• Title/Summary/Keyword: UHI

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LANDSAT 영상을 이용한 세종특별자치시의 도시화와 열섬현상 분석 (Urbanization and Urban Heat Island Analysis Using LANDSAT Imagery: Sejong City As a Case Study)

  • 김미경;김상필;김남훈;손홍규
    • 대한토목학회논문집
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    • 제34권3호
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    • pp.1033-1041
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    • 2014
  • 우리나라는 세계적으로 유례없이 도시화가 급속하게 이루어졌으며 그 결과, 국토 면적의 10%인 수도권에 인구의 50%가 밀집하여 국토 개발의 불균형 및 열섬현상을 비롯한 각종 도시 문제가 수도권을 중심으로 발생하고 있다. 이에 수도권의 과잉 밀집을 해소하고 국토의 균형개발을 위해 2012년 7월 세종특별자치시가 출범하였으며, 세종시는 2000년대 후반부터 실질적인 개발이 진행되어 급격한 도시화를 겪고 있는 곳으로 급격한 개발에 따른 도시 문제를 수반할 것으로 예상된다. 도시화로 인한 지표면 특성의 변화는 도시열섬의 주요인이며 도시열섬현상은 결과적으로 도시지역의 기후변화 및 자연환경에 영향을 끼칠 수 있다. 본 논문은 급속한 도시화를 겪고 있는 세종시를 대상으로 도시화의 정도와 도시열섬효과를 파악하였고 도시화와 지표면온도와의 상관관계를 분석하였다. 이를 위하여 LANDSAT 영상을 사용하였으며, 2001년부터 2013년까지의 LANDSAT의 $0.63{\mu}m-1.75{\mu}m$에 해당하는 적색, 근적외선, 중적외선 영역 영상으로 NDVI, NDBI, UI를 산출하였고, $10.4{\mu}m-12.5{\mu}m$에 해당하는 열적외선 영역대의 영상을 통하여 세종시의 지표온도를 추정하였다. 산출된 각 지수와 지표면 온도를 바탕으로 세종시의 NDVI의 변화, UI의 변화를 파악하였고, TVI를 통해 도시열섬을 분석하였다. TVI를 통해 새로 건설된 행정중심복합도시 지역 일대를 중심으로 도시열섬현상이 두드러지게 증가한 것을 확인할 수 있었고 각 지수와 지표온도와의 상관관계 분석 결과 NDVI가 높을수록 온도는 낮아지는 음의 상관 관계를, NDBI와 UI는 증가할수록 온도가 높아지는 양의 상관관계를 갖는 것으로 나타났으며 이 중에서도 UI는 지표면 온도와 가장 강한 양의 상관관계를 보였다.

도시열섬현상완화를 위한 그린인프라 전략 (Green-infra Strategies for Mitigating Urban Heat Island)

  • 박채연;이동근;권유진;허민주
    • 한국환경복원기술학회지
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    • 제20권5호
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    • pp.67-81
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    • 2017
  • Because of lack of accurate understanding of the mechanism of urban heat island (UHI) phenomenon and lack of scientific discussion, it is hard to come up with effective measures to mitigate UHI phenomenon. This study systematically described the UHI and suggested the solutions using green-infrastructure (green-infra). The factors that control UHI are very diverse: radiant heat flux, latent heat flux, storage heat flux, and artificial heat flux, and the air temperature is formed by the combination effect of radiation, conduction and convection. Green-infra strategies can improve thermal environment by reducing radiant heat flux (the albedo effect, the shade effect), increasing latent heat flux (the evapotranspiration effect), and creating a wind path (cooling air flow). As a result of measurement, green-infra could reduce radiant heat flux as $270W/m^2$ due to shadow effect and produce $170W/m^2$ latent heat flux due to evaporation. Finally, green-infra can be applied differently on the macro(urban) scale and micro scale, therefore, we should plan and design green-infra after the target objects of structures are set.

