职称:副教授
单位:智能油气田研究所
最高学历/学位:研究生/博士
学科:油气田开发工程学科,石油与天然气工程
所学专业:动力工程及工程热物理(能源与环境工程)
电子邮箱:shuyang_liu@126.com
联系电话:17852323270
地址邮编:山东省青岛市经济技术开发区长江西路66号,石油工程学院工科B-733室,266580
职称:副教授
单位:智能油气田研究所
最高学历/学位:研究生/博士
学科:油气田开发工程学科,石油与天然气工程
所学专业:动力工程及工程热物理(能源与环境工程)
电子邮箱:shuyang_liu@126.com
联系电话:17852323270
地址邮编:山东省青岛市经济技术开发区长江西路66号,石油工程学院工科B-733室,266580
【博士研究生】
2023级博士:(协助指导)谭祁智
2022级博士:(协助指导)宫润东
2021级博士:(副导师)王志强
2020级博士:(协助指导)王彦集
欢迎石油工程、能源动力、化工、计算机、数理等相关专业背景的学子报考研究生!
【横向项目】
广东省新能源和可再生能源研究开发与应用重点实验室开放基金,CO2置换开采天然气水合物储层沉降规律研究,2024-2025,主持;
中石化胜利油田勘探院,牛55-斜4、利页2-1HF等井页岩带压渗吸测试,2023-2024,主持;
自然资源部天然气水合物重点实验室开放基金,注CO2置换开采天然气水合物藏储层稳定性研究,2023-2025,主持;
中石油冀东油田,中深层、深层油藏吞吐介质分析化验,2023,主持;
中海油天津分公司,xx油田巨厚层注采调整及水气交替参数优化研究,2023-2024,技术负责人;
特雷西能源科技,油藏数值模拟替代模型技术研究,2023-2024,骨干;
中石化胜利油田勘探院,多层断块油藏流场表征及高效流场重建技术方法研究,2022-2023,骨干;
中石油工程院,基于多元数据的储层损害预测与诊断专家系统,2022-2025,骨干;
中海油天津分公司,xx油田特高含水期剩余油分布模式及采收率研究,2021-2022,技术负责人;
中石化胜利油田勘探院,近废弃边底水油藏CO2封存与辅助驱油控制因素,2021,骨干;
中石油勘探院,低成熟度页岩地层热转化数值模拟研究,2021-2022,骨干;
中石油新疆油田,基于不同开发方式油藏-地质力学耦合的重复压裂潜力研究,2021- 2023,骨干;
中海油北京研究中心,精准控压钻井、固井设计及监控一体化软件研发,2021-2023,骨干;
海洋能源利用与节能教育部重点实验室开放基金,微尺度多孔介质内CO2/N2置换CH4水合物研究,2020.01-2021.12,主持;
中石油西部钻探,超临界二氧化碳压裂相态预测及参数优化设计项目,2020,骨干;
中海油北京研究中心,钻井井控期间节流控制特性测试,2020-2021,骨干;
中石化石油工程院,页岩气CO2压裂相态预测及控制技术研究,2019,骨干;
【大学生创新创业项目】
陈淑华、秦东岳、黄安泰、熊睿、张宝顺,低盐度碳酸水驱油机理研究,2023.09-2025.04;
梁景旗、张文豪、李东阳,致密油压裂液侵入伤害机理研究,2023.09-2025.04;
蒲茂贤、刘玄、李双傲、党元婍、雷雅璇,CO2提高天然气采收率技术注采调控方法的智能化研究,2022.09-2024.05;
孙亚藩、杨丽婷、封忠林、申佳一、徐晓彤,基于人工智能方法的页岩内气体吸附特性研究,2022.09-2024.05;
周海莉、张紫琪、杨思巧、侯雅齐,复配型助混剂对CO2驱提高石油采收率的促进作用研究,2023.01-2025.06;
孙涵、丁春宇、董春豪、吕燚,注CO2开发天然气水合物过程中的置换机理研究,2023.01-2025.06;
【指导学生获奖】
2023,都荣森,优秀本科毕业设计(论文),基于机器学习的CO2驱提高天然气采收率注采方案优化设计
2022,王江龙,优秀本科毕业设计(论文),基于神经网络的页岩内CO2-CH4吸附特性研究
2022,胡卓凡,第十二届中国石油工程设计大赛鼓励奖
2022,王志强、范晨、宫润东、崔佳伟、余龙辉,第一届“创青春”中国青年碳中和创新创业大赛学术组全国银奖,基于BP神经网络的咸水层CO2封存注入能力预测方法
【2023】
[44] Shuyang Liu, Hangyu Li*, Yi Zhang, Bo Ren, Qian Sun. Editorial: CO2 Geological Storage and Utilization (CGSU). Frontiers in Energy Research. 2023, 11: 1333023. (SCI, IF=3.4)
[43] Hangyu Li*, Xianzhi Song, Shuyang Liu*. Artificial Intelligence Applications in Petroleum Exploration and Production. Applied Sciences, 2023, 13(10): 6214. (SCI, IF=2.7)
[42] Yanji Wang, Hangyu Li*, Jianchun Xu, Shuyang Liu, Qizhi Tan, Xiaopu Wang. Machine learning assisted two-phase upscaling for large-scale oil-water system. Applied Energy. 2023, 337: 120854. (SCI, IF=11.2, 一区TOP)
[41] Kai Zhang, Shu Jiang*, Zhangxin Chen, Hangyu Li, Shuyang Liu. Geothermal development associated with enhanced hydrocarbon recovery and geological CO2 storage in oil and gas fields in Canada. Energy Conversion and Management. 2023, 288(45): 117146. (SCI, IF=10.4, 一区TOP)
[40] Zhiqiang Wang, Hangyu Li*, Shuyang Liu, Jianchun Xu, Junrong Liu, Xiaopu Wang. Risk evaluation of CO2 leakage through fracture zone in geological storage reservoir. Fuel. 2023, 342: 127896. (SCI, IF=7.4, 一区TOP)
