1] Jia Xiaofei, Lei Guanglun, Li Huirong, et al. Migration and plugging properties of pore-scale elastic microsphere[J]. Fault-Block Oil & Gas Field, 2010, 17(2): 219-221. [2] Jia Xiaofei, Lei Guanglun, Yin Jinhuan, et al. The Relationship between Pore-Scale Elastic Microsphere and Formation Matching[J]. Petroleum Drilling Techniques, 2011, 39(4): 87-89. [3] Lei Guanglun, Li Lingling, H.A.Nasr-El-Din. A new gel aggregates for water shut-off treatments[C]. Paper No. SPE129960, 2010 SPE Improve Oil Recovery Symposium, Tulsa, 24-28 April, 2010. [4] Wu Chuan, Lei Guanglun, Yao Chuanjin, et al. In situ upgrading extra-heavy oil by catalytic aquathermolysis treatment using a new catalyst based anamphiphilic molybdenum chelate[A]. SPE International Oil and Gas Conference and Exhibition in China(IOGCEC)[C]. Society of Petroleum Engineers, 2010: 374-382. [5] Lei Guanglun, Li Lingling, H.A.Nasr-El-Din. New gel aggregates to improve sweep efficiency during water flooding[J]. SPE Reservoir Evaluation and Engineering, 2011, 14(1): 120-128. [6] Wu Chuan, Lei Guanglun, Yao Chuanjin. et al. Mechanism for reducing the viscosity of extra-heavy oil by aquathermolysis with an amphiphilic catalyst[J]. Journal of Fuel Chemistry and Technology, 2010, 38(6): 684-690. [7] Wu Chuan, Lei Guanglun, Yao Chuanjin. et al. The hydrothermal catalytic pyrolysis reaction of viscosity reduction of heavy oil by nuclear magnetic resonance (NMR)[J]. Journal of Oil and Gas Technology, 2011, 33(1): 311-314. [8] Wu Chuan, Lei Guanglun, Yao Chuanjin. et al. Influence of nano-nickl catalyst on viscosity reduction of Shengli extra-heavy oil by aquathermolysis[J]. Journal of China University of Petroleum, 2011, 35(1): 164-168. [9] Wu Chuan, Lei Guanglun, Yao Chuanjin. et al. Property changes of extra-heavy oil before and after catalytic aquathermolysis[J]. Special Oil and Gas Reservoir, 2011, 18(1): 101-104. [10] Wu Chuan, Lei Guanglun, Yao Chuanjin. et al. An optimization calculation of electric heat tracing for high-pour-point-oil wells[J]. Acta Petrolei Sinica, 2010, 31(5): 843-848. [11] Yao Chuanjin, Lei Guanglun, Zhang Xiao, et al. Study on rheological properties of high-pour-point oil in Weibei oilfield[J]. Petroleum Geology and Recovery Efficiency, 2011, 18(1): 63-66. [12] Yao Chuanjin, Lei Guanglun, Wu Chuan, et al. Hot water injection to develop Weibei high pour-point oil reservoir[J]. Oil-Gas Field Surface Engineering, 2011, 24(2): 14-17. [13] Yao Chuanjin, Lei Guanglun, Jiang Yunbao, et al. Wellbore-temperature distribution calculation and of flow pattern changing analysis in high pour-point oil wells[J]. Oil Drilling & Production Technology, 2011, 33(3): 42-46. [14] Yao Chuanjin, Lei Guanglun, Wu Chuan, et al. Study of the factor impacting on wellbore temperature in high pour oil production[J]. Petroleum Drilling Techniques, 2011, 39(5): 74-78. [15] Zhangxiao, Lei Guanglun, Yao Chuanjin, et al. The influence of shearing of high pour-point oil solidification characteristics[J]. Oil-Gas Field Surface Engineering, 2011, 24(9): 16-18. [16] Li Wenzhong, Lei Guanglun, Yao Chuanjin, et al. Study on fracture of drilling cuttings re-injection offshore[J]. Science Technology and Engineering, 2012, 12(2): 300-302. [17] Lei Guanglun, Li Wenzhong, Jia Xiaofei, et al. Study of influencing factors on pore-scale elastic microspheres flooding[J]. Petroleum Geology and Recovery Efficiency, 2012, 19(2): 41-43. [18] Pang Jin, Lei Guanglun, Liu Hong, et al. Material balance method to evaluate the interference between the gas well[J]. Science Technology and Engineering, 2012, 12(26): 6787-6789. [19] Pang Jin, Lei Guanglun, Zhang Liya, et al. The study on mathematical model of fluid flow through porous medium about multi-layer fault block oil reservoir coupling with benching-horizontal well[A]. Proceedings-4th International Conference on Computational and Information Sciences(ICCIS 2012)[C]. United States: IEEE Computer Society, 2012: 187-190. [20] Lei Guanglun, Yao Chuanjin, Wu Chuan, et al. Study on acoustic cavitation and magnetic coupling wax control