NEWS
Institutional Subscription: Comprehensive Analyses to Enhance Your Global and Local Impact
New Feature: Compare Your Institution with the Previous Year
Find a Professional: Explore Experts Across 197 Disciplines in 221 Countries!
Find a Professional
Print Your Certificate
New! Young University / Institution Rankings 2025
New! Art & Humanities Rankings 2025
New! Social Sciences and Humanities Rankings 2025
Highly Cited Researchers 2025
AD
Scientific Index 2025
Scientist Rankings
University Rankings
Subject Rankings
Country Rankings
Login
Register & Pricing
insights
H-Index Rankings
insights
i10 Productivity Rankings
format_list_numbered
Citation Rankings
subject
University Subject Rankings
school
Young Universities
format_list_numbered
Top 100 Scientists
format_quote
Top 100 Institutions
format_quote
Compare & Choose
local_fire_department
Country Reports
person
Find a Professional
Dong Guodan
Institute of Mechanics, Chinese Academy of Sciences - Beijing / China
Others
AD Scientific Index ID: 5097721
-
Registration, Add Profile,
Premium Membership
Print Your Certificate
Ranking &
Analysis
Job
Experiences (0)
Education
Information (0)
Published Books (0)
Book Chapters (0)
Articles (0)
Presentations (0)
Lessons (0)
Projects (0)
Co-Authors
Subject Leaders
Editorship, Referee &
Scientific Board (0 )
Patents /
Designs (0)
Academic Grants
& Awards (0)
Artistic
Activities (0)
Certificate / Course
/ Trainings (0)
Association &
Society Memberships (0)
Contact, Office
& Social Media
person_outline
Dong Guodan's MOST POPULAR ARTICLES
1-)
Onset of wake meandering for a floating offshore wind turbine under side-to-side motion Journal of Fluid Mechanics 934, A29, 2022
2-)
Predictive capability of actuator disk models for wakes of different wind turbine designs Renewable Energy 188, 269-281, 2022
3-)
How far the wake of a wind farm can persist for? Theoretical and Applied Mechanics Letters 12 (1), 100314, 2022
4-)
Characteristics of wind turbine wakes for different blade designs Journal of Fluid Mechanics 965, A15, 2023
5-)
Efficient coupling of direct forcing immersed boundary‐lattice Boltzmann method and finite element method to simulate fluid‐structure interactions International Journal for Numerical Methods in Fluids 92 (6), 545-572, 2020
ARTICLES
Add your articles
We use cookies to personalize our website and offer you a better experience. If you accept cookies, we can offer you special services.
Cookie Policy
Accept