Mapping and Analyzing the Park Cooling Intensity in Mitigation of Urban Heat Island Effect in Lahore, Pakistan

  • Hanif, Aysha;Nasar-u-Minallah, Muhammad;Zia, Sahar;Ashraf, Iqra
    • 대한원격탐사학회지
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    • 제38권1호
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    • pp.127-137
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    • 2022
  • Urban Heat Island (UHI) effect has been widely studied as a global concern of the 21st century. Heat generation from urban built-up structures and anthropogenic heat sources are the main factors to create UHIs. Unfortunately, both factors are expanding rapidly in Lahore and accelerating UHI effects. The effects of UHI are expanding with the expansion of impermeable surfaces towards urban green areas. Therefore, this study was arranged to analyze the role of urban cooling intensity in reducing urban heat island effects. For this purpose, 15 parks were selected to analyze their effects on the land surface temperature (LST) of Lahore. The study obtained two images of Landsat-8 based on seasons: the first of June-2018 for summer and the second of November-2018 for winter. The LST of the study area was calculated using the radiative transfer equation (RTE) method. The results show that the theme parks have the largest cooling effect while the linear parks have the lowest. The mean park LST and PCI of the samples are also positively correlated with the fractional vegetation cover (FVC) and normalized difference water index (NDWI). So, it is concluded that urban parks play a positive role in reducing and mitigating LST and UHI effects. Therefore, it is suggested that the increase of vegetation cover should be used to develop impervious surfaces and sustainable landscape planning.

서울 도심지의 인본열에 의한 지표온도 분석: 위성영상 적용 사례 (Analysis of the Land Surface Temperature by the Anthropogenic Heat in the Urban Area of Seoul: An Example in Application of Satellite Images)

  • 방건준;박석순
    • 환경영향평가
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    • 제19권4호
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    • pp.397-407
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    • 2010
  • The increase of the solar reradiation from urban areas relative to suburban due to urbanization heats up the air temperature in urban areas and this is called the urban heat island (UHI) effect. This UHI effect has a positive relationship with the degree of urbanization. Through the studies on UHI using the satellite imagery, the effect of the surface heat radiation was observed by verifying the relationship between the air temperature and the land cover types (surface materials such as urban, vegetation, etc.). In this study, however, the surface temperature distribution was studied in terms of land use types for Seoul. Using land use types, the surface temperature in urban areas such as residential, industrial, and commercial areas in Yeongdeungpo, highly packed with industrial and residential buildings, was maximum $6^{\circ}C$ higher than in the bare ground, which indicated that the surface temperature reflected the pattern of the human-consumed energy on the areas and showed that one of the important causes influencing the air temperature except the surface heat reradiation by the sun is the anthropogenic heat. Also, the effect due to the restoration of the Chunggae stream on UHI was investigated. The average surface temperature for the Chunggae stream was reduced about $0.4^{\circ}C$ after restoration. Considering that each satellite image pixel includes mixture of several materials such as concrete and asphalt, the average surface temperature might be much lower locally reducing UHI near the stream.

딥러닝 기반 Local Climate Zone 분류체계를 이용한 지표면온도와 도시열섬 분석: 수원시와 대구광역시를 대상으로 (Analysis of Surface Urban Heat Island and Land Surface Temperature Using Deep Learning Based Local Climate Zone Classification: A Case Study of Suwon and Daegu, Korea)

  • 이연수;이시우;임정호;유철희
    • 대한원격탐사학회지
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    • 제37권5_3호
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    • pp.1447-1460
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    • 2021
  • 도시화에 따른 인공피복의 증가는 도시지역의 온도가 주변 교외지역보다 높아지는 UHI (Urban Heat Island; UHI) 현상을 야기한다. 국지기후대(Local Climate Zone; LCZ)는 빌딩의 기하학적 구조와 피복특성에 따라 도시를 분류하는 체계로, UHI 분석을 위해 제안되어 현재 다양한 도시기후 연구에 활용되고 있다. 본 연구는 합성곱신경망(Convolutional Neural Network)과 Landsat 8 위성영상을 이용하여 수원시와 대구광역시의 LCZ 분류모델을 구축하였고, LCZ 지도와 Landsat 8 지표면온도(Land Surface Temperature; LST)를 이용하여 도시 구조적 특성에 따른 LST와 Surface UHI (SUHI) 강도를 분석하였다. LCZ 분류모델은 수원시와 대구광역시에 대해 각각 87.9%와 81.7%의 높은 분류 정확도를 보였다. 대구가 수원보다 전반적으로 모든 LCZ 클래스에서 LST가 높게 나타났으며 건물이 밀집할수록, 건물의 높이가 낮을수록 LST가 증가하는 공통점을 보였다. SUHI 강도는 두 도시 모두 여름철에 가장 강한 값을 가지고 봄과 가을에도 일부 LCZ 클래스를 제외하고 양의 SUHI 강도가 나타났지만 겨울에는 다수의 LCZ 클래스에서 음의 값이 나타났다. 이는 UHI가 여름철에 가장 강하게 나타나며, 겨울에는 일부 도시지역이 교외지역보다 더 차가운 현상이 나타나기도 함을 의미한다. 본 연구는 우리나라 UHI 분석에 있어 LCZ 분류체계의 활용가능성을 확인하였고, 향후 도시기후 분석 및 기후변화 대응 전략수립에 있어 도시의 구조적 특성을 고려하는데 기초자료로 활용될 것으로 기대된다.