[39] Qizhi Tan, Yanji Wang, Hangyu Li*, Shuyang Liu, Jianchun Xu. A Novel Upscaling Method for the In-Situ Conversion Process. SPE Journal, 2023, 28 (04): 1777–1792. (SCI, IF=3.6, 石油类顶级期刊)
[38] Junrong Liu, Hangyu Li*, Shuyang Liu, Jianchun Xu, Xiaopu Wang, Qizhi Tan. Investigating the Impact of Aqueous Phase on CO2 Huff ‘n’ Puff in Tight Oil Reservoirs Using Nuclear Magnetic Resonance Technology: Stimulation Measures and Mechanisms. SPE Journal, 2023, 28(06): 3324–3340. (SCI, IF=3.6, 石油类顶级期刊)
[37] Junrong Liu, Hangyu Li*, Shuyang Liu, Jianchun Xu, Qian Sang. An integrated approach to investigating the stimulation mechanisms of soaking in shale/tight oil reservoirs. Physics of Fluids. 2023, 35, 062124. (SCI, IF=4.6, 二区TOP)
[36] Junrong Liu*, Hangyu Li*, Jianchun Xu, Shuyang Liu, Rongjiang Liu, Lianjie Hou, Qizhi Tan. Exploring the Unique Characteristics of High-Pore-Volume Waterflooding and Enhanced Oil Recovery Mechanisms in Offshore Sandstone Reservoirs Using Nuclear Magnetic Resonance Technology. Journal of Marine Science and Engineering. 2023, 11(7), 1296. (SCI, IF=2.9)
【2022】
[35] Shuyang Liu, Hangyu Li*, Kai Zhang, Hon Chung Lau*. Techno-economic analysis of using carbon capture and storage (CCS) in decarbonizing China’s coal-fired power plants. Journal of Cleaner Production. 2022, 351: 131384. (SCI, IF=11.1, 一区TOP)
[34] Bin Wang, Shuyang Liu*, Pengfei Wang. Microwave-assisted high-efficient gas production of depressurization-induced methane hydrate exploitation. Energy. 2022, 247, 123353. (SCI, IF=8.9, 一区TOP)
[33] Shuyang Liu, Hangyu Li, Bin Wang*, Baojiang Sun. Accelerating gas production of the depressurization-induced natural gas hydrate by electrical heating. Journal of Petroleum Science and Engineering. 2022, 208, 109735. (SCI, IF=4.4, 二区TOP, 石油类顶级期刊)
[32] Shuyang Liu, Bo Ren, Hang-Yu Li*, Yong-Zhi Yang, Zhi-Qiang Wang, Bin Wang, Jian-Chun Xu, Ramesh Agarwal. CO2 storage with enhanced gas recovery (CSEGR): a review of experimental and numerical studies. Petroleum science. 2022. 19(2): 594-607. (SCI, IF=5.6, 一区TOP)
[31] Shuyang Liu, Ramesh Agarwal*, Baojiang Sun*. Numerical simulation and optimization of CO2 enhanced gas recovery in homogeneous and vertical heterogeneous reservoir models. Journal of Energy Resources Technology-Transactions of the ASME. 2022, 144(3): 033009. (SCI, IF=3.0)
[30] Hangyu Li, Changping Gong, Shuyang Liu*, Jianchun Xu, Gloire Imani. Machine Learning-Assisted Prediction of Oil Production and CO2 Storage Effect in CO2-Water-Alternating-Gas Injection (CO2-WAG). Applied Sciences. 2022, 12(21), 10958. (SCI, IF=2.7)
[29] Zhiqiang Wang, Shuyang Liu, Hangyu Li*, Shuxia Li*, Jianchun Xu, Xiaopu Wang. A Numerical Simulation Study of Methane Hydrate Reformation during the Dissociation Process Induced by Depressurization. Fuel. 2022, 313, 122983. (SCI, IF=7.4, 一区TOP)
