教师简介-朱传勇

作者:责任编辑:杨相洲审核人:发布时间:2021-11-04浏览次数:12106

朱传勇

副教授 博士/硕士生导师

邮箱:renxiao@upc.edu.cn

通讯地址:山东省青岛市黄岛区长江西路66号


教育经历

2017年-2018年

加州大学戴维斯分校,博士联合培养

2013年-2019年

西安交通大学,动力工程及工程热物理专业,博士

2009年-2013年

郑州大学,过程装备与控制工程专业,学士

工作经历

2019年-2021年

中国石油大学(华东)新能源研究院,师资博后

2022年-2023年

中国石油大学(华东)新能源研究院,特任副教授

2023年-至今

中国石油大学(华东)新能源研究院,副教授

研究领域/招生方向

[1] 多孔介质内热质传输机制

[2] 热防护及隔热材料性能预测

[3] 热化学储能理论与技术

[4] 多孔介质多尺度数值模拟方法(GPU 加速)

主讲课程

[1]本科生《计算传热学基础》、《强化传热技术》等

[2] 研究生《流动与传热的数值计算》、《工程热物理近代进展》等

主持项目

[1]多孔限域效应下水合盐热化学反应动力学及热质输运机制. 2026.01-2029.12, 国家自然科学基金面上项目,负责人;

[2]二氧化碳驱油与埋存的精细数学模型. 2023.12-2026.11, 国家重点研发计划-子课题, 负责人;

[3] SiO2气凝胶绝热复合膜内热质传递及调控机制研究. 2021.01-2023.12, 国家自然科学基金青年基金,负责人;

[4]中低压纯氢与掺氢燃气管道系统事故特征演化及完整性管理. 2022.01-2024.12, 国家重点研发计划-子课题,参与(2/10);[5]多孔水合盐热化学储热材料内多场耦合输运机制及性能调控. 2020.06-2023.06, 山东省自然科学基金面上项目,负责人;

[6] SiO2气凝胶隔热涂层的传热机理及隔热性能优化研究. 2020.06-2023.06, 山东省自然科学基金青年基金,负责人;

[7] SiO2气凝胶隔热涂层内部热质耦合输运机制及其隔热性能优化研究. 2019.11-2021.11, 青岛市博士后研究人员应用研究项目资助,负责人;

[8]吸附储热多孔介质中多尺度多物理场耦合热质传输机制.校自主创新项目, 负责人;

[9] SiO2气凝胶纳米复合膜内热质输运机制研究. 校自主创新项目, 负责人;

[10]苏北油区CCUS-EOR工程配套技术研究. 2023.12-2026.12,企业项目,负责人;

[11]新能源(清洁热)在油田企业应用产业化前景分析. 2024.07-2024.12,企业项目,负责人;

[12]集气站压缩机烟气余热利用技术研究-电解水制氢技术. 2023.01-2024.07,企业项目,负责人;

[13]集气站压缩机烟气余热利用技术研究-天然气-氢气混合燃烧特性模拟分析测试. 2024.01-2024.08,企业项目,负责人;

[14]新能源技术研究与应用子课题-长庆油田余热利用技术. 2022.07-2023.06,企业项目,负责人;

[15]储能在油田企业应用文献资料汇编. 2022.11-2023.12, 企业项目, 负责人;

[16]新能源在油田企业应用产业化前景分析资料购置. 2021.05-2021.11,企业项目,负责人;

[17]压裂液基础性能测试与支撑剂运移规律数值模拟. 2021.09-2021.12, 企业项目, 负责人;

学术论文

[1]Ming-Yang Gao, Liang Gong, Zeng-Hui Qian, Chuan-Yong Zhu*, Design and molecular simulation study of microscopic mass transfer behaviour in zeolite-MgCl2composite for thermochemical energy storage, Journal of Energy Storage 178, 123681.

[2] Zhen Liu, Jiamei Li, Wen Jin, Tingting Gong, Chuanyong Zhu*, Haoqi Xu, Chaofan Zeng, Min Wang*, Luhua Jiang*, Revealing the role of interfacial water over cationic surfactant-modified Cu-based catalysts on CO2electroreduction to C2+ products, Journal of Energy Chemistry, 119 (2026): 312–321.

[3] Yu-Bo Wang, Liang Gong, Tao Zhang, Chuan-Yong Zhu*, Adsorption stability and selective interfacial restructuring of multicomponent oil at Quartz interfaces under CO2conditions, Journal of Molecular Liquids, 455 (2026): 129606.

[4] Han Cheng, Qing-Rui Zou, Liang Gong, Chuan-Yong Zhu*, High-flux low-pressure-drop membrane distillation enabled by longitudinal vortex generators: A comparative study with bluff-body promoters, Applied Thermal Engineering, 302 (2026): 131736.

[5] Chuan-Yong Zhu, Jia Wei, Xiao-Dong Wu, Liang Gong*, Modeling of the effective thermal conductivity of composites containing spherical monomers and dimer particles, International Journal of Heat and Mass Transfer, 259 (2026): 128380.

[6] Chuan-Yong Zhu, Han-Ze Liu, Jia Wei, Tao Zhang, Peng-Cheng Dai, Liang Gong*, Physics-informed data-driven model for effective thermal conductivity of ellipsoidal particle reinforced composites, International Journal of Thermal Sciences, 226 (2026): 110797.

[7] Chuan-Yong Zhu, Di Huang, Wen-Xian Lei, Zhi-Yang He, Xin-Yue Duan, Liang Gong*, Prediction of output temperature and fracture permeability of EGS with dynamic injection rate based on deep learning method, Renewable Energy, 239 (2025): 122102.

