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Optimizing urban ventilation environment could relieve these environmental problems.
In this study, an Urban Ventilation Network Model (UVNM) was developed to explore the impact of urban morphology and building height on the urban ventilation condition.
It proposes a practical design parameter as a practical guide for urban ventilation design.
Third, the effects of building height differentials on urban ventilation are connected to urban density.
A practical design parameter (passage ratio) for urban ventilation was proposed based on the calculation results.
Successful and efficient urban planning requires direct, rapid evaluations of the urban ventilation potential.
Similar(39)
This deterioration could be mitigated by improved urban natural ventilation through good urban planning and building design.
Urban wind driven ventilation potential is also discussed.
Based on a Digital Terrain Model and on data of urban roughness a "ventilation map" was produced.
Currently, no clear standards exist for determining urban building natural ventilation rates, especially under varying realistic meteorological conditions.
Simulation of urban airflow and ventilation potential is desirable for building design, however the complex and transient nature of flows in urban environments makes this a challenging task.
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