Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone

Subject of research: visualization of the wind regime of residential buildings on the slope area in the Arctic. Goals: the purpose of the study is to identify the problems of visualization of the wind regime on the slopes and the analysis of patterns of airflow around the sloping territories, affect...

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Published in:SHS Web of Conferences
Main Authors: Dunichkin, Ilya V., Naboni, Emanuele, Korobeinikova, Anna E., Poddaeva, Olga I.
Format: Text
Language:English
Published: EDP Sciences 2019
Subjects:
Online Access:https://doi.org/10.1051/shsconf/20196403013/pdf
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spelling fttriple:oai:gotriple.eu:yUVksWsCadRj9VdkNf4bn 2023-05-15T14:54:48+02:00 Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone Dunichkin, Ilya V. Naboni, Emanuele Korobeinikova, Anna E. Poddaeva, Olga I. 2019-06-10 https://doi.org/10.1051/shsconf/20196403013/pdf en eng EDP Sciences 10670/1.cd865s https://www.shs-conferences.org/10.1051/shsconf/20196403013/pdf undefined SHS Web of Conferences archi envir Text https://vocabularies.coar-repositories.org/resource_types/c_18cf/ 2019 fttriple https://doi.org/10.1051/shsconf/20196403013/pdf 2023-01-22T18:11:49Z Subject of research: visualization of the wind regime of residential buildings on the slope area in the Arctic. Goals: the purpose of the study is to identify the problems of visualization of the wind regime on the slopes and the analysis of patterns of airflow around the sloping territories, affecting the comfort of pedestrians. Materials and methods: airflow patterns of slope areas with different characteristics and comfort assessment for humans are analyzed in the course of work. Geotechnical methods are presented in solving the problems of wind erosion and the stability of hillsides and complex terrain within the city limits. Results: The importance and novelty of the research in studying the relationship of slope geometry and environmental quality, as a decrease in comfort inevitably leads to a decrease in the development of nearby urban areas in settlements on the coast of the Arctic Ocean, problems with climate and local climate, as well as a decrease in the quality of life of people. The article considers the relationship of plastic relief with the aeration regime of the territory, the dependence of aerodynamic roughness on their height, features of aeration of the slope and hilly terrain, factors affecting the direction and speed of the wind and methods for studying the aeration regime of slope areas. Findings: The possibilities of applying existing approaches to research and visualization for slope areas are demonstrated. The direction of development of the technique for visualization of slope areas has been determined. Text Arctic Arctic Ocean Unknown Arctic Arctic Ocean SHS Web of Conferences 64 03013
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topic archi
envir
spellingShingle archi
envir
Dunichkin, Ilya V.
Naboni, Emanuele
Korobeinikova, Anna E.
Poddaeva, Olga I.
Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
topic_facet archi
envir
description Subject of research: visualization of the wind regime of residential buildings on the slope area in the Arctic. Goals: the purpose of the study is to identify the problems of visualization of the wind regime on the slopes and the analysis of patterns of airflow around the sloping territories, affecting the comfort of pedestrians. Materials and methods: airflow patterns of slope areas with different characteristics and comfort assessment for humans are analyzed in the course of work. Geotechnical methods are presented in solving the problems of wind erosion and the stability of hillsides and complex terrain within the city limits. Results: The importance and novelty of the research in studying the relationship of slope geometry and environmental quality, as a decrease in comfort inevitably leads to a decrease in the development of nearby urban areas in settlements on the coast of the Arctic Ocean, problems with climate and local climate, as well as a decrease in the quality of life of people. The article considers the relationship of plastic relief with the aeration regime of the territory, the dependence of aerodynamic roughness on their height, features of aeration of the slope and hilly terrain, factors affecting the direction and speed of the wind and methods for studying the aeration regime of slope areas. Findings: The possibilities of applying existing approaches to research and visualization for slope areas are demonstrated. The direction of development of the technique for visualization of slope areas has been determined.
format Text
author Dunichkin, Ilya V.
Naboni, Emanuele
Korobeinikova, Anna E.
Poddaeva, Olga I.
author_facet Dunichkin, Ilya V.
Naboni, Emanuele
Korobeinikova, Anna E.
Poddaeva, Olga I.
author_sort Dunichkin, Ilya V.
title Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
title_short Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
title_full Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
title_fullStr Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
title_full_unstemmed Issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the Arctic zone
title_sort issues of wind mode visualization and pedestrian comfort assessment when designing residential buildings on sloping territories in the arctic zone
publisher EDP Sciences
publishDate 2019
url https://doi.org/10.1051/shsconf/20196403013/pdf
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Arctic Ocean
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Arctic Ocean
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Arctic Ocean
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