论文
[1] Huang Z Q*, Wang Z X, Hu H F, et al. Dynamic interwell connectivity analysis of multi-layer waterflooding reservoirs based on an improved graph neural network[J]. Petroleum Science, 2024, 21(2): 1062-1080.(SCI)
[2] Guo W, Huang Z Q*, Li A, et al. Visual experiments of bottom water and multi-well water and gas injection flooding for fault-controlled fractured-vuggy reservoirs[J]. Physics of Fluids, 2023, 35(8). (SCI)
[3] Huang Z Q*, Liu Z, Yao J, et al. Hydromechanical behavior analysis of fractured vuggy carbonate rocks based on homogenization theory[J]. Physics of Fluids, 2023, 35(11). (SCI)
[4] Li J, Yao J, Huang Z Q*, et al. An efficient numerical simulation of coupled thermo-hydro-mechanical processes in deep shale gas reservoirs[J]. Physics of Fluids, 2023, 35(12). (SCI)
[5] Huang Z Q*, Wang H, Su X, et al. A two-scale fractal permeability model for vuggy porous media[J]. Physics of Fluids, 2023, 35(2). (SCI)
[6] Su X, Ren B, Huang Z Q*. Permeability analysis of fractured-vuggy carbonate reservoirs based on fractal theory[J]. Fractals, 2022, 30(07): 2250144. (SCI)
[7] Zhang X, Huang Z Q#, Lei Q, et al. Connectivity, permeability and flow channelization in fractured karst reservoirs: A numerical investigation based on a two-dimensional discrete fracture-cave network model[J]. Advances in Water Resources, 2022, 161: 104142. (SCI)
[8] Huang Z Q*, Su X, Li Y, et al. Stress sensitivity analysis of fractal porous media based on the elasto-plastic thick-walled cylinder model[J]. Fractals, 2021, 29(03): 2150162. (SCI)
[9] Liu L, Huang Z Q#, Yao J, et al. Simulating two-phase flow and geomechanical deformation in fractured karst reservoirs based on a coupled hydro-mechanical model[J]. International Journal of Rock Mechanics and Mining Sciences, 2021, 137: 104543. (SCI)
[10] Zhou X, Zhang Q, Xing H, Huang Z Q*, et al. Numerical Study of Reactive Flow in Fractured Carbonate Rock[J]. Frontiers in Earth Science, 2021, 9: 765139. (SCI)
[11] Zhang X, Huang Z Q#, Lei Q, et al. Impact of fracture shear dilation on long-term heat extraction in Enhanced Geothermal Systems: Insights from a fully-coupled thermo-hydro-mechanical simulation[J]. Geothermics, 2021, 96: 102216. (SCI)
[12] 黄朝琴*, 年凯, 王斌, 等. 一种考虑物理过程信息的油气渗流深度学习新模型[J]. 中国石油大学学报(自然科学版), 2020, 44(04):47-56. (EI)
[13] 黄朝琴*, 周旭, 刘礼军, 等. 缝洞型碳酸盐岩油藏流固耦合数值模拟[J]. 中国石油大学学报(自然科学版), 2020, 44(01):96-105. (EI)
[14] Liu L, Huang Z Q*, Yao J, et al. An efficient hybrid model for 3D complex fractured vuggy reservoir simulation[J]. SPE Journal, 2020, 25(02): 907-924. (SCI)
[15] Huang Z Q*, Xing H, Zhou X, et al. Numerical study of vug effects on acid-rock reactive flow in carbonate reservoirs[J]. Advances in Geo-Energy Research, 2020, 4(4).
[16] Zhang X, Huang Z Q*, Yao J, et al. Numerical modeling of heat extraction in hot fractured vuggy reservoir with thermal hydraulic mechanical coupling method based on discrete fracture-vug model[C]//ARMA US Rock Mechanics/Geomechanics Symposium. ARMA, 2020: ARMA-2020-1806.
[17] Wang C, Huang Z Q*, Wu Y S. Coupled numerical approach combining X-FEM and the embedded discrete fracture method for the fluid-driven fracture propagation process in porous media[J]. International Journal of Rock Mechanics and Mining Sciences, 2020, 130: 104315. (SCI)
[18] Liu L, Huang Z Q*, Yao J, et al. An Efficient Coupled Hydro-Mechanical Modeling of Two-Phase Flow in Fractured Vuggy Porous Media[C]//ARMA US Rock Mechanics/Geomechanics Symposium. ARMA, 2020: ARMA-2020-1150.
