彭小龙

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彭小龙

2024-05-23 23:27| 来源: 网络整理| 查看: 265

(1)发表论文

●彭小龙,费冬,朱苏阳,等.煤层气吸附-解吸机理再认识[J].中国煤层气,2019,29(5):9-12

●邓鹏,彭小龙,朱苏阳,等.煤层气井的排水量不一定等于煤层的产水量[J].新疆石油地质,2016,37(6):715-719.

●窦莲,彭小龙,冉艳,等.煤层气藏中一种模拟压裂直井的等效方法[J].特种油气藏,2012,19(4):96-99.

●李小波,彭小龙,史英,等.井间示踪剂测试在缝洞型油藏的应用[J].石油天然气学报,2008,30(6):271-274.

●李小波,彭小龙,苏云河,等.低渗油藏水力压裂裂缝长度优化研究[J].石油天然气学报,2009,31(1):304-307.

●李扬,彭小龙,谭聪,等.塔河风化壳储层典型单元注水方式优化研究[J].科学技术与工程,2015,5):81-85.

●李泽沛,彭小龙,王毅.基于三重介质模型的体积压裂后页岩气储层数值模拟方法[J].油气地质与采收率,2016,23(6):105-111.

●刘学利,彭小龙,杜志敏,等.油水两相流Darcy-Stokes模型[J].西南石油大学学报,2007,29(6):89-92.

●刘勇,彭小龙,杜志敏.裂缝性油藏非结构四边形网格数值模拟研究[J].西南石油大学学报(自然科学版),2018,40(4):105-115.

●莫非,杜志敏,彭小龙,等.川西致密砂岩气藏岩心狱渗区的界定方法[J].油气地质与采收率,2018,25(2):121-126.

●莫非,彭小龙,张平,等.基于离散裂缝模型的煤层压裂缝数值模拟方法[J].长江大学学报自然科学版:石油/农学(中旬),2016,13(1):61-67.

●彭小龙.裂缝—溶洞多重介质组分模型研究与应用[D];西南石油学院,2002.

●彭小龙,杜志敏.大裂缝底水气藏渗流模型及数值模拟[J].天然气工业,2004,24(11):116-119.

●彭小龙,杜志敏.注气开发驱替前沿的离散渗流模型[J].西南石油大学学报,2008,30(1):67-69.

●彭小龙,杜志敏,陈小凡,等.千米桥潜山凝析气藏开发数值模拟研究[J].西南石油学院学报,2002,24(1):37-39.

●彭小龙,杜志敏,刘学利,等.大尺度溶洞裂缝型油藏试井新模型[J].西南石油大学学报,2008,30(2):74-77.

●彭小龙,杜志敏,戚志林,等.多重介质渗流模型的适用性分析[J].石油天然气学报(江汉石油学院学报),2006,28(4):99-101.

●彭小龙,刘学利,杜志敏.缝洞双重介质数值模型及渗流特征研究[J].西南石油大学学报,2009,31(1):61-64.

●彭小龙,戚志林,刘学利,等.缝洞型油藏阶梯状产水规律的机理模式[J].油气田地面工程,2009,28(11):32-33.

●彭小龙,郑贤能.用GM(1,M)模型预测水力压裂效果[J].成都理工学院学报,1999,26(3):233-237.

●乔奕炜,彭小龙,朱苏阳,等.考虑解吸作用及相渗影响的煤层气产能模型研究[J].中国煤层气,2018,15(1):19-22.

●谭聪,彭小龙,李扬,等.塔河油田奥陶系断控岩溶油藏注水方式优化[J].新疆石油地质,2014,35(6):703-707.

●汤小龙,彭小龙,邓钰三,等.分支水平井排水采油中排水量的确定方法[J].油气藏评价与开发,2013,1):19-21.

●王超文,彭小龙,贾春生,等.枣园区块煤层气井产能影响因素分析[J].油气藏评价与开发,2016,6(3):67-70.

●王超文,彭小龙,贾春生,等.煤层气藏顶板水平井排水采气数值模拟[J].油气地质与采收率,2016,23(4):112-126.

●王超文,彭小龙,贾春生,等.枣园区块煤层气生产阶段划分及产能模式研究[J].油气藏评价与开发,2016,6(4):74-78.

●王超文,彭小龙,朱苏阳,等.大倾角厚煤层煤层气开采井型优化及布井方法[J].岩石力学与工程学报,38(2):313-320.

