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Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

  • 18 Similar Profiles
Computer simulation Engineering & Materials Science
Interpolation Engineering & Materials Science
Hydrodynamics Engineering & Materials Science
Liquid sloshing Engineering & Materials Science
Wind turbines Engineering & Materials Science
Computational fluid dynamics Engineering & Materials Science
Offshore wind turbines Engineering & Materials Science
Ships Engineering & Materials Science

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Research Output 1993 2019

  • 824 Citations
  • 12 h-Index
  • 55 Article
  • 48 Conference contribution
  • 1 Paper
  • 1 Comment/debate

An actuator line - immersed boundary method for simulation of multiple tidal turbines

Liu, C. & Hu, C., Jun 1 2019, In : Renewable Energy. 136, p. 473-490 18 p.

Research output: Contribution to journalArticle

Turbines
Actuators
Rotors
Wall function
Computational efficiency
3 Citations

An adaptive multi-moment FVM approach for incompressible flows

Liu, C. & Hu, C., Apr 15 2018, In : Journal of Computational Physics. 359, p. 239-262 24 p.

Research output: Contribution to journalArticle

incompressible flow
Incompressible flow
finite volume method
Finite volume method
interpolation

A reliable open-source package for performance evaluation of floating renewable energy systems in coastal and offshore regions

Liu, Y., Yoshida, S., Hu, C., Makoto, S., Sun, L., Gao, J., Cong, P. & He, G., Oct 15 2018, In : Energy Conversion and Management. 174, p. 516-536 21 p.

Research output: Contribution to journalArticle

Software packages
Green's function
Computer simulation
Costs

A study on a floating type shrouded wind turbine: Design, modeling and analysis

Zhu, H., Makoto, S., Hu, C. & Yoshida, S., Jan 1 2018, (Accepted/In press) In : Renewable Energy. 134, p. 1099-1113 15 p.

Research output: Contribution to journalArticle

Wind turbines
Towers
Bearings (structural)
Mooring
Hinges

Block-based adaptive mesh refinement for fluid–structure interactions in incompressible flows

Liu, C. & Hu, C., Nov 1 2018, In : Computer Physics Communications. 232, p. 104-123 20 p.

Research output: Contribution to journalArticle

incompressible flow
Fluid structure interaction
Incompressible flow
falling
interpolation