• 제목/요약/키워드: Urban Heat Island

검색결과 339건 처리시간 0.034초

폭염 및 도시열섬현상에 따른 노후 주거지의 적응 계획기법에 관한 연구 - 광진구 군자동 중심으로 - (The Research of Planning Method of Adaption for Old Residential Neighborhoods According to Heat wave and Urban Heat-island Phenomena - Focused on Gun-Ja Dong, Gwang-Jin Gu -)

  • 김민영;문은설
    • KIEAE Journal
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    • 제16권4호
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    • pp.31-39
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    • 2016
  • Purpose: Urban heat island and Heat wave raise urban temperature and create damage of human life. Growing up as quantitative supply to solve shortage of housing, Urban residential area in Korea have a low rate of nature surface and heavily population makes temperature rise. Most houses in the declined residential area are multi-family rental housing and have many factors congesting housing environment such as narrow in-between space, outdoor staircases, walls and semi-basement floor, which make thermal environment getting worse. Most of the residents in this area are small tenants vulnerable to climate change adaptation, This damage is expected to be even greater. This study focus on multiple dwelling in urban residential area prone to temperature rise and draw temperature adaption method that can apply to multiple dwelling.

신도시 개발이 도시열섬 형성에 미치는 영향 - 분당신도시와 판교지역을 중심으로 - (Influence of New Town Development on the Urban Heat Islands - ln the Case of Pan-Gyo Area and Bun-Dang New Town -)

  • 송영배
    • 한국조경학회지
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    • 제30권4호
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    • pp.37-46
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    • 2002
  • The main purpose of this research is to discuss the urban heat island which will be caused by urbanization, especially by the construction of new town on a wide green zone. Over the last ten years, five new towns have been developed around the Seoul metropolitan area. However these new towns become bedroom communities and create traffic problems between Seoul and its surrounding areas because of an increase in population and a lack of roads and other infrastructures. The construction of another such new town is under consideration in the Pan-gyo area. But it is important that Pan-gyo remains a wide green zone. Many studies show that green space can play an important role in improving urban eco-meteorological, ameliorative capability and air hygiene. The objective of this study is to analyze the urban heat islands of Bund-Dang Si which was constructed in 1996 and of the Pan-Gyo area planned as new town. To investigate the local thermal environment and its negative effects caused by change of the land use type and urbanization we used LANDSAT TM images for extraction of urban surface temperature according to change of land use over 15 years. These data were analyzed together with digital land use and topographic data. As a study result, we found that the thermal island of this area from 1985 to 1999 rapidly increased with a difference of mean temperature of more than 12'E. Before construction of Bun-Dang Si the temperature of this area was the same as the forest, but during the new town construction in 1991, an urban heat island developed. The temperature of forest with a size of over 50% of the investigation area was lowest, which leads us to conclude that the forest cools the urban and its surroundings. The mean temperature of the residential and commercial area is more than +4.5$^{\circ}C$ higher then forest, so this method of land use is the main factor increasing the urban heat island. Urban heat islands and green space play an important role in urban wind systems, i.e. Thermal Induced Air Exchange and Structural Wind Circulation, because of their special properties with regard to energy balance between constructed urban and land. The skill to allocate land use types in urban areas is a very important planning device to reduce air pollution and induce the fresh cold air from green space. An urban climatic experiment featuring a numerical wind simulation study to show the air corridor will be published in a following research paper.

분절화된 서울의 도시 열섬 현상 (Fragmented Urban Heat Islands in Seoul, Korea)

  • Park, Gwangyong;Kwon, Won-Tae;David A. Robinson
    • 대한지리학회:학술대회논문집
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    • 대한지리학회 2004년도 춘계학술대회
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    • pp.48-48
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    • 2004
  • A fragmented urban heat island is observed over the Seoul metropolitan area. Long-term (1996-2003) hourly temperature, wind speed and direction, and precipitation data observed at 26 (51) automatic weather stations (AWS) in Seoul (Gyeonggi prevince) makes it possible to reveal more dynamic spatial and temporal patterns of the urban heat island in this area than previously revealed. (omitted)

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전산유체역학 모델을 이용한 도시 지표 피복 변화가 대기 경계층 열적 환경에 미치는 영향 분석 (Analysis of the Influence of Urban Land Cover Changes on the Thermal Environment of the Atmospheric Boundary Layer Using Computational Fluid Dynamics Model)

  • 김지선;유정우;나문수;김용길;이순환
    • 한국환경과학회지
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    • 제29권12호
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    • pp.1153-1170
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    • 2020
  • With global warming and the rapid increase in urbanization accompanied by a concentration of population, the urban heat island effects (UHI) have become an important environmental issue. In this study, rooftop greening and permeable asphalt pavement were selected as measures to reduce urban heat island and applied to a simple virtual urban environment to simulate temperature change using ENVI-met. A total of five measures were tested by dividing the partial and whole area application of each measure. The results showed that the temperature range of the base experiment is 33.11-37.11 ℃, with the UTCI comfort level described as strong heat and very strong heat stress. A case applied permeable asphalt has a greater temperature difference than a rooftop greening case, the larger the area where each condition was applied, the greater the temperature change was.