●王建峰,彭小龙,王高旺,等.缝洞型油藏流动模型的选择方法[J].油气地质与采收率,2009,16(5):86-88.

●Peng X L,Zhu S Y,You Z,et al. Numerical Simulation Study of Fines Migration Impacts on an Early Water Drainage Period in Undersaturated Coal Seam Gas Reservoirs[J]. Geofluids,2019,2019(12),ID5723694,1-16

●Mo F,Peng X L,Devegowda D,et al. Permeability jail for two-phase flow in tight sandstones: Formulation, application and sensitivity studies[J]. Journal of Petroleum Science and Engineering,2020,184:106583.

●Wang C W,Jia C S,Peng X L,et al. Effects of wellbore interference on concurrent gas production from multi-layered tight sands:A case study in eastern Ordos Basin,China[J]. Journal of Petroleum Science and Engineering,2019,179(8):707-715.

●Jia C S,Zhang L H,Peng X L,et al. Prediction of entropy and Gibbs free energy for nitrogen[J]. Chemical Engineering Science,2019,202:70-74.

●PENG X L,DU Z M,LIANG B,et al. Darcy-stokes streamline simulation for the tahe-fractured reservoir with cavities[J]. SPE Journal,2009,14(03):543-552.

●PENG X L,Fei Mo,Liang B S,et al. Critical Investigation Of Interface Conditions For Fluid Pressures,Capillary Pressure,And Velocities At Jump Interface In Porous Media[J]. Journal Of Porous Media,2019,22(6):1–22.

●PENG X L,LIANG B S,DU Z M. Approximate Simulation of Complex Reservoirs by Using Commercial Simulator; proceedings of the International Oil and Gas Conference and Exhibition in China[C]. Society of Petroleum Engineers,SPE 131668,2010.

●PENG X L,LIANG B S,DU Z M, et al. Practical simulation of multi-porosity reservoirs through existing reservoir simulator[J]. Journal of Petroleum Science and Engineering,2017,151:409-20.

●PENG X L,MO F,DU Z M. The Interface Conditions for Pressures at Oil-water Flood Front in the Porous Media Considering Capillary Pressure[J]. arXiv preprint arXiv:160305637, 2016.

●PENG X L,QI Z,LIANG B S,et al. A new Darcy-Stokes flow model for cavity-fractured reservoir; proceedings of the Production and Operations Symposium[C]. Society of Petroleum Engineers,2007.

●PENG X L,WANG M,DU Z M,et al. Upscaling and simulation of composite gas reservoirs with thin-interbedded shale and tight sandstone[J]. Journal of Natural Gas Science and Engineering,2016,33:854-866.

●PENG X L, JIANG R,JIA C S,et al. Gibbs free energy of gaseous phosphorus dimer[J]. Chemical Engineering Science,2018,190:122-125.

●PENG X L,LIU J Y,JIA C S. Approximation solution of the Dirac equation with position-dependent mass for the generalized Hulthén potential[J]. Physics Letters A,2006,352(6): 478-83.

●PENG X L,LIANG B S,DU Z M. Interface condition for the Darcy velocity at the water-oil flood front in the porous medium[J]. PLos One,2017,12(5):e0177187.

●JIA C S,GUO P,PENG X L. Exact solution of the Dirac–Eckart problem with spin and pseudospin symmetry[J]. Journal of Physics A: Mathematical and General,2006,39(24):7737.

●JIA C S,PENG X L,HE S. Molecular Spinless Energies of the Modified Rosen-Morse Potential Energy Model[J]. Bulletin of the Korean Chemical Society,2014,35(9):2699-703.

●LIANG B,PENG X L,DU Z M,et al. Controlling water production in fractured reservoirs with cavities using water injection[J]. Special Topics undefinedamp; Reviews in Porous Media: An International Journal,2011,2(1):

●LIU X L,PENG X L. Equations for Crossflow in Ultra-thin Interbedded Reservoirs and Application[J]. Journal of Oil and Gas Technology,2011,7(28).

●MO F,DU Z M,PENG X L,et al. Pore-scale analysis of flow resistance in tight sandstones and its relationship with permeability jail[J]. Journal of Natural Gas Science and Engineering,2017,44:314-27.