technology[J]. Petroleum Science and Technology, 2011, 29(20): 2142-2150. [21] Yao Chuanjin, Lei Guanglun, Ma Jiye, et al. Experiment and simulation of indigenous microbial enhanced oil recovery(IMEOR)[A]. SPE International Petroleum Technology Conference[C]. Society of Petroleum Engineers, 2012: 321-332. [22] Yao Chuanjin, Lei Guanglun, Li Wenzhong, et al. An experiment and simulation of elastic microspheres enhanced oil recovery(EMEOR)[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2012, 34(8): 692-701. [23] Yao Chuanjin, Lei Guanglun, Ma Jiye, et al. Laboratory experiment, modeling and field application of indigenous microbial flooding[J]. Journal of Petroleum Science and Engineering, 2012, 90-91: 39-47. [24] Yao Chuanjin, Lei Guanglun, Li Lei, Gao Xuemei. Selectivity of pore-scale elastic microspheres as a novel profile control and oil displacement agent[J]. Energy & Fuels, 2012, 26(8): 5092-5101. [25] Yao Chuanjin, Lei Guanglun, Li Lei, Gao Xuemei. Preparation and characterization of polyacrylamide nanomicrospheres and its profile control and flooding performance[J]. Journal of Applied Polymer Science, 2013, 127(5): 3910-3915. [26] Yao Chuanjin, Lei Guanglun. Preparation and characterization of micron-sized elastic microspheres as a novel profile control and flooding agent[A]. Advanced Materials Research-Material Research and Applications[C]. Switzerland: Trans Tech Publications, 2014: 257-261. [27] Yao Chuanjin, Lei Guanglun, Gao Xuemei, Li Lei. Study on indepth profile control and flooding of pore-scale elastic microspheres under heterogeneous condition[J]. Petroleum Geology and Recovery Efficiency, 2012, 19(5): 61-64. [28] Yao Chuanjin, Li Lei, Lei Guanglun, Gao Xuemei. Study on Plugging Performance of Pore-scale Elastic Microspheres[J]. Science Technology and Engineering, 2012, 12(6): 1244-1247. [29] Yao Chuanjin, Lei Guanglun, Gao Xuemei. Deep Profile Control and Flooding Performance of Throat-scale Elastic Microspheres[J]. Journal of Southwest Petroleum University (Science & Technology Edition), 2013, 35(4): 114-120. [30] Yao Chuanjin, Lei Guanglun, Gao Xuemei, et al. Rheological properties of pore-scale elastic microspheres profile control and flooding system[J]. Petroleum Geology and Recovery Efficiency, 2014, 21(5): 55-58. [31] Yao Chuanjin, Lei Guanglun, Gao Xuemei, Li Lei. Controllable preparation, rheology and plugging property of micron-grade polyacrylamide microspheres as a novel profile control and flooding agent[J]. Journal of Applied Polymer Science, 2013, 30(2): 1124-1130. [32] Yao Chuanjin, Lei Guanglun, Cheng Mingming. A novel enhanced oil recovery technology using pore-scale elastic microspheres after polymer flooding[J]. Research Journal of Applied Sciences, Engineering and Technology, 2013, 6(19): 3634-3637. [33] Li Lei, Gao Xuemei, Lei Guanglun, Wei Xiaodong. Novel profile control treatment using pore-scale polymer elastic microspheres[A].Materials Science and Technology II[C]. Switzerland: Trans Tech Publications, 2013: 413-417. [34] Li Lei, Lei Guanglun, Yao Chuanjin, Gao Xuemei. Study on profile control effects of polymer and elastic microspheres binary complex slug[J]. Science Technology and Engineering, 2013, 13(9): 43-47. [35] Li Lei, Lei Guanglun, Yao Chuanjin, Gao Xuemei. Study on reservoir diversion adjustment ability of the pore-scale elastic microspheres[J]. Science Technology and Engineering, 2013, 13(17): 27-31. [36] Xu Hui, Lin Chengyan, Lei Guanglun, et al. Remaining oil distribution law and potential tapping measures of subaqueous distributary channel singles and body[J]. Journal of China University of Petroleum (Edition of Natural Science), 2013, 37(2): 14-20. [37] Pang Jin, Lei Guanglun, Liu Hong. Seepage model research of multi-layer fault block reservoir of horizontal steps[J]. Science Technology and Engineering, 2013, 13(24): 184-189. [38] Pang Jin, Lei Guanglun, Liu Hong, et al. Injection well location optimization method by position shifting[J]. Journal of Computational Information Systems, 2013, 9(14): 5727-5734. [39] Pang Jin, Lei Guanglun, Liu Hong, et