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Fingerprint Dive into the research topics where Qiang Chen is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 2 Similar Profiles
Fluids Engineering & Materials Science
Floating breakwaters Engineering & Materials Science
Fluid structure interaction Engineering & Materials Science
Free Surface Flow Mathematics
Incompressible Surface Mathematics
Navier Stokes equations Engineering & Materials Science
Hydrodynamics Engineering & Materials Science
Solitons Engineering & Materials Science

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Research Output 2015 2020

A 3D parallel Particle-In-Cell solver for extreme wave interaction with floating bodies

Chen, Q., Zang, J., Ning, D., Blenkinsopp, C. & Gao, J., 1 May 2019, In : Ocean Engineering. 179, p. 1-12

Research output: Contribution to journalArticle

A Blind comparative study of focused wave interactions with a fixed FPSO-like structure (CCP-WSI Blind Test Series 1)

Ransley, E., Yan, S., Brown, S., Mai, T., Ma, Q., Engsig-Karup, A. P., Eskilsson, C., Xie, Z., Stoesser, V., Wan, D., Chen, H., Qian, L., Mingham, C., Causon, D., Gatin, I., Jasak, H., Downie, S., Higuera, P., Buldakov, E., Chen, Q. & 2 othersZang, J. & Greaves, D., 15 Jan 2019, (Accepted/In press) In : International Journal of Offshore and Polar Engineering.

Research output: Contribution to journalArticle

Numerical investigation of wave propagation and transformation over a submerged reef

Li, J., Zang, J., Liu, S., Jia, W. & Chen, Q., 13 Apr 2019, (Accepted/In press) In : Coastal Engineering Journal.

Research output: Contribution to journalArticle

2 Citations (Scopus)

On hydrodynamic characteristics of gap resonance between two fixed bodies in close proximity

Gao, J., Zang, J., Chen, L., Chen, Q., Ding, H. & Liu, Y., 1 Feb 2019, In : Ocean Engineering. 173, p. 28-44 17 p.

Research output: Contribution to journalArticle

On the hydrodynamic performance of a vertical pile-restrained WEC-type floating breakwater

Chen, Q., Zang, J., Birchall, J., Ning, D. Z., Zhao, X. & Gao, J., 28 Jun 2019, In : Renewable Energy. 146, p. 414-425

Research output: Contribution to journalArticle

Thesis

Development of a full particle PIC method for simulating nonlinear wave-structure interaction

Author: Chen, Q., 20 Aug 2017

Supervisor: Zang, J. (Supervisor), Williams, C. (Supervisor), Dimakopoulos, A. (External person) (Supervisor) & Kelly, D. M. (External person) (Supervisor)

Student thesis: Doctoral ThesisPhD

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