●MO F,PENG X L,DU Z M. Enhancing the safety of coal mining by injecting CO2 into coalbeds [J]. Applied Mechanics undefinedamp; Materials,2014,694:

●WANG J F,PENG X L,ZHANG L H,et al. Entropy of gaseous boron monobromide[J]. Chemical Physics Letters,2017,686:131-3.

●WANG K,PENG X L,DU Z M,et al. DFN Model for Flow Simulation in Hydraulically Fractured Wells With Pre-Existing Natural Fractures Using Unstructured Quadrilateral Grids; proceedings of the SPE Asia Pacific Unconventional Resources Conference and Exhibition[C]. Society of Petroleum Engineers,2015.

●WANG K,PENG X L,DU Z M,et al. An Improved Grid Generation Approach for Discrete Fracture Network Modelling Using Line Fracture Concept for Two-Phase Flow Simulation; proceedings of the SPE Asia Pacific Oil undefinedamp; Gas Conference and Exhibition[C]. Society of Petroleum Engineers,2016.

●ZHU S Y,PENG X L,DU Z M,et al. Modeling of coal fine migration during CBM production in high-rank coal[J]. Transport in Porous Media,2017,118(1):65-83.

●PENG X L,DU Z M,LIANG B, et al. Modeling two-phase flow in porous media with consideration of jump interfaces; proceedings of the Latin American undefinedamp; Caribbean Petroleum Engineering Conference[C]. Society of Petroleum Engineers,2007.

●TU X,PENG X L, CHEN Z. Research and field application of water coning control with production balanced method in bottom-water reservoir;proceedings of the SPE Middle East Oil and Gas Show and Conference[C]. Society of Petroleum Engineers,2007.

(2)发明专利和软件著作权

●彭小龙,王铭伟,杜志敏,等.一种煤层气储层双层合采高温高压排采动态评价系统:中国,ZL201310055310.9[P].2015.08.12,

●彭小龙,王铭伟,杜志敏,等.一种煤层气储层岩样可视化岩心夹持器:中国,ZL201310055332.5[P].2015-02-21.

●王铭伟,彭小龙,杜志敏,等.一种煤层气井底煤粉震荡解堵装置:中国,ZL201310055331.0[P].2016-01-06.

●彭小龙,刘勇,杜志敏,等.用离散裂缝端点变形消除油藏数值模拟极小化网格的方法:中国ZL201210515828.1[P].2016-01-20.

●彭小龙,王铭伟,杜志敏,等.一种煤层气储层分层同采高温高压排采动态评价仪:中国,ZL201310055322.1[P].2016-03-16.

●彭小龙,王铭伟,杜志敏,等.煤层气储层煤粉产生,运移,沉降,堵塞动态评价仪:中国,ZL201310055324.0[P].2016-03-16.

●彭小龙,王铭伟,杜志敏,等.一种测算多条相交离散裂缝流动状况的油藏数值模拟方法:中国,ZL201310149959.7[P].2016-03-16.

●彭小龙,王可可,杜志敏,等.用离散裂缝线处理进行数模测算油藏流动状况的方法:中国,ZL201310149958.2[P].2016-01-20.

●彭小龙,王建峰,杜志敏,等.一种网络状缝洞型油藏的三维渗透率场的获取方法:中国,ZL201310335496.3[P].2016-03-16.

●彭小龙,王超文,贾春生,等.一种井底气液分离器:中国,ZL201410408852.4[P].2017-02-01.

●彭小龙,王超文,贾春生,等.一种煤层气的釆收方法:中国,ZL201510195268.X[P].2017-04-26.

●彭小龙,刘勇,杜志敏,等.离散裂缝及多重连续介质油藏数值模拟前处理软件:中国,2013SR015177[P].2013-02-21.

●彭小龙,刘勇,杜志敏,等.裂缝性油藏非结构四边形和六面体网格剖分软件:中国,2013SR015184[P].2013-02-21.

(3)奖励与荣誉•分子势能模型及在气藏开发中的应用(3/5),四川省自然科学奖,二等奖,2017•沁水盆地南部高阶煤层气高效开发技术及产业化应用(5/13),中国煤炭工业协会科技进步奖,二等奖,2017•碳酸盐岩油藏开发基础理论研究及应用(4/5),四川省人民政府,科技进步奖,三等奖,2007•分子势能模型的构建与作用(5/11),中国石油和化学工业联合会科技进步奖,三等奖,2014•全国石油工程设计大赛优秀指导教师,2016



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