Effects of hydrophilic surface on heat transfer performance and oscillating motion for an oscillating heat pipe T Hao, X Ma, Z Lan, N Li, Y Zhao, H Ma International Journal of Heat and Mass Transfer 72, 50-65, 2014 | 88 | 2014 |
Heat transfer performance of polytetrafluoroethylene oscillating heat pipe with water, ethanol, and acetone as working fluids T Hao, H Ma, X Ma International Journal of Heat and Mass Transfer 131, 109-120, 2019 | 69 | 2019 |
Effects of superhydrophobic and superhydrophilic surfaces on heat transfer and oscillating motion of an oscillating heat pipe T Hao, X Ma, Z Lan, N Li, Y Zhao Journal of heat transfer 136 (8), 082001, 2014 | 60 | 2014 |
Flow patterns and transition characteristics for steam condensation in silicon microchannels X Ma, X Fan, Z Lan, T Hao Journal of Micromechanics and Microengineering 21 (7), 075009, 2011 | 30 | 2011 |
Effects of hydrophilic and hydrophobic surfaces on start-up performance of an oscillating heat pipe T Hao, X Ma, Z Lan Journal of Heat Transfer 140 (1), 012002, 2018 | 29 | 2018 |
Startup and transport characteristics of oscillating heat pipe using ionic liquids Q Liang, T Hao, K Wang, X Ma, Z Lan, Y Wang International Communications in Heat and Mass Transfer 94, 1-13, 2018 | 27 | 2018 |
Analysis of the transition from laminar annular flow to intermittent flow of steam condensation in noncircular microchannels T Hao, X Ma, Z Lan, R Jiang, X Fan International Journal of Heat and Mass Transfer 66, 745-756, 2013 | 25 | 2013 |
Experimental investigation of oscillating heat pipe with hybrid fluids of liquid metal and water T Hao, H Ma, X Ma Journal of Heat Transfer 141, 071802, 2019 | 19 | 2019 |
Two-phase flow patterns for condensation of ethanol-water mixtures in triangular microchannels R Jiang, Z Lan, T Hao, Y Zheng, K Wang, Y Yang, X Ma Applied Thermal Engineering 121, 361-367, 2017 | 14 | 2017 |
Experimental study on two-phase flow pressure drop during steam condensation in trapezoidal microchannels X Fan, X Ma, L Yang, Z Lan, T Hao, R Jiang, T Bai Experimental Thermal and Fluid Science 76, 45-56, 2016 | 14 | 2016 |
Multiple bounces and oscillatory movement of a microdroplet in superhydrophobic minichannels T Hao, K Wang, Y Chen, X Ma, Z Lan, T Bai Industrial & Engineering Chemistry Research 57 (12), 4452-4461, 2018 | 13 | 2018 |
Liquid film transport around Taylor bubble in a microchannel with gas cavities X Ye, T Hao, Y Chen, X Ma, R Jiang Chemical Engineering and Processing-Process Intensification 148, 107828, 2020 | 11 | 2020 |
On the reticulate pattern and heat transfer performance of the topologically optimized microchannel heat sink Y Chen, S Zhang, Y Liu, R Wen, T Hao, Z Lan, R Yang, X Ma Applied Thermal Engineering 239, 122137, 2024 | 8 | 2024 |
Heat transfer performance of wettability gradient surface oscillating heat pipe X Yu, Huiwen、Cui, Wenyu、Hao, Tingting、Ma CHEMICAL INDUSTRY AND ENGINEERING PROGRESS 39 (11), 4375-4383, 2020 | 8 | 2020 |
Scaling of the bubble/slug length of Taylor flow in a meandering microchannel Q Liang, X Ma, K Wang, J Chun, Z Lan, T Hao, Y Wang Chinese Journal of Chemical Engineering 27 (11), 2615-2625, 2019 | 8 | 2019 |
Heat transfer performance of oscillating heat pipe with micro-nano droplets of liquid metal CUI Wenyu, J Zhen, HAO Tingting, WEN Rongfu, MA Xuehu Chemical Industry and Engineering Progress 41 (1), 95, 2022 | 7 | 2022 |
Surface wettability effect on carbon dioxide-water two-phase flow and mass transfer in rectangular microchannel SUN Junjie, HAO Tingting, MA Xuehu, LAN Zhong CIESC Journal 66 (9), 3405, 2015 | 7 | 2015 |
Effects of hydrophobic surface on heat transfer performance and oscillating motion for a pulsating heat pipe TT HAO, L MA XH Journal of Engineering Thermophysics 1, 152-154, 2014 | 7 | 2014 |
Experimental investigation of the effects of superhydrophobic and superhydrophilic surfaces on the pulsating heat pipe TT Hao, XH Ma, Z Lan, N Li J Eng Thermophys 36, 2670-2673, 2015 | 6 | 2015 |
Experimental Investigation of a Three-Phase Oscillating Heat Pipe T Hao, H Ma, X Ma Journal of Thermal Science and Engineering Applications 11, 061006, 2019 | 5 | 2019 |