Beihang University

Marine Energy Documents Related to Beihang University

Total results: 12
Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Modeling, analysis and control of an inertial wave energy converter and hydraulic power take-off unit Jia, H., Pei, Z., Tang, Z. Journal Article Wave Modeling Power Take Off
Anti-Swelling 3D Nanohydrogel for Efficient Osmotic Energy Conversion Lin, C., Jia, W., Chang, L. Journal Article Salinity Gradient, Reverse Electrodialysis Modeling Materials, Performance
SPH modeling and experimental validation on power performance and dynamic response of a novel swing-wing wave energy converter Liu, K., Chen, D., Liang, P. Journal Article Wave, Attenuator Lab Data, Modeling Control, Power Take Off
Self-Assembly of Hierarchical Silicon-Containing Block Copolymers with Cross-Linkable 3 nm Smectic Motifs for Nanopatterning and Osmotic Energy Conversion Membranes Sun, J., Cui, C., Ma, M. Journal Article Salinity Gradient, Reverse Electrodialysis Lab Data, Modeling Materials, Performance
High Ionic Flux Sub-Micro Channels Membrane Model for Salinity Gradient Power Generation Jiang, J., Lu, B., Xu, Y. Journal Article Salinity Gradient, Reverse Electrodialysis Modeling Performance
A review of energy extraction from wind and ocean: Technologies, merits, efficiencies, and cost Rehman, S., Alhems, L., Alam, M. Journal Article Current, Tidal, Ocean Current, Wave, Salinity Gradient, OTEC Performance
Study of a novel rotational speed amplified dual turbine wheel wave energy converter Xiao, H., Liu, Z., Zhang, R. Journal Article Wave Lab Data, Modeling Hydrodynamics, Performance, Power Take Off
Gap Confinement Effect of a Tandem Nanochannel System and Its Application in Salinity Gradient Power Generation Wang, Y., Chen, H., Zhai, J. Journal Article Salinity Gradient Performance
Charged porous asymmetric membrane for enhancing salinity gradient energy conversion Hou, S., Zhang, Q., Zhang, Z. Journal Article Salinity Gradient Materials
Bio-inspired Nanocomposite Membranes for Osmotic Energy Harvesting Chen, C., Liu, D., He, L. Journal Article Salinity Gradient Materials
Control design of a gyro-based wave energy converter for autonomous underwater vehicle Hou, P., Liu, L., Guo, L. Journal Article Wave Modeling Control
Hybrid nanochannel membrane based on polymer/MOF for high-performance salinity gradient power generation Li, R. , Jiang, J., Liu, Q. Journal Article Salinity Gradient, Reverse Electrodialysis Lab Data, Modeling Hybrid Devices, Performance