지표 방사율에 의한 지표온도와 도시열섬효과 비교 (Comparison of Land Surface Temperatures Derived from Surface Emissivity with Urban Heat Island Effect)

  • 정종철
    • 환경영향평가
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    • 제18권4호
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    • pp.219-227
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    • 2009
  • Because of urban development and changed land cover types, It is very important to acquire pixel unit of land surface temperature(LST) information when the heat island effect(HIE) of regional area are investigated. The brightness temperature observed by satellite is very useful for assessing the pixel unit of LST distributions for the analysis of thermal environment problems of urban areas. Also, satellite land cover data are very useful to our understanding of surface conditions of study areas. In this study, brightness temperature information of Landsat TM thermal channel was analyzed and compared with land cover information of Jeon-ju city. The atmospheric correction of TM thermal channel carried out to explain for compared LST long term monitoring errors. However, simple estimation and evaluation methods to find a physical relationship between LST from satellite images and in-situ data are compared with reference channel emissivity.

ESTIMATION OF HEAT ISLAND POTENTIAL BASED ON LAND-USE TYPE IN DAEGU

  • Ahn Ji-Suk;Kim Hae-Dong;Kim Sang-Woo
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2005년도 Proceedings of ISRS 2005
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    • pp.394-397
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    • 2005
  • This study aims to estimate a heat island potential distribution based on the land-use types using LANDSAT/TM(1100LST April 2000) and AWS data in Daegu. The heat island potential is defined as a difference between surface temperature and air-temperature at each place. The study area was selected as about $900k km^2$ square including Daegu metropolitan area. Land-use data obtained by dividing all of Daegu metropolitan area into l-km-square three types of maps were prepared, in the 1 960s, 1970s and 2000s respectively. The types of land-use were divided into 5. Forest and farm lands have been reduced at a wide range during 40 years, most of which changed to urban area. The heat island potential distribution presented a striking contrasts according to land-use types. For example, the heat island potential of urban area was higher than $14^{\circ}$ in comparison to those of water or paddy rice areas.

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지역규모 분석 모델을 이용한 서울 도시열섬 특성 연구 (A Study of the Urban Heat Island in Seoul using Local Analysis System)

  • 천지민;이선용;김규랑;최영진
    • 한국대기환경학회지
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    • 제30권2호
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    • pp.119-127
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    • 2014
  • A very high resolution weather analysis system (VHRAS) of 50 m horizontal resolution is established based on LAPS. VHRAS utilizes the 3 hourly forecast data of the Unified Model (UM) of the Korea Meteorological Administration (KMA) with the horizontal resolution of 12 km as initial guess fields. The analysis system ingests the automatic weather station (AWS) data as input observations. The analysis system operates every hour for Seoul, Korea region in real time basis. It takes less than 10 minutes for one analysis cycle. The size of grid of the analysis domain is $800{\times}660$, respectively. The analysis results from December 2010 to February 2011 showed that the mean biases of temperature, maximum and minimum temperature were -0.07, 1.6, $0.2^{\circ}C$, respectively. The temperature in the central part of the city revealed relatively higher value than that of the surrounding mountainous areas, which showed a heat island feature. The heat island appears in zonal direction since the central city region is developed along a large river. Along the heat island, the eastern region was warmer than the western region. The warmer temperature in the western part of the heat island was caused by anthropogenic heat change in conjunction with the change of land use. This system will provide more reliable weather data and information in Seoul.

