论文
[1] Zhaoqin Huang ; Qingdong Zeng; Xia Yan; Jun Yao, Chapter 5: Hydraulic Fracturing Modeling and Its Extension to Reservoir Simulation Based on Extended Finite-Element Method (XFEM) , Elsevier: Gulf Professional Publishing, 10380, 2018
[2] Xia Yan,Zhaoqin Huang*,Jun Yao,Yang Li,Dongyan Fan,An efficient hybrid model for fractured reservoirs,Science China Technological Sciences,2016.01.01,59(10):1609~1616
[3] Xia Yan,Zhaoqin Huang*,Jun Yao,Yang Li,Dongyan Fan,An efficient embedded discrete fracture model based on mimetic finite difference method,Journal of Petroleum Science and Engineering,2016.03.18,145:11~21
[4] Xia Yan,Zhaoqin Huang*,Jun Yao,Wenhui Song,Yang Li,Liang Gong,Theoretical analysis of fracture conductivity created by the channel fracturing technique,Journal of Natural Gas Science and Engineering,2016.03.18,31:320~330
[5] Bo Gao,Zhaoqin Huang*,JunYao,Xinrui Lv,Yushu Wu,Pressure Transient Analysis of a Well Penetrating a Filled Cavity in Naturally Fractured Carbonate Reservoirs,Journal of Petroleum Science and Engineering,2016.05.26,145:392~403
[6] Shihao Wang,Zhaoqin Huang*,Yushu Wu,Philip H. Winterfeld,Luis E.Zerpa,A semi-analytical correlation of thermal-hydraulic-mechanical behavior of fractures and its application to modeling reservoir scale cold water injection problems in enhanced geothermal reservoirs,Geothermics,2016.01.01,64:81~95
[7] Xia Yan,Zhaoqin Huang*,Jun Yao,Yang Li,An Efficient Hybrid Model for Fractured-Vuggy Reservoir Based on Discrete Fracture-Vug Network Model,15th European Conference on the Mathematics of Oil Recovery,Amsterdam,Netherlands,2016.09.01-2016.09.03
[8] Qingfu Zhang,Zhaoqin Huang*,Jun Yao,An Efficient Multiscale Mixed Finite Element Method for Modeling Flow inDiscrete Fractured Reservoirs,15th European Conference on the Mathematics of Oil Recovery,Amsterdam, Netherlands,2016.9.1-2016.9.3
[9] Zhang, Q., Huang, Z*., Yao, J., Wang, Y., & Li, Y. (2017). A multiscale mixed finite element method with oversampling for modeling flow in fractured reservoirs using discrete fracture model. Journal of Computational and Applied Mathematics, 323, 95-110.
[10] Zhang, Q., Huang, Z.*, Yao, J., Wang, Y., & Li, Y. (2017). Multiscale mimetic method for two-phase flow in fractured media using embedded discrete fracture model. Advances in Water Resources, 107, 180-190.
[11] Yan Xia, Huang Zhao-Qin*, Xin Yan-Ping, Yao Jun, Li Yang, Gong Liang. Theoretical analysis of high flow conductivity of a fracture induced in HiWay fracturing. Acta Physica Sinica, 2015, 64(13): 134703-134703.
[12] Huang Zhao-Qin, Philip H. Winterfeld, Yao J.*, et al. Parallel simulation of fully-coupled thermal-hydro-mechanical processes in CO2 leakage through fluid-driven fracture zones[J]. International Journal of Greenhouse Gas Control, 2015, 34: 39-51.
[13] Huang Z, Yan X, Yao J*. A Two-Phase Flow Simulation of Discrete-Fractured Media using Mimetic Finite Difference Method[J]. Communications in Computational Physics, 2014, 16(3): 799-816.
[14] Huang Z., Yao J.*, Wang, Y.Y., et al. An Efficient Numerical Model for Immiscible Two-Phase Flow in Fractured Karst Reservoirs[J]. Communications in Computational Physics, 2013, 13(2): 540-558.
[15] Huang Z., Yao J.*, Wang Y., et al. Numerical study on two-phase flow through fractured porous media[J]. SCIENCE CHINA Technological Sciences, 2011, 54 (9): 2412-2420.
