CoolWalks for active mobility in urban street networks

Fuente: arXiv
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Main Authors: Wolf, Henrik, Vierø, Ane Rahbek, Szell, Michael
Format: Preprint
Published: 2024
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author Wolf, Henrik
Vierø, Ane Rahbek
Szell, Michael
author_facet Wolf, Henrik
Vierø, Ane Rahbek
Szell, Michael
contents Walking is the most sustainable form of urban mobility, but is compromised by uncomfortable or unhealthy sun exposure, which is an increasing problem due to global warming. Shade from buildings can provide cooling and protection for pedestrians, but the extent of this potential benefit is unknown. Here we explore the potential for shaded walking, using building footprints and street networks from both synthetic and real cities. We introduce a route choice model with a sun avoidance parameter $α$ and define the CoolWalkability metric to measure opportunities for walking in shade. We derive analytically that on a regular grid with constant building heights, CoolWalkability is independent of $α$, and that the grid provides no CoolWalkability benefit for shade-seeking individuals compared to the shortest path. However, variations in street geometry and building heights create such benefits. We further uncover that the potential for shaded routing differs between grid-like and irregular street networks, forms local clusters, and is sensitive to the mapped network geometry. Our research identifies the limitations and potential of shade for cool, active travel, and is a first step towards a rigorous understanding of shade provision for sustainable mobility in cities.
format Preprint
id arxiv_https___arxiv_org_abs_2405_01225
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle CoolWalks for active mobility in urban street networks
Wolf, Henrik
Vierø, Ane Rahbek
Szell, Michael
Physics and Society
Computers and Society
Walking is the most sustainable form of urban mobility, but is compromised by uncomfortable or unhealthy sun exposure, which is an increasing problem due to global warming. Shade from buildings can provide cooling and protection for pedestrians, but the extent of this potential benefit is unknown. Here we explore the potential for shaded walking, using building footprints and street networks from both synthetic and real cities. We introduce a route choice model with a sun avoidance parameter $α$ and define the CoolWalkability metric to measure opportunities for walking in shade. We derive analytically that on a regular grid with constant building heights, CoolWalkability is independent of $α$, and that the grid provides no CoolWalkability benefit for shade-seeking individuals compared to the shortest path. However, variations in street geometry and building heights create such benefits. We further uncover that the potential for shaded routing differs between grid-like and irregular street networks, forms local clusters, and is sensitive to the mapped network geometry. Our research identifies the limitations and potential of shade for cool, active travel, and is a first step towards a rigorous understanding of shade provision for sustainable mobility in cities.
title CoolWalks for active mobility in urban street networks
topic Physics and Society
Computers and Society
url https://arxiv.org/abs/2405.01225