Ko, J.

Marine Energy Documents Related to Ko, J.

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 Ko, J..

Total: 8

Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Investigation on Wake Characteristics of Two Tidal Stream Turbines in Tandem Using a Mobile Submerged PIV System Jung, S., Lee, H., Jang, I. Journal Article Current, Axial Flow Turbine, Tidal Lab Data Array Effects, Hydrodynamics, Performance
Study on the Wake Characterization of a Horizontal-Axis Tidal Stream Turbine Utilizing a PIV System in a Large Circulating Water Tunnel Jung, S., Lee, H., Jeong, D. Journal Article Current, Axial Flow Turbine Lab Data Hydrodynamics
Experimental study of a fully passive flapping hydrofoil turbine with a dual configuration and a coupling mechanism Kim, J., Kim, D-G., Jung, S. Journal Article Current, Oscillating Hydrofoil Lab Data Performance, Structural
Study of the power performance of a variable-camber hydrofoil used in a flapping tidal stream turbine Dang, H., Jeong, D., Ko, J. Journal Article Current, Tidal Modeling Hydrodynamics, Performance, Structural
Design, implementation, and power estimation of a lab-scale flapping-type turbine Sitorus, P., Le, T., Ko, J. Journal Article Current Modeling, Scale Device Hydrodynamics, Performance, Structural
Effect of hydrofoil flexibility on the power extraction of a flapping tidal generator via two- and three-dimensional flow simulations Le, T., Ko, J. Journal Article Current, Oscillating Hydrofoil, Tidal Modeling Materials
Nonlinear dynamic model for flapping-type tidal energy harvester Truong, T., Sitorus, P., Park, H. Journal Article Current, Tidal Modeling Hydrodynamics, Performance, Structural
Morphological effect of a scallop shell on a flapping-type tidal stream generator Le, T., Ko, J., Byun, D. Journal Article Current, Tidal Modeling Performance