[28] Kai Zhang, Hon Chung Lau*, Shuyang Liu, Hangyu Li*. Carbon capture and storage in the coastal region of China between Shanghai and Hainan. Energy. 2022, 247, 123470. (SCI, IF=8.9, 一区TOP)
[27] Yanji Wang, Hangyu Li, Jianchun Xu, Shuyang Liu, Xiaopu Wang. Machine learning assisted relative permeability upscaling for uncertainty quantification. Energy, 2022, 245, 123284. (SCI, IF=8.9, 一区TOP)
[26] Junrong Liu, Hangyu Li*, Qizhi Tan, Shuyang Liu, Hailong Zhao, Zhiqiang Wang. Quantitative study of CO2 huff-n-puff enhanced oil recovery in tight formation using online NMR technology. Journal of Petroleum Science and Engineering. 2022, 110688. (SCI, IF=4.4, 二区TOP, 石油类顶级期刊)
[25] Jianchun Xu*, Wenxin Zhou, Hangyu Li, Xiaopu Wang, Shuyang Liu, L. Fan. Stochastic simplex approximation gradient for reservoir production optimization: Algorithm testing and parameter analysis. Journal of Petroleum Science and Engineering. 2022, 209, 109755. (SCI, IF=4.4, 二区TOP, 石油类顶级期刊)
[24] Jianchun Xu, Ziwei Bu, Hangyu Li, Xiaopu Wang, Shuyang Liu. Permeability Models of Hydrate-Bearing Sediments: A Comprehensive Review with Focus on Normalized Permeability. Energies. 2022, 15(13), 4524. (SCI, IF=3.2)
【2021】
[23] Shuyang Liu, Ramesh Agarwal, Baojiang Sun*, Bin Wang, Hangyu Li, Jianchun Xu, Guangming Fu. Numerical simulation and optimization of injection rates and wells placement for carbon dioxide enhanced gas recovery using a genetic algorithm. Journal of Cleaner Production. 2021, 280, 124512. (SCI, IF=11.072, 一区TOP)
[22] Hangyu Li, Hon Chung Lau, Xiaofang Wei, Shuyang Liu*. CO2 storage potential in major oil and gas reservoirs in the northern South China Sea. International Journal of Greenhouse Gas Control. 2021, 108, 103328. (SCI, IF=4.400, 二区)
[21] Ling Fan, Qizhi Tan, Hangyu Li, Jianchun Xu, Xiaopu Wang, Shuyang Liu*. Simulation on effects of injection parameters on CO2 enhanced gas recovery in a heterogeneous natural gas reservoir. Advanced Theory and Simulations. 2021, 4, 202100127. (SCI, IF=4.105)
[20] 付光明,李明亮,孙宝江,高永海,刘树阳,时晨. 海底管道动态压溃时激发压力脉冲特性分析. 哈尔滨工程大学学报. 2021, 42(7), 983-989. (EI)
【2020】
[19] Bin Wang, Hongsheng Dong, Zhen Fan, Shuyang Liu*, Xin Lv, Qingping Li, Jiafei Zhao*. Numerical analysis of microwave stimulation for enhancing energy recovery from depressurized methane hydrate sediments. Applied Energy. 2020, 262, 114559. (SCI, IF=9.746, 一区TOP)
[18] Shuyang Liu, Baojiang Sun*, Jianchun Xu, Hangyu Li, Xiaopu Wang. Study on competitive adsorption and displacing properties of CO2 enhanced shale gas recovery: advances and challenges. Geofluids. 2020. 6657995. (SCI, IF=2.176)
[17] Yuan Chi1, Shuyang Liu1(共同一作), Weiwei Jian, Changzhong Zhao, Junchen Lv, Yi Zhang*. The density characteristics of CO2 and alkane mixtures using PC-SAFT EoS. Greenhouse Gases: Science and Technology. 2020, 10(5), 1063-1076. (SCI, IF=2.013)封面文章
[16] 刘树阳,孙宝江*,宋永臣,等. CO2提高天然气采收率的重力效应与气藏压力影响模拟. 中国石油大学学报(自然科学版). 2020. 44(3):81-89. (EI)
【2019】
