Lu, H.

Marine Energy Documents Related to Lu, H.

Tethys Engineering is a knowledge hub that contains documents and resources about the technical aspects of marine energy development. The table below contains all of the documents in the Tethys Engineering Knowledge Base associated with Lu, H..

Total: 9

Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Economic and Exergy Assessments for Ocean Thermal Energy Conversion Using Environment-Friendly Fluids Lu, H., Fan, C., Li, D. Journal Article OTEC, Closed-Cycle Modeling Power Take Off
FVCOM-CFD model-based study of hydraulic turbine arrays in Mount Putuo tidal current energy test site Lu, H., Wang, X., Bai, Z. Journal Article Current, Tidal Modeling Array Effects, Hydrodynamics, Performance
An innovative ocean thermal energy conversion system with zeotropic Rankine cycle and direct contact membrane distillation for enhanced efficiency and sustainability Ma, Q., Feng, X., Li, J. Journal Article OTEC Modeling
Theoretical, numerical and experimental research on an innovative ocean thermal energy conversion coupled VMD desalination system Ma, Q., Liu, X., Tong, L. Journal Article OTEC, Closed-Cycle Lab Data, Modeling
Numerical analyses on the feasibility of TC type nozzles in ocean thermal energy Conversion turbines Ma, Q., Huang, J., Lu, H. Journal Article OTEC Modeling Structural
Thermodynamic analysis and turbine design of a 100 kW OTEC-ORC with binary non-azeotropic working fluid Ma, Q., Gao, Z., Huang, J. Journal Article OTEC, Open-Cycle Modeling Materials, Performance, Structural
Hybrid machine learning models for predicting short-term wave energy flux Lu, H., Xi, D., Ma, X. Journal Article Wave Modeling
A Novel Ocean Thermal Energy Driven System for Sustainable Power and Fresh Water Supply Ma, Q., Zheng, Y., Lu, H. Journal Article OTEC Modeling Performance
The surface wave effects on the performance and the loading of a tidal turbine Guo, X., Yang, J. , Gao, Z. Journal Article Current, Tidal Lab Data, Modeling, Scale Device Hydrodynamics, Performance