
姓名:任葶葶
邮箱:tingting_ren@wit.edu.cn
地址:武汉工程大学流芳校区卓越楼南楼S306
任葶葶,讲师,硕士生导师。2021年6月于哈尔滨工程大学核科学与技术专业获博士学位,2021年8月起在武汉工程大学机电与工程学院任教。主要从事微通道流动传热、气泡动力学、电化学制氢过程能质传递及界面输运相关的实验与理论计算研究。先后主持湖北省自然科学基金青年项目、武汉市知识创新专项项目在内的5个纵横向项目。在核能与传热传质工程领域知名期刊发表论文30余篇,其中以第一或通讯作者发表SCI论文11篇,指导本科生获得全国大学生过程装备与控制竞赛一等奖,获得武汉工程大学优秀班主任称号。欢迎积极主动、勤奋踏实的学生报考研究生。
主要研究方向
微通道流动传热、气泡动力学、电化学制氢过程能质传递及界面输运
开设课程
本科生课程:《化工机械设备基础》、《工程制图》
近年主持或参加的科研项目
1. 湖北省科学技术厅, 湖北省自然科学青年基金, 2024AFB255, 窄缝通道内沸腾传热机理及相界面浓度输运机制研究, 2024-03至2026-03, 主持
2. 武汉市科技局, 武汉市科技局知识创新专项-曙光计划项目, 2023020201020442, 轴向非均匀加热窄矩形通道过冷沸腾相界面特性及传热机理研究, 2023-07至2025-06,主持
3. 武汉工程大学自然科学基金,主持
4. 企业横向:热与辐射可视化技术服务,主持
5. 企业横向:系统运行特性及控制仿真,主持
代表性研究成果
[1] Qin CL,† Ren TT,† Huang L, Zhang XT, Gong YH, Wang GQ, Liu P. Photocatalytic hydrogen production by splitting atmospheric water for simultaneous water harvesting and power generation [J]. Renewable Energy. 2026, 256: 124271.
[2] Qin CL,† Ren TT,† Gui CX, Liu P, Wei QJ, Liu WJ, Zhou ZW, Huang YN, Fan K, Huang L. Solar-driven hydrogen and water co-generation based on atmospheric water harvesting [J]. Chemical Engineering Journal. 2025, 504: 158721.
[3] Wu YL, Ren TT*, Huang L, Zhang XT, Yu YN, Liu P*. Numerical analysis on flow and heat transfer performance of sCO2 in a vertical helically U-tube [J]. International Journal of Heat and Mass Transfer, 2025, 249: 127265.
[4] Ren TT, Huang L, Xie SZ, Chen GP, Liu P, Chen LG. Photothermal hygroscopic hydrogel for simultaneous generation of clean water and electricity [J]. SCIENCE CHINA Technological Sciences, 2023, 66(10): 2958-2967.
[5] Ren TT, Zhu ZQ, Zhang R, Shi JW, Yan CQ. Development of force balance model for prediction of bubble departure diameter and lift-off diameter in subcooled flow boiling [J]. International Journal of Heat and Mass Transfer, 2020, 161: 120245.
[6] Ren TT, Zhu ZQ, Shi JW, Yan CQ, Zhang R. Experimental study on bubble sliding for upward subcooled flow boiling in a narrow rectangular channel [J]. International Journal of Heat and Mass Transfer, 2020, 152: 119489.
[7] Ren TT, Zhu ZQ, Yan MY, Shi JW, Yan CQ. Experimental study on bubble nucleation and departure for subcooled flow boiling in a narrow rectangular channel [J]. International Journal of Heat and Mass Transfer, 2019, 144: 118670.
[8] Ren TT, Zhu ZQ, Wang JJ, Yan CQ. Numerical simulation of flow resistance characteristics in a rod bundle channel under rolling conditions [J]. Annals of Nuclear Energy, 2023, 181: 109573.
[9] Ren TT, Zhu ZQ, Chen LG, Ge YL, Huang L, Xie SZ, Liu P. Numerical simulation of flow resistance characteristics in a rod bundle channel under vertical and inclined conditions [J]. Progress in Nuclear Energy, 2022, 153: 104450.