al. Recent patents on adjoint method-based real-time dynamic water injection optimization[J]. Recent Patents on Computer Science, 2013, 6(2): 145-152. [40] Pang Jin, Lei Guanglun, Zhang Yalong, et al. The experimental evaluation of light saturated oil reservoir through gas injection[J]. Energy Education Science and Technology Part A: Energy Science and Research, 2014, 32(4): 2561-2572. [41] Pang Jin, Lei Guanglun, Liu Hong, et al. Optimization of WAG injection of light saturated oil reservoir[J]. Energy Education Science and Technology Part A: Energy Science and Research, 2014, 32(5): 4087-4094. [42] Pang Jin, Lei Guanglun, Zhang Liya, et al. The study on mathematical model of fluid flow through porous medium about multi-layer fault block oil reservoir coupling with benching-horizontal well[A]. Proceedings-4th International Conference on Computational and Information Sciences, ICCIS 2012[C]. IEEE Computer Society, 2012: 187-190. [43] Wu Chuan, Su J., Zhang R., Lei Guanglun, Cao Yanbin. The use of a nano-nickel catalyst for upgrading extra-heavy oil by an aquathermolysis treatment under steam injection conditions[J]. Petroleum science and technology, 2013, 31(21): 2211-2218. [44] Cheng Mingming, Lei Guanglun, Gao Jianbo. Study on the influence of microbial action on the properties of porous rock and formation fluid[A]. Chemical Engineering III-Proceedings of the 3rd SREE Conference on Chemical Engineering[C]. Netherlands: Taylor & Francis, 2014: 135-141. [45] Cheng Mingming, Lei Guanglun, Liu Jianying, et al. Laboratory research on enhancing oil recovery of three bacteria D1-3[A]. Advanced Materials Research-Biotechnology, Chemical and Materials Engineering III[C]. Switzerland: Trans Tech Publications, 2014: 455-458. [46] Cheng Mingming, Lei Guanglun, Gao Jianbo, et al. Study on synthesis of polyacrylamide microspheres and its sealing characteristics of drilling fluid[J]. Research Journal of Applied Sciences, Engineering and Technology, 2014, 7(6): 1217-1222. [47] Liu Jianying, Cheng Mingming, Lei Guanglun, et al. Theory and application of the scaling laws for physical modeling for horizontal well steam assisted gravity flooding[J]. Science Technology and Engineering, 2014, 14(12): 32-36. [48] Cheng Mingming, Lei Guanglun, Gao Xuemei, et al. Influence of injection parameter on microbial enhanced oil recovery[J]. Oil and Gas Chemical Industry, 2014, 43(3): 287-291. [49] Yao Chuanjin, Lei Guanglun, Lawrence M. Cathles, Tammo S. Steenhuis. Pore-scale investigation of micron-size polyacrylamide elastic microspheres (MPEMs) transport and retention in saturated porous media[J]. Environmental Science & Technology, 2014, 48(9): 5329-5335. [50] Cheng Mingming, Lei Guanglun, Gao Jianbo, et al. Laboratory experiment, production performance prediction model, and field application of multi-slug microbial enhanced oil recovery[J]. Energy & Fuels, 2014, 28(10): 6655-6665. [51] Li Lei, Lei Guanglun, Wei Xiao-dong, Wang Hongsheng. Study on Pollution Sources and Prevention Measures of injection water in Qudi Oilfield[J]. Oil and Gas Chemical Industry, 2014, 43(5): 564-569. [52] Cheng Mingming, Xia Tian, Lei Guanglun, et al. Development index prediction of multi-slug microbial flooding in low permeability reservoir[J]. Journal of China University of Petroleum (Edition of Natural Science), 2014, 38(6): 113-120. [53] Lei Guanglun, Yao Chuanjin, Jiang Baoyun, et al. A New Method of Determining Well Spacing and Fracture by Using Starting Pressure Gradient, 2015, 15(10): 87-91. [54] Wang Hongsheng, Lei Guanglun, Li Lei. Water quality analysis and scaling law research in injection well[C]. 2015 International Field Exploration and Development Conference, Xi'an, China, September 20-21, 2015. [55] Yao Chuanjin, Lei Guanglun, Hou Jian, Xu Xiaohong, Wang Dan, Tammo S. Steenhuis. Enhanced oil recovery using micron-size polyacrylamide elastic microspheres: underlying mechanisms and displacement experiments[J]. Industrial & Engineering Chemistry Research, 2015, 54(43): 10925-10934.
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