[19] 姚军 ; 黄涛; 黄朝琴*; 谢昊君; 刘均荣; 张建光. 磁场-渗流场耦合作用下的铁磁流体多孔介质流动 数值模拟, 科学通报, 2017.02.17, 62(8): 836~846(EI)
[20] 严侠, 黄朝琴*, 李阳,等. 基于离散缝洞网络模型的缝洞型油藏混合模型[J]. 中南大学学报(自然科学版), 2017, 48(9):2474-2483. (EI)
[21] 黄涛, 姚军, 黄朝琴*, et al. 铁磁流体驱油试验[J]. 中国石油大学学报:自然科学版, 2018. (EI)
[22] 张庆福, 黄朝琴*, 姚军, et al. 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, 2017(13):85-94. (EI)
[23] 姚军, 黄涛, 黄朝琴*, et al. 磁场-渗流场耦合作用下的铁磁流体多孔介质流动数值模拟[J]. 科学通报, 2017(08):100-110. (EI)
[24] Zhang Q , Huang Z Q* , Yao J , et al. An efficient multiscale mixed finite element method for modeling flow in discrete fractured reservoirs[J]. Journal of Computational and Applied Mathematics, 2017, 323:95-110. (SCI)
[25] Zhang Q , Huang Z Q* , Yao J , et al. Multiscale mimetic method for two-phase flow in fractured media using embedded discrete fracture model[J]. Advances in Water Resources, 2017, 107:180-190. (SCI)
[26] Tao Huang; Jun Yao ; Zhaoqin Huang*; Xiaolong Yin; Haojun Xie; Jianguang Zhang, Numerical simulation on ferrofluid flow in fractured porous media based on discrete-fracture model, OpenPhys, 2017.01.20, 15(1): 370~378(SCI)
[27] Haojun Xie; Aifen Li; Zhaoqin Huang* ; Bo Gao; Ruigang Peng, Coupling of two-phase flow in fractured-vuggy reservoir with filling medium, Open Physics, 2017, 15(1): 12~17(SCI)
[28] Zhaoqin Huang; Xiaoyu Zhang; Jun Yao ; Yu-Shu Wu, Non-Darcydisplacement by a non-Newtonian fluid in porous media according to the Barree-Conway model, Adv. Geo-energ. Res., 2017, 1(2): 74~85
[29] 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
[30] 姚军, 黄朝琴*, 刘文政, et al. 深层油气藏开发中的关键力学问题[J]. 中国科学:物理学 力学 天文学, 2018(4).
[31] 张庆福, 黄朝琴*, 姚军, 等. 缝洞型介质流动模拟的多尺度分解法[J]. 物理学报, 2019, 68(6): 64701-064701. (SCI)
[32] Yang Q, Yao J, Huang Z Q*, et al. A comprehensive SPH model for three-dimensional multiphase interface simulation[J]. Computers & Fluids, 2019, 187: 98-106.(SCI)
专利
授权国家发明专利:
[1] 黄朝琴, 孙图南, 张旭, 等. 一种离散缝洞网络模型连通性参数确定方法及系统[P]. 2024, ZL202111578692.4
[2] 黄朝琴, 周旭, 姚军, 等. 一种深层油气藏热流固化耦合开采实验装置及模拟系统[P]. 2024, ZL202410718995.9.
[3] 黄朝琴, 周恒, 姚军, 等. 一种多尺度裂缝性气藏渗流机理物理实验系统[P]. 2024, ZL202410666359.6.
[4] 黄朝琴, 黄龙, 姚军, 等. 基于谐波注入系统的缝洞型介质连通性评估方法及系统[P]. 2024, ZL202010158140.7.
[5] 黄朝琴, 幸洪川, 张旭, 等. 一种深层断溶体裂缝闭合机理实验装置.发明专利[P]. 2023, ZL202111552802.X.
[6] 黄朝琴, 姚军, 贾存奇, 等. 一种碳酸盐岩储层酸化值确定方法及系统[P]. 2022, ZL202010053381.5.
[7] 黄朝琴, 梁永星, 年凯, 等. 一种基于图神经网络的井间动态连通性识别方法及系统[P]. 2022, ZL202010157632.4.
[8] 黄朝琴, 梁永星, 姚军, 等. 一种基于改进的时空图卷积网络产油量预测方法及系统[P]. 2022, ZL202110197198.7
[9] 黄朝琴, 张晓宇, 姚军, 等. 一种缝洞型油藏数值模拟的方法及系统[P]. 2019, ZL201710173347.X
[10] 黄朝琴, 张庆福, 姚军, 等. 一种复杂裂缝性油藏流动模拟的方法[P]. 2019, ZL201710285522.4
[11] 黄朝琴, 张庆福, 姚军, 等. 一种弹性介质的流固耦合多尺度流动模拟方法[P]. 2019, ZL201710285521.X.
[12] 黄朝琴, 梁梦吟, 姚军, 等. 一种油藏数值模拟方法及系统[P]. 2019, ZL201710321462.7.
[13] 黄朝琴, 刘礼军, 姚军, 等. 一种考虑油藏机理的页岩油气组分模拟方法及系统[P]. 2019, ZL201710341557.5.
[14] 黄朝琴, 梁梦吟, 姚军, 等. 一种分段压裂水平井的粗网格模拟方法及系统[P]. 2019, ZL201710432128.9.
[15] 黄朝琴, 黄涛, 高博, 等. 测量渗流-自由流界面流体速度滑移系数的装置及方法[P]. 2018, ZL201610045053.4.
[16] 黄朝琴, 姚军, 黄涛, 等. 基于纳米磁流体的地下油水界面检测系统及检测方法[P]. 2018, ZL201510363600.9.
申请软件著作权:
[1] 黄朝琴; 姚军, 油水两相离散裂缝网络有限元数值模拟软件, 2010SR050787
[2] 黄朝琴; 严侠; 姚军; 张庆福; 曾慧; 樊冬艳, 裂缝性油藏等效数值模拟软件, 2013SR141301
[3] 黄朝琴; 曾青冬; 姚军; 严侠, 水力压裂裂缝扩展模拟软件软件, 2013SR141232
[4] 黄朝琴,张庆福,姚军,裂缝性油藏多尺度有限元数值模拟软件,2017SR158456
[5] 黄朝琴,姚军,张庆福,非均质油藏多尺度数值模拟软件,2017SR158385