Yuan, J., Liu, H.*, Diao, L., Chen B, Ji, Y., Yin X., Li Z., Ding, A., & Zhang, J. Numerical investigation of bubble dynamics and boiling heat transfer in porous structures via phase-change lattice Boltzmann method. Applied Thermal Engineering, 2026, 308, 133423.
Zhu, J., Liu, H.*, Zhao, J., Wang A., Wu, M., & Mao, Z.* Numerical investigations on thermal management characteristics of a novel microchannel heat sink with integrated porous distributor and baffle structures. International Communications in Heat and Mass Transfer, 2026, 180, 112640.
Yuan, J., Liu, H.*, Ding, C., Zhang, J., Pei, X., & Ji, Y., Numerical study of pool boiling characteristics in cavity surfaces with embedded microstructures based on lattice Boltzmann method. International Journal of Heat and Fluid Flow, 2026, 122, 110699.
Zhao, J., Liu, H.*, Zhu, J., Ding, A., Pei, X., Ji, Y., & Eze, C. A novel cooling plate with integrated porous flow divider for energy-efficient thermal management of cell module. Applied Thermal Engineering, 2026, 291, 130200.
Feng, Y., Ji, Y.*, Liu, H.*, Liu, Z., & Yang, Y. Figure of merits for oscillating heat pipe working fluids: From low/ambient to high-temperature. International Communications in Heat and Mass Transfer, 2026, 172, 110324.
Zhao, J., Liu, H.*, Zhu, J., Ding, A., Niu, D., Gao, H., & Ji, Y.* (2025). Numerical investigations of liquid-based battery thermal management performance with distributary manifold channels. International Communications in Heat and Mass Transfer, 169, 109953.
Yang, T., Liu, H.*, Li, H., Ding, A., & Ji, Y.*, (2025). Enhancement of integrated preheating and cooling performance of liquid-based battery thermal management by topology optimization. Thermal Science and Engineering Progress, 66, 104074.
Yang, T., Liu, H.*, Zhang, W., Ding, A., & Wu, M. (2025). Multi-Objective Topology Optimization of the Cooling Plate for Battery Thermal Management. Batteries, 11(11), 406.
Feng, Y., Ji, Y.*, Liu, H.*, Yang, X., & Li, Y. (2025). Effect of alkali metals working fluids on oscillating heat pipes performance: An experimental and machine learning approach. Applied Thermal Engineering, 126136.
Liu, H.*, Li, H., Shi, Y., & Ji, Y. (2025). Performance Evaluation of a Novel Cold Plate with Double-Layer Interdigitated Flow Channels for Battery Thermal Management. Heat Transfer Engineering, 46(19–20), 1750–1764.
Liu, H., Tan, B., & Zhao, J. (2025). Heat Transfer in Low Carbon Energy Systems. Heat Transfer Engineering, 46(19–20), 1709–1710.
Wu, M., Ji, Y.*, Wang, Y., Feng, Y., & Liu, H.* (2024). Experimental study on the effects of structural parameters on the heat transfer performance of sodium-potassium alloy high-temperature oscillating heat pipes. Case Studies in Thermal Engineering, 60, 104737.
Ji, Y.*, Li, Y., Xu, F., Yu, C., & Liu, H.* (2024). An experimental investigation on oscillating heat pipe under trans-critical conditions. International Communications in Heat and Mass Transfer, 155, 107552.
Liu, H., Jin, C., Li, H., & Ji, Y. (2023). A numerical study of PCM battery thermal management performance enhancement with fin structures. Energy Reports, 9, 1793-1802.
Liu, H., Gao, X., Zhao, J., Yu, M., Niu, D., & Ji, Y. (2022). Liquid-based battery thermal management system performance improvement with intersected serpentine channels. Renewable Energy, 199, 640-652.
Liu, H., Gao, X., Yu, M., Niu, D., & Ji, Y. (2022). Thermal-Hydraulic Characteristics of the Liquid-Based Battery Thermal Management System with Intersected Serpentine Channels. Water, 14, 3148.
Liu, H., Ahmad, S., Shi, Y., & Zhao, J. (2021). A parametric study of a hybrid battery thermal management system that couples PCM copper foam composite with helical liquid channel cooling. Energy, 231, 120869.
Liu, H., Deng, W., Ding, P., & Zhao, J. (2021). Investigation of the effects of surface wettability and surface roughness on nanoscale boiling process using molecular dynamics simulation. Nuclear Engineering and Design, 382, 111400.
Liu, H., Ahmad, S., Chen, J., & Zhao, J. (2020). Molecular dynamics study of the nanoscale boiling heat transfer process on nanostructured surfaces. International Communications in Heat and Mass Transfer, 119, 104963.
Liu, H., Qin, X., Ahmad, S., Tong, Q., & Zhao, J. (2019). Molecular dynamics study about the effects of random surface roughness on nanoscale boiling process. International Journal of Heat and Mass Transfer, 145, 118799.
Liu, H., Chika, E., & Zhao, J. (2018). Investigation into the effectiveness of nanofluids on the mini-channel thermal management for high power lithium ion battery. Applied Thermal Engineering, 142, 511-523.
Liu, H., Wei, Z., He, W., & Zhao, J. (2017). Thermal issues about Li-ion batteries and recent progress in battery thermal management systems: A review. Energy Conversion and Management, 150, 304-330.
Deng, W., Ma, S., Li, W., Liu, H., & Zhao, J. (2022). A molecular dynamics investigation of boiling heat transfer over wettability thermo-responsive surface. International Journal of Heat and Mass Transfer, 191, 122856.
Shi, Y., Wei, Z., Liu, H., & Zhao, J. (2022). Dynamic modeling of long-term operations of vanadium/air redox flow battery with different membranes. Journal of Energy Storage, 50, 104171.
Deng, W., Ahmad, S., Liu, H., Chen, J., & Zhao, J. (2022). Improving boiling heat transfer with hydrophilic/hydrophobic patterned flat surface: A molecular dynamics study. International Journal of Heat and Mass Transfer, 182, 121974.
Ahmad, S., Deng, W., Liu, H., Khan, S. A., Chen, J., & Zhao, J. (2021). Molecular dynamics simulations of nanoscale boiling on mesh-covered surfaces. Applied Thermal Engineering, 195, 117183.
Ahmad, S., Liu, H., Shi, Y., Chen, J., & Zhao, J. (2021). The study of nucleation site interactions on the mixed wettability rough surface. International Communications in Heat and Mass Transfer, 126, 105372.
Shi, Y., Ahmad, S., Liu, H., Lau, K. T., & Zhao, J. (2021). Optimization of air-cooling technology for LiFePO4 battery pack based on deep learning. Journal of Power Sources, 497, 229894.
Chen, J., Ahmad, S., Cai, J., Liu, H., Lau, K. T., & Zhao, J. (2021). Latest progress on nanotechnology aided boiling heat transfer enhancement: A review. Energy, 215, 119114.
Ahmad, S., Eze, C., Liu, H., & Zhao, J. (2020). Lattice Boltzmann study of bubble dynamics and heat transfer on a hybrid rough surface with a cavity-pillar structure. International Communications in Heat and Mass Transfer, 119, 104896.