Western Carolina University

Marine Energy Documents Related to Western Carolina University

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 Western Carolina University.

Total: 9

Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Scaling Down a Wave Energy Converter to Match the Wave Spectrum of the North Carolina Coast Gursel, M., Miller, R., Karayaka, B. Presentation Wave Modeling
Analysis of Ocean Wave Energy-Driven Desalination Methods for Sustainable Water Production Hasan, I., Karayaka, H., Kandil, T. Conference Paper Wave, Point Absorber Modeling Performance
Machine Learning-Based Power Estimation and Coastal Adaptation of Wave Energy Converters Gursel, O. Thesis Wave, Point Absorber Modeling Control, Performance
Cost investigation of battery-supercapacitor hybrid energy storage system for grid-connected hourly dispatching wave energy converter power Roy, P., Karayaka, H., He, J. Journal Article Wave Modeling Grid Integration, Hybrid Devices
Irregular Wave Energy Extraction Analysis for a Rack and Pinion Based Power Take-off System Amin, M., Karayaka, H., Yanik, P. Conference Paper Wave, Point Absorber Modeling Control, Performance, Power Take Off
Investigations into Balancing Peak-to-Average Power Ratio and Mean Power Extraction for a Two-Body Point-Absorber Wave Energy Converter Karayaka, H., Yu, Y., Muljadi, E. Journal Article Wave Modeling Control, Power Take Off
Investigating the Impact of Power-Take-Off System Parameters and Control Law on a Rotational Wave Energy Converter's Peak-To-Average Power Ratio Reduction Yu, Y., Tom, N., Karayaka, H. Conference Paper Wave, Point Absorber Modeling Control, Performance, Power Take Off
Hardware-in-the-Loop Simulation for the Proposed Slider-Crank Wave Energy Conversion Device Hollis, T., Karayaka, H., Yu, Y. Conference Paper Wave Modeling Power Take Off
A rule-based phase control methodology for a slider-crank wave energy converter power take-off system Sang, Y., Karakaya, H., Yan, Y. Journal Article Wave, Point Absorber Modeling Control, Performance, Power Take Off