[15] 刘树阳,张毅,宋永臣,孙宝江*. CO2-CH4体系热力学性质(PVTx)研究进展. 中国科学:技术科学. 2019, 49(12): 1429-1441. (EI)
[14] Changzhong Zhao, Junchen Lv, Guanchu Li, Qian Zhang, Yi Zhang*, Shuyang Liu, Yuan Chi. Densities of CO2/N2/O2 ternary mixtures at temperatures from (300.15 to 353.15) K and pressures from (5 to 18) MPa. Thermochimica Acta, 2019, 676, 20-26. (SCI, IF=2.762)
【2018及之前】
[13] Shuyang Liu, Yongchen Song, Changzhong Zhao, Yi Zhang*, Pengfei Lv, Lanlan Jiang, Yu Liu, Yuechao Zhao. The horizontal dispersion properties of CO2-CH4 in sand packs with CO2 displacing the simulated natural gas. Journal of Natural Gas Science & Engineering. 2018, 50, 293-300. (SCI, IF=3.859, 二区)
[12] Shuyang Liu, Changzhong Zhao, Junchen Lv, Pengfei Lv, Yi Zhang*. Density Characteristics of the CO2–CH4 Binary System: Experimental Data at 313–353 K and 3–18 MPa and Modeling from the PC-SAFT EoS. Journal of Chemical & Engineering Data. 2018, 63, 4368-4380. (SCI, IF=2.298)
[11] Shuyang Liu, Yi Zhang*, Yuan Chi, Yongchen Song*, Mingjun Yang, Yu Liu, Pengfei Lv. Density characteristics of CO2–CH4 binary mixtures at temperatures from (300 to 308.15) K and pressures from (2 to 18) MPa. Journal of Chemical Thermodynamics. 2017, 106, 1-9. (SCI, IF=2.631)
[10] Pengfei Lv, Yu Liu*, Zhe Wang, Shuyang Liu, Lanlan Jiang Junlin Chen, Yongchen Song*. In Situ Local Contact Angle Measurement in a CO2-Brine-Sand System Using Microfocused X-ray CT. Langmuir, 2017, 33(14), 3358−3366. (SCI, IF=3.789, 二区TOP)
[9] Pengfei Lv, Yongchen Song*, Yu Liu*, Bin Wang, Lanlan Jiang, Bohao Wu, Shuyang Liu, Junlin Chen. Pore-Scale Imaging and Analysis of Phase Topologies and Displacement Mechanisms for CO2-Brine Two-Phase Flow in Unconsolidated Sand Packs. Water Resources Research, 2017, 53(11), 9127-9144. (SCI, IF=4.361, 二区TOP)
[8] Pengfei Lv, Yu Liu*, Junlin Chen, Lanlan Jiang, Bohao Wu, Shuyang Liu, Yongchen Song*. Pore-scale investigation of effects of heterogeneity on CO2 geological storage using stratified sand packs. Greenhouse Gases: Science and Technology. 2017, 7(6), 972-987. (SCI, IF=1.991)封面文章
[7] Yi Zhang1, Shuyang Liu1(共同一作), Lulu Wang, Yongchen Song*, Mingjun Yang, Jiafei Zhao, Yuechao Zhao, Yuan Chi. In situ measurement of the dispersion coefficient of liquid/supercritical CO2–CH4 in a sandpack using CT. RSC Advances. 2016, 6(48), 42367-42376. (SCI, IF=3.108)
[6] Yi Zhang, Yuan Chi, Shuyang Liu, Wanli Xing, Lulu Wang, Yongchen Song*. Competitive adsorption/desorption of CO2/CH4 mixtures on anthracite from China over a wide range of pressures and temperatures. RSC Advances, 2016, 6(101), 98588-98597. (SCI, IF=3.108, 二区)
[5] Yi Zhang, Lulu Wang, Shuyang Liu, Yongchen Song*, Yu Liu, Lanlan Jiang. Density and volumetric behavior of CO2 + undecane system from 313.15 to 353.15 K and pressures up to 19 MPa. Journal of Chemical & Engineering Data, 2016, 61(9), 3003-3012. (SCI, IF=2.323)
