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Urban Physics Winter School
UP2015
UP2011
Physmod 2015
COLEB workshop
18th ICNEM
"let the wind flow" workshop
CrysPoM II
Urban Physics Autumn School 2017
About us
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Research
Urban Microclimate
Urban Climate Modelling
Urban climate modelling at regional scale
Neighborhood scale urban climate modelling
Urban climate modelling at street canyon scale
Urban microclimate model
Wind driven rain model
Vegetation modelling
Link to building energy
Coupling of models
Experimental facilities
Atmospheric boundary layer wind tunnel
Street canyon buoyant flow: J. Allegrini
Wind flow around 9 staggered cubes: A. Kubilay
Coherent structures in urban flow: E. Paterna
Buoyant-forced cavity ventilation of BIPV: P. Mirzaei
Wind flow through angular oriented buildings: J. Allegrini, B. Lopez
Wind flow through trees: L. Manickathan
Laminar and turbulent cavity wind flow: M. Immer
Urban buoyant flow: M. Vonlanthen
Atmospheric boundary layer water tunnel
RIM tunnel
Wind Driven Rain measurement facility
Fluids and Porous Materials
Sorption
Sorption investigated with MD
Heat of sorption
Liquid redistribution
Rain droplets in the built environment
Granular media
Advanced imaging
Wicking in textile
LB modelling of colloids drying to create nano-porous structures
Applications
Hygrothermal and durability behavior of building components
Hygrothermal and durability behavior of heritage artefacts
Moisture behaviour of PEG-treated archaeological oak
Drying of fresh fruits
Food cold chain
Buildings and Urban Energy
Building and urban energy demand modelling
Renewable potential assessment
Energy system modelling and optimization
Projects
SNF - Wind driven rain impact of urban microclimate
SNF - Multiphase fluid flow
SNF - Nanoscale investigations of water effects on wood S2 layer
Past Projects
ccem - ideas4cities
ccem – SECURE
Empa - MAMM
ETH- Two-phase flows in flexible porous media
ETH – UMEM: Urban Multiscale Energy Modelling
ETH - WFSC Coop
SNF – Asphalt
SNF - Heat removal
SNF - NFP IMES
SNF – Rain
SNF – Sorption Induced Deformations
SNS - IBM Colloid
SNS - MD Wood
SNSF - RePoDH
SNSF - Solar drying
SCCER - FEEB&D
ETH Grant - Neigbourhood resolved climate model
ETH Innovedum
ETH Grant - Forecasting rural electricity usage
Downloads
Experimental wind-driven rain database
Geometry 1
Geometry 2
Wind-driven rain solver for OpenFOAM
Cavity Flow
hamFOAM
Education
Courses
D-ARCH - Bachelor
D-ARCH - Master
D-BAUG - Master
MIBS - Master of Integrated Building Systems
ISTP - Master in Science, Technology and Policy
Exams
Student thesis and projects
Urban Climate
1. Large-scale flow structures across building clusters and the implication for microclimate control
2. Controlling evapotranspiration of greening for better mitigating urban heat island effects
4. Wind driven rain and climate change
5. Aerodynamic effect of vegetation on urban microclimate
6. Machine learning for understanding urban heat island
Fluids interaction in porous media
4. Predicting two-phase flow properties in random porous geometries with machine learning
Documents download
Publications
Jan Carmeliet
Articles
Books
PhD Thesis
Open Positions
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