论文著作:
·Guo X,Semnani A,Ekekeh D G,et al. Experimental study of spontaneous imbibition for oil recovery in tight sandstone cores under high pressure high temperature with low field nuclear magnetic resonance[J]. Journal of Petroleum Science and Engineering,2021,201:108366.(SCI)
·Guo X,Xu P,Xu M,et al. Formation protection method of oil-based drilling fluid for deep fractured tight gas reservoir[J]. Energy Science & Engineering,2020,8.(SCI)
·Guo X,Zou G,Wang Y,et al. Investigation of the temperature effect on rock permeability sensitivity[J]. Journal of Petroleum Science and Engineering,2017,156:616-622.(SCI)
·Xiao G,Peng W,Jin L,et al. Gas-well water breakthrough time prediction model for high-sulfur gas reservoirs considering sulfur deposition[J]. Journal of Petroleum Science and Engineering,2017,157:999-1006.(SCI)
·Guo X,Wang Q. A new prediction model of elemental sulfur solubility in sour gas mixtures[J]. Journal of Natural Gas Science and Engineering,2016,31:98-107.(SCI)
·Guo X,Zhou X,Zhou B. Prediction model of sulfur saturation considering the effects of non-Darcy flow and reservoir compaction[J]. Journal of Natural Gas Science and Engineering,2015,22:371-376.(SCI)
·Guo X,Meng X G,Du Z M,et al. Studies on foam flooding for high salinity reservoirs after polymer flooding[J]. OIL GAS-EUROPEAN MAGAZINE,2015,41(2):103-109.(SCI)
·Guo X,Du Z M,et al. Sulfur deposition in sour gas reservoirs:laboratory and simulation study[J]. Petroleum Science,2009,6(4):405-414.(SCI)
·Guo X,Yang K,Jia H,et al. A New Method of Central Axis Extracting for Pore Network Modeling in Rock Engineering[J]. Geofluids,2021,2021.
·Huang T,Guo X,Chen F F. Modeling transient flow behavior of a multiscale triple porosity model for shale gas reservoirs[J]. Journal of Natural Gas Science and Engineering,2015,23:33-46.(SCI,博士生为第一作者,本人第二)
·Huang T,Guo X,Chen F F. Modeling transient pressure behavior of a fractured well for shale gas reservoirs based on the properties of nanopores[J]. Journal of Natural Gas Science and Engineering,2015,23:387-398.(SCI,博士生为第一作者,本人第二)
·Huang T,Guo X,Wang K. Nonlinear seepage model of gas transport in multiscale shale gas reservoirs and productivity analysis of fractured well[J]. Journal of Chemistry,2015,2015.(SCI,博士生为第一作者,本人第二)
·Xha,Guo X,Xiang Z C,et al. Effects of water invasion law on gas wells in high temperature and high pressure gas reservoir with a large accumulation of water-soluble gas[J]. Journal of Natural Gas Science and Engineering,2019,62:68-78.(第一通讯作者)
·Huang X,Guo X,Zhou X,et al. Productivity model for water-producing gas well in a dipping gas reservoir with an aquifer considering stress-sensitive effect[J]. Journal of Energy Resources Technology,2018,141(2).(第一通讯作者)
·Li L,Guo X,Zhou M,et al. Numerical modeling of fluid flow in tight oil reservoirs considering complex fracturing networks and Pre-Darcy flow[J]. Journal of Petroleum Science and Engineering,2021,207(5):109050.
·Li L,Guo X,Zhou M,et al. The Investigation of Fracture Networks on Heat Extraction Performance for an Enhanced Geothermal System[J]. Energies,2021,14.
·Yu-Rui Y,Xiao G,Zhen-Wei C,et al. New Method for Calculating Rock Particle Size Composition Parameters[J]. Chemistry and Technology of Fuels and Oils,2019,55(5):599-605.
·郭肖.高含硫气藏硫沉积和水-岩反应机理研究[M].北京:科学出版社,2020.(ISBN978-7-03-065011-5)
·郭肖.高含硫气藏相对渗透率[M].北京:科学出版社,2020.(ISBN978-7-03-066099-2)
·郭肖.高含硫有水气藏水侵动态与水平井产能评价[M].北京:科学出版社,2020.(ISBN978-7-03-066176-0)
·郭肖.高含硫气井井筒硫沉积评价[M].北京:科学出版社,2021.(ISBN978-7-03-067521-7)
·郭肖.高含硫气藏液硫吸附对储层伤害的影响研究[M].北京:科学出版社,2021.(ISBN978-7-03-067769-3)
·郭肖.高含硫气藏储层-井筒一体化模拟[M].北京:科学出版社,2021.(ISBN978-7-03-067770-9)
·郭肖.低渗透油藏非线性渗流机理与CO2微泡沫驱油研究[M].北京:科学出版社,2019.(ISBN978-7-03-067770-9)
·郭肖.非常规油气开发教程[M].北京:科学出版社,2018.(ISBN978-7-03-056645-4)
·郭肖.数字岩心建模与孔隙网络模拟[M].北京:科学出版社,2019.(ISBN978-7-03-059950-6)
·郭肖.页岩气藏压裂井流动规律研究[M].北京:科学出版社,2019.(ISBN978-7-03-055477-2)
·郭肖.高含硫气藏水平井产能评价[M].武汉:中国地质大学出版社,2014.(ISBN978-7-03-061841-2)
·郭肖.高含硫气井井筒硫沉积预测与防治[M].武汉:中国地质大学出版社,2014.(ISBN978-7-5625-3339-9)
·郭肖.异常高压底水气藏水侵规律研究[M].北京:科学出版出版社,2014.(ISBN978-7-03-042142-5)
·郭肖.底水油藏水平井开采动态分析方法[M].北京:科学出版出版社,2014.(ISBN978-7-03-042143-2)
·郭肖,宋戈.气井井筒温度压力预测[M].北京:科学出版社,2016.(ISBN978-7-03-046921-2)
·郭肖.页岩气渗流机理及数值模拟[M].北京:科学出版社,2016.(ISBN978-7-03-042924-7)
·郭肖.一种高精度井筒硫沉积影响因素可视化测试装置及方法:CN 109060616B[P].2021-02-02.