[4] Yu Liu1,*, Pengfei Lv1, Yao Liu, Lanlan Jiang, Suekane Tetsuya, Yongchen Song*, Bohao Wu, Shuyang Liu. CO2/water two-phase flow in a two- dimensional micromodel of heterogeneous pores and throats. RSC Advances, 2016, 6, 73897-73905. (SCI, IF=3.108,二区)
[3] Shuyang Liu, Yi Zhang*, Wanli Xing, Weiwei Jian, Zhaoyan Liu, Tongtong Li, Yongchen Song*. Laboratory experiment of CO2–CH4 displacement and dispersion in sandpacks in enhanced gas recovery. Journal of Natural Gas Science & Engineering. 2015, 26, 1585-1594. (SCI, IF=2.045)
[2] Yi Zhang, Wanli Xing*, Shuyang Liu, Yu Liu, Mingjun Yang, Jiafei Zhao, Yongchen Song*. Pure methane, carbon dioxide, and nitrogen adsorption on anthracite from China over a wide range of pressures and temperatures: experiments and modeling. RSC Advances, 2015, 5(65), 52612-52623. (SCI, IF=3.289)
[1] Yongchen Song, Yangchun Zhan, Yi Zhang*, Shuyang Liu, Weiwei Jian, Dayong Wang. Measurements of CO2–H2O–NaCl Solution Densities over a Wide Range of Temperatures, Pressures, and NaCl Concentrations. Journal of Chemical & Engineering Data, 2013, 58(12), 3342-3350. (SCI, IF=2.045, 二区)
【会议】
[14] Zhiqiang Wang, Hangyu Li, Shuyang Liu, Junrong Liu, Jianchun Xu, Jiayu Chen. Optimization of Injection Scheme for China's First Carbon Storage Project in Offshore Deep Saline Aquifer. International Petroleum Technology Conference, Dhahran, Saudi Arabia, February 2024. IPTC-23854-EA.
[13] 刘树阳,王江龙,李航宇. 基于神经网络的页岩内CO2-CH4吸附特性研究. 2022 年中国工程热物理学会传热传质学术会议,2022.12.16-12.18,武汉,论文编号:223226.
[12] Yanji Wang, Hangyu Li, Jianchun Xu, Ling Fan, Xiaopu Wang, Shuyang Liu. A Novel Machine Learning Assisted Upscaling Workflow for Simulating the Waterflooding Process. Paper presented at the SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition. 12–14 October, 2021 Virtual. SPE-205595-MS.
[11] Shuyang Liu, Baojiang Sun. Numerical Simulation of CO2 enhanced gas recovery (CO2-EGR) for the optimal CO2 injection perforation position and injection rate. InterPore 2020 12th annual meeting, August 31-September 4, 2020, Qingdao, China. Oral
[10] Yuan Chi, Yi Zhang, Guanchu Li, Qian Zhang, Changzhong Zhao, Shuyang Liu, L. Lei Yuan, Shezhan Liu, Yongchen Song. CO2/CH4 adsorption property on shale from China for ESGR operation. 10th International Conference on Applied Energy (ICAE2018), 22-25 August 2018, Hong Kong, China. Energy Procedia, 2019, 158, 5396-5401.
[9] Shuyang Liu, Junchen Lv, Guanchu Li, Yongchen Song, Yi Zhang. Visualized and Quantitative Investigation of CO2-CH4 Diffusion using X-ray CT. 14th Greenhouse Gas Control Technologies Conference(GHGT-14), 21-26 October 2018, Melbourne, Australia. Available at SSRN:https://ssrn.com/abstract=3365564.
[8] Qian Zhang, YiZhang, Shezhan Liu, Yuan Chi, Changzhong Zhao, Shuyang Liu, Yongchen Song. Heat transfer modeling of CO2 in the wellbore and aquifer during geological sequestration. International Heat Transfer Conference 16. 10-15 August 2018, Beijing, China.
