Mining geothermal energy by Electrically Enhanced Geothermal System (EEGS): A new development model of Hot Dry Rock. Energy, 2025, 337(11), 138599.
Research on sensitivity analysis methods for production dynamics in heavy oil polymer flooding using proxy model. Physics of Fluids, 2025, 37, 083115.
Investigation on EOR by composite surfactant-polymer (SP) flooding and streamline adjustment through well pattern encryption: A case study of Shengli‘s strong heterogeneous reservoir. Fuel, 2025, 385,134189.
Research on mechanism of controlling water and stabilizing production in heavy oil reservoirs with edge-bottom water. Geoenergy Science and Engineering, 2025, 244,213447.
Analytical model for transient pressure analysis in a horizontal well intercepting with multiple faults in karst carbonate reservoirs. Journal of Petroleum Science and Engineering, 2023, 220, 111183.
Pressure transient analysis of horizontal wells in multibranched fault-karst carbonate reservoirs: Model and application in SHB oilfield. Journal of Petroleum Science and Engineering, 2023, 220, 111167.
Pressure transient analysis of acid fracturing stimulated well in multilayered fractured carbonate reservoirs: A field case in Western Sichuan Basin, China. Journal of Petroleum Science and Engineering, 2020, 184:106462.
Pressure transient behavior of layered commingled reservoir with vertical inhomogeneous closed boundary. Journal of Petroleum Science and Engineering, 2020, 189:106995.
Pressure transient behavior and flow regimes characteristics of vertical commingled well with vertical combined boundary: A field case in XC gas field of northwest Sichuan Basin, China. Journal of Petroleum Science and Engineering, 2020, 194:107481.
Pressuredrop Response Characteristics for Multi-Injection Well Interfered Vertical Well in Heterogeneous Fractured Anticline Reservoirs. ASME. J. Energy Resour. Technol. September 2023; 145(9): 092902.
Research for the Enhanced Oil Recovery Mechanism of Heavy Oil After Composite Huff and Puff Assisted by Edge-Bottom Water Displacement. J. Energy Res. Technol. Part B. 2025, 1(1): 011004, JERTB-24-1406.
Study for EOR Mechanism and Remaining Oil State of Heavy Oil after Viscosity-Reducer Assisted CO2 Foam Flooding: 2D Micro Visualization Experimental Case. Energy& Fuel, 2023, 37(23), 18620–18631.
Investigation on the pressure response behavior of two-layer vertical mixed boundary reservoir: field cases in Western Sichuan XC gas field, China. Oil Gas Sci. Technol. – Rev. IFP Energies Nouvelles, 2020, 76, 02.
Progress of Electrical Resistance Tomography Application in Oil and Gas Reservoirs for Development Dynamic Monitoring. Processes, 2023, 11(10), 2950.
Flow behaviors and residual oil characteristics of water flooding assisted by multi-effect viscosity reducer in extra heavy oil reservoir. Petroleum Science and Technology, 2023, 41(12): 1231–1249.
Pressure transient behavior of multiwell interference in strip-shaped heterogeneous reservoirs. Petroleum Science and Technology, 2024,43(10), 1099–1120.
致密气藏多层砂体合采井产量递减分析方法[J].新疆石油地质,2024,45(03):340-345.
多层致密油气藏分层压裂井裂缝非均匀导流能力试井分析方法. 中国石油勘探. 2023,28(05):145-157.
具有纵向非均匀复合半径的储层合采井压力响应特征.天然气地球科学,2021,32(04):481-491.
纵向组合边界储层合采井压力响应特征及应用研究.岩性油气藏,2021,33(04):156-165.
元坝长兴组储层温度分布对液硫析出的影响.科学技术与工程,2021,21(20):8336-8341.
川西潮坪相裂缝型碳酸盐岩分层酸压井压力动态分析.岩性油气藏, 2020(01):152-160.
渗透裂缝型碳酸盐岩酸压气井动态特征分析.科学技术与工程,2020,20(22):8948-8956.
潮坪相碳酸盐岩酸压改造油井压力动态特征.石油钻采工艺,2019,41(04):541-548.
裂缝性低渗透碳酸盐岩储层酸压改造油井动态压力特征.天然气地球科学,2018,29(04):586-596.
一种测算岩心含水饱和度的方法及装置,ZL202310578977.0
一种确定倾斜油藏注采干扰时间的计算方法,ZL202310197442.9
一种单井干热岩注入流体换热增强装置及其操作方法,ZL202310322302.X
一种裂缝性背斜油藏注采井组干扰的识别方法,ZL202310401007.3
一种模拟CO2气驱油藏的电学层析成像实验装置及方法和应用,ZL202210671747.4
一种确定断溶体合采储层缝洞空间结构的方法及系统,ZL202210629982.5
一种异常高压有水气藏天然气储量的图版计算方法,ZL202210649203.8
一种非均质油藏多井生产、测试模拟装置及方法,ZL202210568322.0
一种巨厚断控岩溶连通型缝洞油藏干扰测试模拟装置及方法,ZL202210544546.8
一种基于不关井干扰试井的干扰井识别系统及方法,ZL202210544546.8
一种多分支断溶体油藏缝洞参数的确定方法及系统,ZL202211062078.7
一种注采平衡下判断干扰强度的图版分析法,ZL202211275721.4
一种可串联并联模拟复杂储层试井分析的实验装置及方法系统,ZL202111432181.1
一种监测多分支断溶体油气藏合采储层产液剖面动态的EIT实验装置及方法,ZL202111600453.4
一种埋冰造穴模拟断溶体储层试井的实验方法,ZL202111430342.3