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Computational Analysis of Aerodynamic Blade Load Transfer to the Powertrain of a Direct-Drive Multi-MW Wind Turbine (2025)
Journal Article
Bichan, M., Jaen-Sola, P., Muhammad Sukki, F., & Sellami, N. (2025). Computational Analysis of Aerodynamic Blade Load Transfer to the Powertrain of a Direct-Drive Multi-MW Wind Turbine. Machines, 13(7), Article 575. https://doi.org/10.3390/machines13070575

This paper details the development of a full turbine model and ensuing aero-servo-elastic analysis of the International Energy Agency’s 15MW Reference Wind Turbine. This model provides the means to obtain realistic turbine performance data, of which... Read More about Computational Analysis of Aerodynamic Blade Load Transfer to the Powertrain of a Direct-Drive Multi-MW Wind Turbine.

Optical and Electrical Properties of Amorphous Carbon Thin Films Grown from Mushroom Waste Oil using Chemical Vapor Deposition (CVD) (2025)
Journal Article
Radhianie-Rining, A., Ahmad, N., Muhammad-Sukki, F., & Wan-Mohtar, W. A. A. Q. I. (2025). Optical and Electrical Properties of Amorphous Carbon Thin Films Grown from Mushroom Waste Oil using Chemical Vapor Deposition (CVD). PaperASIA, 41(3b), 113-120. https://doi.org/10.59953/paperasia.v41i3b.414

Amorphous carbon thin films have been successfully deposited using the Chemical Vapor Deposition (CVD) technique with various amounts of natural oyster mushroom (P.ostreatus) waste oil as carbon precursors onto the glass substrates. This study e... Read More about Optical and Electrical Properties of Amorphous Carbon Thin Films Grown from Mushroom Waste Oil using Chemical Vapor Deposition (CVD).

Effect of different titanium dioxide (TiO2) deposition layers for dye-sensitized solar cell (DSSC) application (2025)
Journal Article
Pirdaus, N. A., Ahmad, N., Muhammad-Sukki, F., & Wan-Mohtar, W. A. A. Q. I. (2025). Effect of different titanium dioxide (TiO2) deposition layers for dye-sensitized solar cell (DSSC) application. Electrochimica Acta, 527, Article 146267. https://doi.org/10.1016/j.electacta.2025.146267

Dye-sensitized solar cell (DSSC) is a new type of solar cell that has attracted interest due to its ability to convert energy at a low cost, with simple fabrication, and non-toxic nature. Utilisation of oyster mushroom dye as a natural dye for DSSC i... Read More about Effect of different titanium dioxide (TiO2) deposition layers for dye-sensitized solar cell (DSSC) application.

Wireless Rechargeable Sensor Networks: Energy Provisioning Technologies, Charging Scheduling Schemes, and Challenges (2025)
Journal Article
Abdel Aziz, S., Wang, X., Hawbani, A., Qureshi, . B., Alsamhi, S. H., Alabsi, A., Zhao, L., Al-Dubai, A., & Ismail, . A. (online). Wireless Rechargeable Sensor Networks: Energy Provisioning Technologies, Charging Scheduling Schemes, and Challenges. IEEE Transactions on Sustainable Computing, https://doi.org/10.1109/TSUSC.2025.3549414

Recently, a plethora of promising green energy provisioning technologies has been discussed in the orientation of prolonging the lifetime of energy-limited devices (e.g., sensor nodes). Wireless rechargeable sensor networks (WRSNs) have emerged among... Read More about Wireless Rechargeable Sensor Networks: Energy Provisioning Technologies, Charging Scheduling Schemes, and Challenges.

Vortex generators in heat sinks: Design, optimisation, applications and future trends (2025)
Journal Article
Ismail, M., Ali, A. M., & Costa Pereira, S.-C. (2025). Vortex generators in heat sinks: Design, optimisation, applications and future trends. Results in Engineering, 25, Article 104216. https://doi.org/10.1016/j.rineng.2025.104216

Vortex generators (VGs) have been identified as an exceedingly effective method in augmenting heat transfer in minichannels, a significant feature of cutting-edge heat sinks, heat exchangers and electronics cooling tools. This paper aims to discuss t... Read More about Vortex generators in heat sinks: Design, optimisation, applications and future trends.

Molecular dynamics simulations and experimental measurements of density and viscosity of phase change material based on stearic acid with graphene nanoplatelets (2025)
Journal Article
Gonzalez, M. A., Tenorio, M. J., Bismilla, A. Z., D'Oliveira, E. J., Costa Pereira, S. C., & Sanchez-Vicente, Y. (2025). Molecular dynamics simulations and experimental measurements of density and viscosity of phase change material based on stearic acid with graphene nanoplatelets. Fluid Phase Equilibria, 593, Article 114361. https://doi.org/10.1016/j.fluid.2025.114361

Understanding the thermophysical properties of nano-enhanced phase change materials (NEPCMs) is crucial for developing thermal energy storage technologies. Thermal conductivity of NEPCMs is the most studied property, but investigations on density and... Read More about Molecular dynamics simulations and experimental measurements of density and viscosity of phase change material based on stearic acid with graphene nanoplatelets.