심층신경망 모형을 이용한 서울시 도시공원 및 녹지공간의 열섬저감효과 분석 (Analysis of Urban Heat Island (UHI) Alleviating Effect of Urban Parks and Green Space in Seoul Using Deep Neural Network (DNN) Model)

  • 김병찬;강재우;박찬;김현진
    • 한국조경학회지
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    • 제48권4호
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    • pp.19-28
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    • 2020
  • 도시화로 인한 도시열섬현상(Urban Heat Island)이 심화되면서 도시차원의 열 관리가 중요한 이슈로 다뤄지고, 도시열섬현완화 방안으로 녹지사업과 환경정책이 시행되고 있고, 도시공원 및 녹지와 열의 관계를 분석하는 다수의 연구가 수행되었다. 하지만 열이라는 특성은 다수의 요인이 복합적으로 얽혀있어 선형적 상관관계를 통한 해석에 한계가 있다. 본 연구는 변수요인들이 다양하고 데이터의 양이 방대하여 기존의 통계분석방식으로는 분석하기 어려운 분야에서 강점을 갖는 심층신경망 모형 방법론을 사용하여 여름철 서울지역의 공원 및 녹지의 열섬저감효과를 평가하는 것을 목표로 연구를 진행하였다. 이를 위해서 Landsat 8 인공위성영상을 활용하여 동시간의 광역적인 데이터를 취득하였고, ArcGis 10.7을 이용하여 서울시를 30m×30m 그리드로 격자화하여, 각 격자에 열섬저감을 측정할 수 있는 환경변수를 구축하였다. Python 3.7과 Keras를 이용하여 심층신경망 모형을 생성하여 지표면 온도와 변수 간의 관계를 분석하였다. 분석 결과, 인공신경망 모형은 높은 설명력을 가지는 것을 확인하였다. 또한 일반적인 연구 결과와 마찬가지로 인접 녹지와의 거리가 가까울수록, 공원면적이 커질수록, 공원의 식생활력도가 높을수록 지표면 온도가 낮아짐을 확인하였다. 식생활력도에 의한 냉각효과가 많이 있는 것을 확인하였고, 일부 선행연구에서 녹지에 인접할수록 0.3℃ ~ 2.3℃ 저감될 수 있는 특성이 나타나고, 공원의 크기가 크면 2℃~3℃ 저감효과가 나타난다는 결과를 보이고 있는데, 본 연구결과와 비교해 보면 도출된 효과가 과대평가되었을 가능성을 확인하였다. 본 연구의 결과는 향후 도시열섬현상 완화를 위해 새로운 도시녹지를 조성시 효과적인 녹지 구성을 위한 정보로 활용될 수 있다.

WRF-UCM (Urban Canopy Model)을 이용한 서울 지역의 도시기상 예보 평가 (Evaluation of Urban Weather Forecast Using WRF-UCM (Urban Canopy Model) Over Seoul)

  • 변재영;최영진;서범근
    • 대기
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    • 제20권1호
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    • pp.13-26
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    • 2010
  • The Urban Canopy Model (UCM) implemented in WRF model is applied to improve urban meteorological forecast for fine-scale (about 1-km horizontal grid spacing) simulations over the city of Seoul. The results of the surface air temperature and wind speed predicted by WRF-UCM model is compared with those of the standard WRF model. The 2-m air temperature and wind speed of the standard WRF are found to be lower than observation, while the nocturnal urban canopy temperature from the WRF-UCM is superior to the surface air temperature from the standard WRF. Although urban canopy temperature (TC) is found to be lower at industrial sites, TC in high-intensity residential areas compares better with surface observation than 2-m temperature. 10-m wind speed is overestimated in urban area, while urban canopy wind (UC) is weaker than observation by the drag effect of the building. The coupled WRF-UCM represents the increase of urban heat from urban effects such as anthropogenic heat and buildings, etc. The study indicates that the WRF-UCM contributes for the improvement of urban weather forecast such nocturnal heat island, especially when an accurate urban information dataset is provided.

도시가로공간의 공공디자인 개선사업에 따른 열환경 개선 효과 평가 (Evaluation of Thermal Environment Improvement Effect from Public Design Improvement Project on the Urban Street Space)

  • 백상훈;시미즈아키;김학윤;정응호
    • 한국환경과학회지
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    • 제20권9호
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    • pp.1105-1114
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    • 2011
  • In this study, thermal environment improvements throughout public design improvement project on the urban street space were compared and evaluated. Thermo-Render 3.0, 3D-CAD based thermal environment simulation program, had been used for thermal environment improvement evaluations. Followings are the results. First, clayey blocks which have low heat transfer rate and cool island effect by trees and roof gardens brought cooling effects for buildings and surface of streets. Seconds, MRT values showed low levels because of low radiant mulching materials. Thirds, roof gardens contributed to reduce heat island effect since HIP levels were affected by decreasing heat storage effect of buildings from roof gardens. As a result, reducing heat storage effect throughout selecting and arranging proper materials which would not increase heat island potentials should be performed to improve heat island effects.