[16] Huang Z., Yao J.*, Li Y., et al. Numerical Calculation of Equivalent Permeability Tensor for Fractured Vuggy Porous Media Based on Homogenization Theory[J]. Commun. Comput. Phys., 2011, 9 (1): 180-204.
[17] Huang Z. Q., Yao J.*, Li Y. J., et al. Permeability analysis of fractured vuggy porous media based on homogenization theory[J]. SCIENCE CHINA Technological Sciences, 2010, 53 (3): 839-847.
[18] Zhang N, Huang Z, Yao J.* Locally conservative Galerkin and finite volume methods for two-phase flow in porous media[J]. Journal of Computational Physics, 2013, 254(0): 39-51.
[19] Tao K, Yao J*, Huang Z. Analysis of the laminar flow in a transition layer with variable permeability between a free-fluid and a porous medium[J]. Acta Mechanica, 2013, 224(9): 1943-1955.
[20] Zhang N, Yao J*, Huang Z Q, et al. Accurate multiscale finite element method for numerical simulation of two-phase flow in fractured media using discrete-fracture model[J]. Journal of Computational Physics, 2013, 242(1): 420-438.
[21] Yao J*, Tao K, Huang Z Q. Flow of Particulate-Fluid Suspension in a Channel with Porous Walls[J]. Transport in porous media, 2013, 96(3): doi: 10.1007/s11242-013- 0137-y.
[22] Yao J.*, Huang Z., Li Y., et al. Discrete Fracture-Vug Network Model for Modeling Fluid Flow in Fractured Vuggy Porous Media[C]. SPE 130287, the CPS/SPE International Oil & Gas Conference and Exhibition, Beijing, China, 8-10 June, 2010.
[18]张庆福, 黄朝琴*, 姚军等. 基于多尺度混合有限元的离散裂缝两相渗流数值模拟[J]. 科学通报, 2016 61(1): 1-13. (通讯作者,EI收录)
[19]孙静静, 黄朝琴*, 姚军等. 基于离散裂缝模型的低渗透油藏开发数值模拟[J]. 计算物理, 2015,32(2): 177-185. (通讯作者)
[20] 黄朝琴,高博,王月英,等. 基于模拟有限差分法的离散裂缝模型两相流动模[J]. 中国石油大学学报:自然科学版, 2014, 38(6): 97-105.(EI收录)
[21] 黄朝琴, 高博, 姚军. Stokes-Darcy 耦合流动问题的交界面条件研究[J]. 中国科学: 物理学, 力学, 天文学, 2014 (002): 212-220.
[22] 严侠, 黄朝琴, 姚军, 黄涛. 基于模拟有限差分的嵌入式离散裂缝数学模型. 中国科学 技术科学, 2014, 44(12): 1333-1342.
[23] 黄朝琴, 姚军, 王月英, 等. 基于离散裂缝模型的裂缝性油藏注水开发数值模拟[J]. 计算物理, 2011, 28(1): 41-49. (EI收录)
[24] 姚军, 黄朝琴, 王子胜, 等. 缝洞型油藏的离散缝洞网络流动数学模型[J]. 石油学报, 2010, 31(4): 15-20. (EI收录)
[25] 黄朝琴, 姚军, 吕心瑞, 等. 介质间流体交换对裂隙介质渗流的影响[J]. 中国石油大学学报(自然科学版), 2010, 34(2): 91-103. (EI收录)
[26] 姚军, 黄涛, 黄朝琴. 非均质低渗透油藏非线性流动数值模拟[J]. 计算物理, 2014, 31(5): 552-558.
[27] 黄朝琴, 姚军, 王月英, 陶柯. 裂隙介质两相渗流数值模拟研究[J]. 中国科学 技术科学, 2011, 41(9): 1240-1248.
[28] 黄朝琴, 姚军, 李亚军, 王晨晨, 吕心瑞. 基于均匀化理论的缝洞型介质渗透性分析[J]. 中国科学 技术科学, 2010, 40(9): 1095-1103.
[29] An Efficient Hybrid Model for Fractured-Vuggy Reservoir Based on Discrete Fracture-Vug Network Model, 15th European Conference on the Mathematics of Oil Recovery, 2016.