Numerical Simulations of the Urban Microclimate
Licentiate thesis, 2023
CFD modelling
Immersed Boundary
Experimental validation
Wind comfort
Urban microclimate
Author
Patricia Vanky
Chalmers, Mechanics and Maritime Sciences (M2), Fluid Dynamics
P. Vanky, A. Mark, F. Hunger, M. Haeger-Eugensson, J. Tarraso, M. Adelfio, A. Sasic Kalagasidis, G. Sardina Addressing wind comfort in an urban area using an immersed boundary framework
P. Vanky, A. Mark, F. Hunger, M. Haeger-Eugensson, J. Tarraso, M. Adelfio, A. Sasic Kalagasidis, G. Sardina Evaluation of Wind in Urban Regions with Complex Local Topography Using an Immersed Boundary Framework
Driving Forces
Sustainable development
Subject Categories
Fluid Mechanics and Acoustics
Thesis for the degree of Licentiate – Department of Mechanics and Maritime Sciences: 2023:01
Publisher
Chalmers
HA3
Opponent: Wei Liu, Department of Civil and Architectural Engineering, KTH Royal Institute of Technology, Sweden