LANDSAT영상을 이용한 서울시 행정구역 단위의 열섬효과 분석 (Analysis of the Effect of Heat Island on the Administrative District Unit in Seoul Using LANDSAT Image)

  • 이경일;류지은;전성우;정휘철;강진영
    • 대한원격탐사학회지
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    • 제33권5_3호
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    • pp.821-834
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    • 2017
  • 도시화로 인한 산업비율 증가는 도시의 기온이 주변지역보다 높아지는 도시 열섬(Urban Heat Island)현상을 유발하였으며 기후변화와 함께 그 강도가 점점 증가하고 있다. 열섬현상이 발생하는 여러 도시 중에서도 서울시는 각 구 또는 동별로 시가화 정도, 녹지율, 에너지소비량, 인구밀도가 다 다르기 때문에 열섬현상의 강도역시 다르다. 따라서 본 연구에서는 서울특별시를 대상으로 행정구, 행정동 단위 열섬현상강도(UHI Intensity)를 추출하여 행정구역별 차이를 확인하고 세 가지 범주(기상상태, 인위적 열 발생, 토지이용특성)에 포함되는 변수들과 선형회귀분석을 실시하여 각 행정구역의 열섬현상강도 차이의 원인을 살펴보았다. 분석결과 UHI Intensity는 행정구별, 행정동별 특징 및 주변 환경에 따른 차이가 존재하며 행정동 단위에서 차이가 더 크게 나타났고 구의 UHI Intensity와 구에 속한 동의 UHI Intensity분포 또한 차이가 존재하였다. 선형회귀분석결과 평균 풍속, 개발정도, 토양보정식생지수(SAVI), 정규화시가지지수(NDBI) 값이 행정구역별 열섬현상강도 차이를 발생시키는 유의한 변수로 나타났다. 토양보정식생지수와 정규화시가지지수는 행정동단위 까지 그 값의 차이가 존재하는 것으로 나타났으며, 열섬현상 완화를 위한 바람길 환경 조성은 행정동 차원에서의 시행이 필요한 사항이다. 따라서 토지피복 개선 계획, 바람길 조성 계획, 개발지역에 대한 벽면 녹화계획 등 열섬현상 완화를 위한 사업들은 행정구 단위의 차이만을 고려하기보단 구안에 속한 행정동까지 고려할 필요가 있을 것으로 판단된다. 본 연구의 결과는 도시 도시열섬현상 완화를 위해 행정동 단위에서의 분석의 필요성과 고려해야할 변수를 도출하여 향후 도시 열환경 설계 및 정책 개발 시 접근방향을 제공할 것으로 기대한다.

Identification of the Anthropogenic Land Surface Temperature Distribution by Land Use Using Satellite Images: A Case Study for Seoul, Korea

  • Bhang, Kon Joon;Lee, Jin-Duk
    • 한국측량학회지
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    • 제35권4호
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    • pp.249-260
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    • 2017
  • UHI (Urban Heat Island) is an important environmental issue occurring in highly developed (or urbanized) area such as Seoul Metropolitan City of Korea due to modification of the land surface by man-made structures. With the advance of the remote sensing technique, land cover types and LST (Land Surface Temperature) influencing UHI were frequently investigated describing that they have a positive relationship. However, the concept of land cover considers material characteristics of the urban cover in a comprehensive way and does not provide information on how human activities influence on LST in detail. Instead, land use reflects ways of land use management and human life patterns and behaviors, and explains the relationship with human activities in more details. Using this concept, LST was segmented according to land use types from the Landsat imagery to identify the human-induced heat from the surface and interannual and seasonal variation of LST with GIS. The result showed that the LST intensity of Seoul was greatest in the industrial area and followed by the commercial and residential areas. In terms of size, the residential area could be defined as the major contributor among six urban land use types (i.e., residential, industrial, commercial, transportation, etc.) affecting UHI during daytime in Seoul. For temperature, the industrial area was highest and could be defined as a major contributor. It was found that land use type was more appropriate to understand the human-induced effect on LST rather than land cover. Also, there was no significant change in the interannual pattern of LST in Seoul but the seasonal difference provided a trigger that the human life pattern could be identified from the satellite-derived LST.

