22 |
Dai H., Zhang Z.Y., Zhang M.M.,Xu X.H., Dong G.Z., Leung D.Y.C., Leung M.K.H., Wang Y.F.* 2025 Combined cooling and power: Investigating the coupling effect between a microfluidic fuel cell and a heating chip. Chemical Engineering Journal, 504, 159031 |
23 |
WuQ.Q., Zhang M.M., Xu X.H., Dong G.Z., Wang J.Y., Leung D.Y.C., Leung M.K.H., Wang Y.F.* 2025 Effect of channel rib on oxygen removal in 3D porous transport layer of proton exchange membrane electrolysis cell, a numerical investigation. International Journal of Hydrogen Energy, 106, 171-185 |
24 |
Xing F., Gao Y.L., Zhang M.M., Qin C.Y.* 2025 Ultra-Short-Term Wind Power Forecasting Based on DT-DSC Transformer Model. IEEE Access, 13,22919-22930 |
25 |
H. Dai, E. Ali, X.H. Xu, M.M. Zhang, W.D. Pan, H.Y.H. Kwok, D.Y.C. Leung, M.K.H. Leung, Y.F. Wang* 2025 Microfluidic fuel cell with ultrahigh flow rates, a potential technology for combined cooling and power applications. Energy Conversion and Management, 344, 120300 |
26 |
Yang S.Y., Zhang M.M.*, Feng Y., Jia H.K., Zhao N., Chen Q.W. 2025 Research on the improvement of BEM method for ultra-large wind turbine blades based on CFD and artificial intelligence technologies. Fluids, 10, 112. https://doi.org/10.3390/fluids10050112 |
27 |
Liu Y.F., Zhang M.M.*, Zhang B.F., Jia H.K., Zhao N., Zhang Z.H. 2025 Research on the flow mechanism of a large-scale wind turbine blade based on trailing edge flaps. Fluids, 10, 157-176. https://doi.org/10.3390/fluids10060157 |
28 |
Deng Y.F., Li H., Zhang M.M.* Zhao N., Jia H.K., Chen Q.W. 2025 An approximate model of frequency-dependent aerodynamic damping in decoupled analysis of floating offshore wind turbines. Ships and Offshore Structures, https://doi.org/10.1080/17445302.2025.2549434 |
29 |
Zhou J., Luo C.J.*, Shen R.L., Zhang F.Q., Yu W.Z., Zhang M.M., Liao W.L. 2025 Research on the impact resistance of sandwich-structured battery pack protective plates. Processes 13, 1639-1658. https://doi.org/10.3390/pr13061639 |
30 |
Yang K., Zhang M.M., Yang S.H., Song Y.W., Dong X.H., Deng X.W.* 2025 Pareto frontier for multi-objective wind farm layout optimization balancing power production and turbine fatigue life. Renewable Energy, 252, 123429 |
31 |
Yang Q.S., Pan J., Li T.*, Zhou X.H., Zhang M.M., Kwon S.D. 2026 Real-time cooperative yaw control with informer-based wind predicting for wind power generation enhancement. Renewable Energy, 256, 124083 |
32 |
Liao W.L., Zhang M.M., Yang J.J., Fan Y.H.* , Du T.L., Deng Y.F. 2025 A bidirectional tuned mass damper for flutter suppression in ultra-large offshore wind turbine flexible blades. Journal of Marine Science and Engineering, 13(9), 1716. https://doi.org/10.3390/jmse13091776 |
33 |
Liao W.L., Wang Q., Xu F., Zhang M.M., Yang J.J., Fan Y.H.* 2025 Investigation on the aeroelastic characteristics of ultra-long flexible blades for an offshore wind turbine in extreme environments. Journal of Marine Science and Engineering, 13, 2076-2100, https://doi.org/10.3390/jmse13112076 |
34 |
Gu H.C., Wu Q.Q., Zhang M.M., Xu X.H., Yu J., Bai Y., Wang Y.F.* 2025 Enhancing gas-liquid distribution uniformity in alkaline water electrolyzers by an innovative inlet array structure, a numerical study. Renewable Energy, 256, 124407 |
35 |
Yang W.Q., Zhang M.M.*, Yu J.C. 2025 Self-supervised condition monitoring for wind turbine gearbox based on adaptive feature selection and contrastive residual graph neural network. Energies, 18, 5474, https://doi.org/10.3390/en18205474 |
36 |
Zhang F.Q., Luo C.J., Zhou J., Jin Y.H., Yu W.Z., Zhang M.M., Liao W.L. 2025 Low-velocity impact response of a protection plate with a composite asymmetrical sandwich structure: models and experiments. Processes, 13, 3849-3864, https://doi.org/10.3390/pr13123849 |
37 |
Du T.L.*, Liao W.L., Yang J.J., Zhang M.M., Fan Y.H.** 2025 Dynamic characteristics of 15MW wind turbine blades with geometric nonlinearity considerations. Mechanics of Solids, 60(7), 1-16 |
38 |
Wang M.W., Zhang M.M.*, Qin C.Y., Sun H.Y., Deng X.W. 2026 A Data-driven double Gaussian wake model reflecting the wake evolution process. Renewable Energy, 257, 124804, https://doi.org/10.1016/j.renene.2025.124804 |
39 |
Habib D., Qin C.Y.*, Yang Y., Zhang M.M., Guo Y.T. 2026 Machine learning analysis of oscillatory-turbulent heat transfer using carbon-based diamond nanofluids over MHD nonlinear wavy surfaces. Sustainable Carbon Materials, 2, e005 doi: 10.48130/scm-0025-0013 |