Current approaches to studying the level of pedestrian comfort in urban development

The paper presents the results of a numerical forecast of the pedestrian comfort level in the territory of urban development. The research uses the microscale numerical model of the atmosphere in the urban environment, into which the equations of temperature and seasonal indices are integrated. Thes...

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Main Authors: Meshkova Victoria, Dekterev Alexander, Litvintsev Kirill, Filimonov Sergei A.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/72/e3sconf_rec2023_05004.pdf
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author Meshkova Victoria
Dekterev Alexander
Litvintsev Kirill
Filimonov Sergei A.
author_facet Meshkova Victoria
Dekterev Alexander
Litvintsev Kirill
Filimonov Sergei A.
author_sort Meshkova Victoria
collection DOAJ
description The paper presents the results of a numerical forecast of the pedestrian comfort level in the territory of urban development. The research uses the microscale numerical model of the atmosphere in the urban environment, into which the equations of temperature and seasonal indices are integrated. These equations are used to simulate and analyse pedestrian comfort conditions. The paper presents the results of the proposed model approbation in the real environment of the residential neighbourhoods of Krasnoyarsk city. External conditions, typical for summer and winter seasons, were simulated. The results produced are presented as distribution fields of the considered indices. During the analysis, comfortable/discomfort areas for humans staying in the environment of studied urban development were revealed.
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spelling doaj.art-97f03d2bb84b4cad888415be3882201f2023-10-17T08:52:40ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014350500410.1051/e3sconf/202343505004e3sconf_rec2023_05004Current approaches to studying the level of pedestrian comfort in urban developmentMeshkova Victoria0Dekterev Alexander1Litvintsev Kirill2Filimonov Sergei A.3Siberian Federal UniversitySiberian Federal UniversityKutateladze Institute of Thermal Physics, SB RASSiberian Federal UniversityThe paper presents the results of a numerical forecast of the pedestrian comfort level in the territory of urban development. The research uses the microscale numerical model of the atmosphere in the urban environment, into which the equations of temperature and seasonal indices are integrated. These equations are used to simulate and analyse pedestrian comfort conditions. The paper presents the results of the proposed model approbation in the real environment of the residential neighbourhoods of Krasnoyarsk city. External conditions, typical for summer and winter seasons, were simulated. The results produced are presented as distribution fields of the considered indices. During the analysis, comfortable/discomfort areas for humans staying in the environment of studied urban development were revealed.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/72/e3sconf_rec2023_05004.pdfmicroscale numerical modelpedestrian comfort levelurban environmenthydrodynamicsheat and mass transfer
spellingShingle Meshkova Victoria
Dekterev Alexander
Litvintsev Kirill
Filimonov Sergei A.
Current approaches to studying the level of pedestrian comfort in urban development
E3S Web of Conferences
microscale numerical model
pedestrian comfort level
urban environment
hydrodynamics
heat and mass transfer
title Current approaches to studying the level of pedestrian comfort in urban development
title_full Current approaches to studying the level of pedestrian comfort in urban development
title_fullStr Current approaches to studying the level of pedestrian comfort in urban development
title_full_unstemmed Current approaches to studying the level of pedestrian comfort in urban development
title_short Current approaches to studying the level of pedestrian comfort in urban development
title_sort current approaches to studying the level of pedestrian comfort in urban development
topic microscale numerical model
pedestrian comfort level
urban environment
hydrodynamics
heat and mass transfer
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/72/e3sconf_rec2023_05004.pdf
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AT litvintsevkirill currentapproachestostudyingthelevelofpedestriancomfortinurbandevelopment
AT filimonovsergeia currentapproachestostudyingthelevelofpedestriancomfortinurbandevelopment