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Bibliographic Details
Main Authors: Moi, Jacopo, Chirici, Gherardo, Chiesi, Leonardo, Francini, Saverio, Borghi, Costanza, Costa, Paolo, Gramellini, Bianca, Caldarelli, Guido
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2404.12902
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author Moi, Jacopo
Chirici, Gherardo
Chiesi, Leonardo
Francini, Saverio
Borghi, Costanza
Costa, Paolo
Gramellini, Bianca
Caldarelli, Guido
author_facet Moi, Jacopo
Chirici, Gherardo
Chiesi, Leonardo
Francini, Saverio
Borghi, Costanza
Costa, Paolo
Gramellini, Bianca
Caldarelli, Guido
contents Green areas are a crucial element in evolution of a city, contributing to improve citizens' life, to reduce effects of climate change, and to make possible the survival of other species in urban areas. Unfortunately, the above effects are difficult to assess quantitatively for regulators, stakeholders and experts, making troublesome the planning of city development. Here we present a method to estimate the impact of these areas in the city life based on the network topology of the city itself and on a simple model of dynamics on this structure. Movements between various areas of the city are simulated by means of an agent-based biased-diffusion process where citizens try to reach the nearest Public Green Area (PGA) from their position and the model is fed with real data about the density of populations in the cases of study. Firstly, we define a centrality measure of PGA's based on average farness measured on the city network; this approach outperforms information based on the simple topology. We then improve this quantity by taking into account the occupation of PGA's, thereby providing a quantitative measure of PGA usage for regulators.
format Preprint
id arxiv_https___arxiv_org_abs_2404_12902
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Urban topology and dynamics can assess green areas importance
Moi, Jacopo
Chirici, Gherardo
Chiesi, Leonardo
Francini, Saverio
Borghi, Costanza
Costa, Paolo
Gramellini, Bianca
Caldarelli, Guido
Physics and Society
Green areas are a crucial element in evolution of a city, contributing to improve citizens' life, to reduce effects of climate change, and to make possible the survival of other species in urban areas. Unfortunately, the above effects are difficult to assess quantitatively for regulators, stakeholders and experts, making troublesome the planning of city development. Here we present a method to estimate the impact of these areas in the city life based on the network topology of the city itself and on a simple model of dynamics on this structure. Movements between various areas of the city are simulated by means of an agent-based biased-diffusion process where citizens try to reach the nearest Public Green Area (PGA) from their position and the model is fed with real data about the density of populations in the cases of study. Firstly, we define a centrality measure of PGA's based on average farness measured on the city network; this approach outperforms information based on the simple topology. We then improve this quantity by taking into account the occupation of PGA's, thereby providing a quantitative measure of PGA usage for regulators.
title Urban topology and dynamics can assess green areas importance
topic Physics and Society
url https://arxiv.org/abs/2404.12902