·郭肖.高含硫气藏的硫溶解度在线测试装置及方法:CN106124354A[P].2016-11-16.
·郭肖.高温高压高含硫气藏气液硫相渗曲线测试装置及方法:CN104568678A[P].2015-04-29.
·郭肖.非均质底水油气藏三维物理模拟实验装置及饱和度确定方法:CN104675394A[P].2015-06-03.
·郭肖.高温高压多功能岩心硫沉积测试装置及方法:ZL201010573124.0[P].2012-05-23.
发明专利:
·Guo X,Semnani A,Ekekeh D G,et al. Experimental study of spontaneous imbibition for oil recovery in tight sandstone cores under high pressure high temperature with low field nuclear magnetic resonance[J]. Journal of Petroleum Science and Engineering,2021,201:108366.(SCI)
·Guo X,Xu P,Xu M,et al. Formation protection method of oil-based drilling fluid for deep fractured tight gas reservoir[J]. Energy Science & Engineering,2020,8.(SCI)
·Guo X,Zou G,Wang Y,et al. Investigation of the temperature effect on rock permeability sensitivity[J]. Journal of Petroleum Science and Engineering,2017,156:616-622.(SCI)
·Xiao G,Peng W,Jin L,et al. Gas-well water breakthrough time prediction model for high-sulfur gas reservoirs considering sulfur deposition[J]. Journal of Petroleum Science and Engineering,2017,157:999-1006.(SCI)
·Guo X,Wang Q. A new prediction model of elemental sulfur solubility in sour gas mixtures[J]. Journal of Natural Gas Science and Engineering,2016,31:98-107.(SCI)
·Guo X,Zhou X,Zhou B. Prediction model of sulfur saturation considering the effects of non-Darcy flow and reservoir compaction[J]. Journal of Natural Gas Science and Engineering,2015,22:371-376.(SCI)
·Guo X,Meng X G,Du Z M,et al. Studies on foam flooding for high salinity reservoirs after polymer flooding[J]. OIL GAS-EUROPEAN MAGAZINE,2015,41(2):103-109.(SCI)
·Guo X,Du Z M,et al. Sulfur deposition in sour gas reservoirs:laboratory and simulation study[J]. Petroleum Science,2009,6(4):405-414.(SCI)
·Guo X,Yang K,Jia H,et al. A New Method of Central Axis Extracting for Pore Network Modeling in Rock Engineering[J]. Geofluids,2021,2021.
·Huang T,Guo X,Chen F F. Modeling transient flow behavior of a multiscale triple porosity model for shale gas reservoirs[J]. Journal of Natural Gas Science and Engineering,2015,23:33-46.(SCI,博士生为第一作者,本人第二)
·Huang T,Guo X,Chen F F. Modeling transient pressure behavior of a fractured well for shale gas reservoirs based on the properties of nanopores[J]. Journal of Natural Gas Science and Engineering,2015,23:387-398.(SCI,博士生为第一作者,本人第二)
·Huang T,Guo X,Wang K. Nonlinear seepage model of gas transport in multiscale shale gas reservoirs and productivity analysis of fractured well[J]. Journal of Chemistry,2015,2015.(SCI,博士生为第一作者,本人第二)
·Xha,Guo X,Xiang Z C,et al. Effects of water invasion law on gas wells in high temperature and high pressure gas reservoir with a large accumulation of water-soluble gas[J]. Journal of Natural Gas Science and Engineering,2019,62:68-78.(第一通讯作者)
·Huang X,Guo X,Zhou X,et al. Productivity model for water-producing gas well in a dipping gas reservoir with an aquifer considering stress-sensitive effect[J]. Journal of Energy Resources Technology,2018,141(2).(第一通讯作者)
·Li L,Guo X,Zhou M,et al. Numerical modeling of fluid flow in tight oil reservoirs considering complex fracturing networks and Pre-Darcy flow[J]. Journal of Petroleum Science and Engineering,2021,207(5):109050.