[8] Chuan-Yong Zhu, Jin-Yi Qin, Yan-Wen Gao, Liang Gong*, Experimental investigation of enhanced direct contact membrane distillation performance through turbulence promoters and structural optimization, Journal of Membrane Science, 723 (2025): 123929.

[9] Chuan-Yong Zhu, Jing-Bei Li, Peng Cheng Dai, Liang Gong*, Elevating high-temperature insulation performance of silica aerogels enabled by innovative surface-structured opacifiers, Applied Thermal Engineering, 255 (2024): 123915.

[10] Chuan-Yong Zhu, Zeng-Hui Qian, Xin-Yue Duan, Liang Gong*, Investigation of water adsorption characteristics of MgCl₂ salt hydrates for thermal energy storage: Roles of hydrogen bond networks and hydration degrees, Journal of Energy Storage, 81 (2024): 110476.

[11] Chuan-Yong Zhu, Yuan-He Ding, Yu-Bai Wu, Liang Gong*, Molecular dynamics study of membrane distillation process through nanopores, Journal of Molecular Liquids, 394 (2024): 123694.

[12] Chuanyong Zhu, Shaoye Zhu, Pengfei Duan, Luling Li, Liang Gong*, Study on leakage and diffusion characteristics of Hydrogen-blended natural gas in utility tunnels and ventilation strategies, Computational Energy Science, 1(2) (2024): 102–116.

[13] Xin-Yue Duan, Man-Rui Xu, Tian-Peng Zhang, Feng-Ming Li, Chuan-Yong Zhu*, Liang Gong, Numerical analysis of the flow and heat transfer characteristics of oil-gas-water three-phase fluid in corrugated plate heat exchanger, Energy, 281(2023): 128260.

[14] Chuan-Yong Zhu, Guang-Lei Yu, Xiao Ren, Bing-Huan Huang, Liang Gong*, Modelling of the Effective Thermal Conductivity of Composites Reinforced with Fibers and Particles by Two-Step Homogenization Method, Composites Science and Technology, 230 (2022) 109531.

[15]Chuan-Yong Zhu, Ze-Kai Gu, Hai-Bo Xu, Bin Ding, Liang Gong, Zeng-Yao Li, Predicting the Effective Thermal Conductivity of Unfrozen Soils with Various Water Contents Based on Artificial Neural Network, Nanotechnology, 33 (2022) 065408.

[16]Chuan-Yong Zhu, Hai-Bo Xu, Xin-Peng Zhao, Liang Gong, Zeng-Yao Li*, A Review on Heat Transfer in Nanoporous Silica Aerogel Insulation Materials and Its Modeling, Energy Storage and Saving, 1 (2022) 217-240.

[17] Chuan-Yong Zhu, Wen-Xin Yang, Hai-Bo Xu, Bin Ding, Liang Gong*, Zeng-Yao Li*, A General Effective Thermal Conductivity Model for Composites Reinforced by Non-contact Spherical Particles, International Journal of Thermal Sciences, 168 (2021): 107088.

[18] Chuan-Yong Zhu, Ze-Kai Gu, Hai-Bo Xu, Bin Ding, Liang Gong*, Zeng-Yao Li*, The Effective Thermal Conductivity of Coated/Uncoated Fiber-Reinforced Composites with Different Fiber Arrangements, Energy, 2021: 120756.

[19] Chuan-Yong Zhu, Yong Guo, Huang-Qing Yang, Bin Ding, Xin-Yue Duan*, Investigation of the Flow and Heat Transfer Characteristics of Helium Gas in Printed Circuit Heat Exchangers with Asymmetrical Airfoil Fins, Applied Thermal Engineering, 186(2021): 116478.

[20] Chuan-Yong Zhu, Zeng-Yao Li*, Modeling of the Conductive Heat Transfer between Two Touching Nanoparticles in Nanoparticle-Based Materials, International Journal of Heat and Mass Transfer, 167(2021):120723.

会议邀请报告

[1] Numerical Modeling of the Effective Thermal Conductivity of Fiber Reinforced Composites, 23rd Conference on Process Integration, Modelling, and Optimisation for Energy Saving and Pollution Reduction (PRES 20), 2020, Xi’an, China. (Keynote lecture)

[2] Study of Flow Drag reduction and Heat Transfer Enhancement in Microchannels With different Surface Properties, 6th International Workshop on Heat-mass Transfer Advances for Energy Conservation and Pollution Control, 2021, Harbin, China. (Keynote lecture)

[3] Molecular simulation of the adsorption and displacement characteristics of gas in shale reservoir, 8th Asian Symposium on Computational Heat Transfer and Fluid Flow (ASCHT2021), 2021, Qingdao, China. (Keynote lecture)

[4] 复杂多组分复合材料等效热导率的理论及数值预测方法,高等学校工程热物理会议第二十八届全国学术会议,2022,昆明,主旨报告

[5] SiO2气凝胶的微观传热机理及其隔热性能研究,2023年中国工程热物理学会传热传质学术会议,2023,成都,主旨报告

[6] The Effective Thermal Conductivity of Coated/Uncoated Fiber-Reinforced Composites with Different Fiber Arrangements, The 4th International Symposium on Computational Energy Science (COMPES 2025), 2025, China. (Keynote lecture)

[7] 水合盐储能热材料热质输运机制与性能研究, 2025国际产学研用合作会议(河南), 2025, 河南,特邀报告

[8] 从第一性原理到机器学习:水合盐储热材料热质输运微观机制, 2025中国工程热物理学会学术年会传热传质学分会, 2025, 中国,主旨报告

 学术兼职

[1]第二届全国传热传质青年委员会委员

[2] Green Energy and Resources 青年编委

[3] Energy Storage and Saving 青年编委