[7] Pengfei Lv, Zhe Wang, Yu Liu, Hongsheng Dong, Lanlan Jiang. Yongchen Song, Bohao Wu, Shuyang Liu. Pore-scale Displacement Mechanisms Investigation in CO2-brine-glass Beads System. 8th International Conference on Applied Energy – ICAE2016, 8-11 October 2016, Beijing, China. Energy Procedia, 2017, 105, 4122-4127.
[6] Yi Zhang, Yuan Chi, Wanli Xing, Shuyang Liu, Yongchen Song. Competitive Adsorption/Desorption of CH4/CO2/N2 Mixture on Anthracite from China for ECBM Operation. 8th International Conference on Applied Energy – ICAE2016, 8-11 October 2016, Beijing, China. Energy Procedia, 2017, 105, 4289-4294.
[5] 刘树阳,宋永臣,张毅. 多孔介质CO2-CH4弥散系数测量实验研究. 2015年中国工程热物理多相流会议,2015,论文编号:156235.
[4] Yi Zhang, Shuyang Liu, Yongchen Song, Jiafei Zhao, Lingyu Tang, Wanli Xing, Weiwei Jian, Zhaoyan Liu, Yangchun Zhan. Experimental investigation of CO2-CH4 displacement and dispersion in sand pack for enhanced gas recovery. 6th International Conference on Applied Energy – ICAE2014, May 30-June 2, 2014, Taipei, Taiwan, China. Energy Procedia, 2014, 61, 393-397.
[3] Yongchen Song, Weiwei Jian, Yi Zhang, Wanli Xing, Yangchun Zhan, Shuyang Liu, Tongtong Li. Density Behavior of CO2 + Decane Mixtures by Modified SAFT Equation of State. 6th International Conference on Applied Energy – ICAE2014, May 30-June 2, 2014, Taipei, Taiwan, China. Energy Procedia, 2014, 61, 440-444.
[2] Yi Zhang, Zhaoyan Liu, Yongchen Song, Weiwei Jian, Wanli Xing, Shuyang Liu, Tongtong Li. Densities of the Binary System of Carbon Dioxide and Dodecane from (313 to 353) K and Pressures up to 18 MPa. 6th International Conference on Applied Energy – ICAE2014, May 30-June 2, 2014, Taipei, Taiwan, China. Energy Procedia, 2014, 61, 504-508.
[1] Yi Zhang, Shuyang Liu, Yongchen Song*, Weiwei Jian, Duo Li, Cheng Hu, Yangchun Zhan. Research progress of CO2 sequestration with enhanced gas recovery. Advanced Materials Research. 2013, 807, 1075-1079.
【申请发明专利】
[8] 李航宇,王志强,刘树阳,徐建春,王彦集,胡卓凡.基于无量纲数Ca、Gr和Bo的咸水层CO2封存安全性评估方法,CN 2023100259956(实审);
[7] 李航宇,刘树阳,万颖硕,王晓璞,徐建春.一种适用于高压微流体实验的芯片夹具装置. CN202111523506.7(实审);
[6] 胡卓凡,李航宇,刘树阳,李淑霞,徐建春,王晓璞,刘峻嵘.一种应用表面活性剂的二氧化碳压裂-吞吐联合生产方法. CN202210809155.4(实审);
[5] 李航宇,胡卓凡,刘树阳,徐建春,王晓璞,刘峻嵘,王彦集,李淑霞.一种修正粘温曲线的蒸汽辅助重力泄油数值模拟尺度升级方法. CN202210937414.1(实审);
[4] 刘峻嵘,李航宇,王秀坤,刘树阳,徐建春,王晓璞.一种水平井压裂后焖-排-产一体化物理模拟装置和方法. CN202210850005.8(实审);
[3] 王晓璞,李严,李航宇,徐建春,刘树阳,王彦集,王旭,任玲玲,周泽,侯莲捷.一种兼具可视化和红外热成像功能的微流控芯片实验平台. CN202110085282.X(实审);
[2] 徐建春,曲尚浩,樊灵,李航宇,王晓璞,刘树阳.一种多井系统水驱油藏注采参数智能优化方法. CN202110105180.X(实审);
[1] 王晓璞,田心怡,耿春香,陈晓东,李航宇,徐建春,刘树阳,李严,任玲玲,周泽,侯莲捷,赵海龙,王一凡.一种基于低毒化学法的废旧光伏组件分离回收方法. CN202210804410.6(实审);
常年欢迎石油工程、能源动力、化工、计算机、数理等相关专业优秀学子加盟课题组!