·Li L,Guo X,Zhou M,et al. The Investigation of Fracture Networks on Heat Extraction Performance for an Enhanced Geothermal System[J]. Energies,2021,14.
·Yu-Rui Y,Xiao G,Zhen-Wei C,et al. New Method for Calculating Rock Particle Size Composition Parameters[J]. Chemistry and Technology of Fuels and Oils,2019,55(5):599-605.
·郭肖.高含硫气藏硫沉积和水-岩反应机理研究[M].北京:科学出版社,2020.(ISBN978-7-03-065011-5)
·郭肖.高含硫气藏相对渗透率[M].北京:科学出版社,2020.(ISBN978-7-03-066099-2)
·郭肖.高含硫有水气藏水侵动态与水平井产能评价[M].北京:科学出版社,2020.(ISBN978-7-03-066176-0)
·郭肖.高含硫气井井筒硫沉积评价[M].北京:科学出版社,2021.(ISBN978-7-03-067521-7)
·郭肖.高含硫气藏液硫吸附对储层伤害的影响研究[M].北京:科学出版社,2021.(ISBN978-7-03-067769-3)
·郭肖.高含硫气藏储层-井筒一体化模拟[M].北京:科学出版社,2021.(ISBN978-7-03-067770-9)
·郭肖.低渗透油藏非线性渗流机理与CO2微泡沫驱油研究[M].北京:科学出版社,2019.(ISBN978-7-03-067770-9)
·郭肖.非常规油气开发教程[M].北京:科学出版社,2018.(ISBN978-7-03-056645-4)
·郭肖.数字岩心建模与孔隙网络模拟[M].北京:科学出版社,2019.(ISBN978-7-03-059950-6)
·郭肖.页岩气藏压裂井流动规律研究[M].北京:科学出版社,2019.(ISBN978-7-03-055477-2)
·郭肖.高含硫气藏水平井产能评价[M].武汉:中国地质大学出版社,2014.(ISBN978-7-03-061841-2)
·郭肖.高含硫气井井筒硫沉积预测与防治[M].武汉:中国地质大学出版社,2014.(ISBN978-7-5625-3339-9)
·郭肖.异常高压底水气藏水侵规律研究[M].北京:科学出版出版社,2014.(ISBN978-7-03-042142-5)
·郭肖.底水油藏水平井开采动态分析方法[M].北京:科学出版出版社,2014.(ISBN978-7-03-042143-2)
·郭肖,宋戈.气井井筒温度压力预测[M].北京:科学出版社,2016.(ISBN978-7-03-046921-2)
·郭肖.页岩气渗流机理及数值模拟[M].北京:科学出版社,2016.(ISBN978-7-03-042924-7)
·郭肖.一种高精度井筒硫沉积影响因素可视化测试装置及方法:CN 109060616B[P].2021-02-02.
·郭肖.高含硫气藏的硫溶解度在线测试装置及方法:CN106124354A[P].2016-11-16.
·郭肖.高温高压高含硫气藏气液硫相渗曲线测试装置及方法:CN104568678A[P].2015-04-29.
·郭肖.非均质底水油气藏三维物理模拟实验装置及饱和度确定方法:CN104675394A[P].2015-06-03.
·郭肖.高温高压多功能岩心硫沉积测试装置及方法:ZL201010573124.0[P].2012-05-23.
科研项目:
·国家自然科学基金面上项目,51874249,考虑液硫吸附作用的高含硫气藏地层条件气-液硫相对渗透率实验与计算模型研究,2019-2022,主持
·国家自然科学基金面上项目,50974104,基于热力学和动力学行为的酸性气井井筒压力温度分布预测瞬态模型研究,2010-2012,主持
·国家重点研发计划子课题,2019YFC0312304,增产模式下水合物、游离气采收率评价技术方法研究,2020-2021,主持
·国家重点研发计划子课题,2019YFA0705502,油页岩热解产物高压物性及岩心驱替实验研究,2021-2023,主持
·国家高技术研究发展计划863计划课题,2007AA06Z209,酸性气田安全开采关键技术,2007-2011,主持
·国家重点研究基础计划973专题,2013CB228000-1-1,纳微米孔隙与微裂缝气体流动规律,2013-2017,主持
·教育部“新世纪优秀人才支持计划”,NCET-10-0950,酸性气藏模拟地层条件硫沉积储层伤害实验与数学模拟研究,2011-2013,主持
·“十二五”国家油气重大专项专题,2011ZX05017-001-HZ03,高含硫碳酸盐岩气藏多相渗流规律研究,2010-2015,主持
·“十三五”国家油气重大专项专题,2016ZX05015-002-006,超高压砂岩储层数字岩心描述及微观渗流机理模拟,2016-2020,主持
·“十三五”国家油气重大专项专题,2016ZX05017-005-005,复杂生物礁气藏精细数值模拟,2016-2020,主持
·四川省科技创新研究团队,高含硫气藏安全高效开发四川省青年科技创新研究团队,2014-2016,主持
·四川省应用基础研究项目重大前沿项目,2017JY0005,H2S-CO2捕集与地质封存的关键基础科学问题研究,2017-2020,主持