수도권 지역의 도시 기상 특성 (Characteristics of Urban Meteorology in Seoul Metropolitan Area of Korea)

  • 김연희;최다영;장동언
    • 대기
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    • 제21권3호
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    • pp.257-271
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    • 2011
  • The aim of this study is to examine weather modification by urbanization and human activities. The characteristics of the urban heat island (UHI) and precipitation in Seoul metropolitan area of Korea are investigated to demonstrate that cities can change or modify local and nearby weather and climate, and to confirm that cities can initiate convection, change the behavior of convective precipitation, and enhance downstream precipitation. The data used in this study are surface meteorological station data observed in Seoul and its nearby 5 cities for the period of 1960 to 2009, and 162 Automatic Weather System stations data observed in the Seoul metropolitan area from 1998 to 2009. Air temperature and precipitation amount tend to increase with time, and relative humidity decreases because of urbanization. Similar to previous studies for other cities, the average maximum UHI is weakest in summer and is strong in autumn and winter, and the maximum UHI intensity is more frequently observed in the nighttime than in the daytime, decreases with increasing wind speed, and is enhanced for clear skies. Relatively warm regions extend in the east-west direction and relatively cold regions are located near the northern and southern mountains inside Seoul. The satellite cities in the outskirts of Seoul have been rapidly built up in recent years, thus exhibiting increases in near-surface air temperature. The yearly precipitation amount during the last 50 years is increased with time but rainy days are decreased. The heavy rainfall events of more than $20mm\;hr^{-1}$ increases with time. The substantial changes observed in precipitation in Seoul seem to be linked with the accelerated increase in the urban sprawl in recent decades which in turn has induced an intensification of the UHI effect and enhanced downstream precipitation. We also found that the frequency of intense rain showers has increased in Seoul metropolitan area.

URBAN ENVIRONMENTAL QUALITY ANALYSIS USING LANDSAT IMAGES OVER SEOUL, KOREA

  • Lee, Kwon-H.;Wong, Man-Sing;Kim, Gwan-C.;Kim, Young-J.;Nichol, Janet
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.556-559
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    • 2007
  • The Urban Environmental Quality (UEQ) indicates a complex and various parameters resulting from both human and natural factors in an urban area. Vegetation, climate, air quality, and the urban infrastructure may interact to produce effects in an urban area. There are relationships among air pollution, vegetation, and degrading environmental the urban heat island (UHI) effect. This study investigates the application of multi-spectral remote sensing data from the Landsat ETM and TM sensors for the mapping of air quality and UHI intensity in Seoul from 2000 to 2006 in fine resolution (30m) using the emissivity-fusion method. The Haze Optimized Transform (HOT) correction approach has been adopted for atmospheric correction on all bands except thermal band. The general UHI values (${\Delta}(T_{urban}-T_{rural})$) are 8.45 (2000), 9.14 (2001), 8.61 (2002), and $8.41^{\circ}C$ (2006), respectively. Although the UHI values are similar during these years, the spatial coverage of "hot" surface temperature (>$24^{\circ}C$) significantly increased from 2000 to 2006 due to the rapid urban development. Furthermore, high correlations between vegetation index and land surface temperature were achieved with a correlation coefficients of 0.85 (2000), 0.81 (2001), 0.84(2002), and 0.89 (2006), respectively. Air quality is shown to be an important factor in the spatial variation of UEQ. Based on the quantifiable fine resolution satellite image parameters, UEQ can promote the understanding of the complex and dynamic factors controlling urban environment.

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겨울철 도시지역과 교외지역의 기온변화 특성 (Characteristics of Temperature Variation in Urban and Suburban Areas During Winter)

  • 권성일;김진수;박종화;오광영;송철민
    • 한국농공학회논문집
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    • 제50권2호
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    • pp.55-63
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    • 2008
  • We investigated characteristics of temperature variation in urban and suburban areas(e.g., paddy field, upland, park, residential area) and urban heat island(UHI) during winter(December 2005 to February 2006). The daily maximum air temperature was not significantly different between suburban and urban areas, whereas the daily minimum air temperatures were significantly lower in the suburban areas than that in the residential area. The wind speed in the urban park(0.3 m/s) was much lower than that in the paddy fields(2.3 m/s), likely due to an urban canopy layer formed by high buildings. The UHI intensity was represented by differences in daily minimum temperatures between urban residential and paddy field areas. The UHI intensity($4.1^{\circ}C$) in winter was larger than that($2.6^{\circ}C$) in summer. This may be because a stable boundary layer develops in the winter, and thereby this inhibits diffusion of heat from surface.