Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden

As urbanization and industrialization progressed during the last decades, Urban Heat Island (UHI) has become a major environmental issue to many cities around the world. The effect of UHI differs from area to area due to varying urban scale, population density, construction of urban surface layer, t...

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Main Authors: Yifan, Wang, Yizhang, Huang
Format: Others
Language:English
Published: Högskolan i Gävle, Avdelningen för Industriell utveckling, IT och Samhällsbyggnad 2013
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-16605
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spelling ndltd-UPSALLA1-oai-DiVA.org-hig-166052019-05-23T04:28:58ZUrban Wind and Thermal Environment Simulation - A Case Study of Gävle, SwedenengYifan, WangYizhang, HuangHögskolan i Gävle, Avdelningen för Industriell utveckling, IT och SamhällsbyggnadHögskolan i Gävle, Avdelningen för bygg- energi- och miljöteknik2013Urban Heat Islandthermal environmentventilationremote sensingComputational Fluid Dynamicsurban planningEnvironmental EngineeringNaturresursteknikEnergy SystemsEnergisystemAs urbanization and industrialization progressed during the last decades, Urban Heat Island (UHI) has become a major environmental issue to many cities around the world. The effect of UHI differs from area to area due to varying urban scale, population density, construction of urban surface layer, the level of industrialization and type of climate. Researchers have made great efforts in investigating various approaches to Urban Heat Island studies. Monitoring technologies have been widely used in this field, especially Geographic Information System (GIS) and remote sensing technology. Computational Fluid Dynamics (CFD) simulations are also actively applied in wind engineering, which can provide details of air flow over urban areas. The combined application of these technologies can provide the monitoring and simulation of urban wind corridor and thermal environment that can produce relevant information at a lesser time.A research using GIS, remote sensing technology and CFD simulation was done in this project to obtain a holistic view of the urban thermal environment and wind flow for Gävle City. With GIS and remote sensing the thermal image of the city was presented. The temperature data, which were collected from MODIS satellite were transferred and processed by ArcGIS and Global Mapper. The wind flow above the city was simulated through constructing geometric and mathematical model with OpenFOAM. The outcomes of the modeling and simulation identified that the temperature in the city center could possibly reach 35℃ during summers, which can cause the Urban Heat Island to form. Ventilation was also poorer in the city centre, and neither the river nor the green area in the southwest could help ventilate the city. The study result also suggested that certain sites in the city had relatively high wind flow for urban wind turbines to work.This study had used method of Urban Heat Island study with remote sensing and CFD technologies. The model produced from simulation could also be used to further study Gävle city's thermal and wind environment to produce more accurate results. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-16605application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Urban Heat Island
thermal environment
ventilation
remote sensing
Computational Fluid Dynamics
urban planning
Environmental Engineering
Naturresursteknik
Energy Systems
Energisystem
spellingShingle Urban Heat Island
thermal environment
ventilation
remote sensing
Computational Fluid Dynamics
urban planning
Environmental Engineering
Naturresursteknik
Energy Systems
Energisystem
Yifan, Wang
Yizhang, Huang
Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
description As urbanization and industrialization progressed during the last decades, Urban Heat Island (UHI) has become a major environmental issue to many cities around the world. The effect of UHI differs from area to area due to varying urban scale, population density, construction of urban surface layer, the level of industrialization and type of climate. Researchers have made great efforts in investigating various approaches to Urban Heat Island studies. Monitoring technologies have been widely used in this field, especially Geographic Information System (GIS) and remote sensing technology. Computational Fluid Dynamics (CFD) simulations are also actively applied in wind engineering, which can provide details of air flow over urban areas. The combined application of these technologies can provide the monitoring and simulation of urban wind corridor and thermal environment that can produce relevant information at a lesser time.A research using GIS, remote sensing technology and CFD simulation was done in this project to obtain a holistic view of the urban thermal environment and wind flow for Gävle City. With GIS and remote sensing the thermal image of the city was presented. The temperature data, which were collected from MODIS satellite were transferred and processed by ArcGIS and Global Mapper. The wind flow above the city was simulated through constructing geometric and mathematical model with OpenFOAM. The outcomes of the modeling and simulation identified that the temperature in the city center could possibly reach 35℃ during summers, which can cause the Urban Heat Island to form. Ventilation was also poorer in the city centre, and neither the river nor the green area in the southwest could help ventilate the city. The study result also suggested that certain sites in the city had relatively high wind flow for urban wind turbines to work.This study had used method of Urban Heat Island study with remote sensing and CFD technologies. The model produced from simulation could also be used to further study Gävle city's thermal and wind environment to produce more accurate results.
author Yifan, Wang
Yizhang, Huang
author_facet Yifan, Wang
Yizhang, Huang
author_sort Yifan, Wang
title Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
title_short Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
title_full Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
title_fullStr Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
title_full_unstemmed Urban Wind and Thermal Environment Simulation - A Case Study of Gävle, Sweden
title_sort urban wind and thermal environment simulation - a case study of gävle, sweden
publisher Högskolan i Gävle, Avdelningen för Industriell utveckling, IT och Samhällsbyggnad
publishDate 2013
url http://urn.kb.se/resolve?urn=urn:nbn:se:hig:diva-16605
work_keys_str_mv AT yifanwang urbanwindandthermalenvironmentsimulationacasestudyofgavlesweden
AT yizhanghuang urbanwindandthermalenvironmentsimulationacasestudyofgavlesweden
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