• 제목/요약/키워드: Heat island effect

검색결과 209건 처리시간 0.027초

LANDSAT과 KOMPSAT-2 데이터를 이용한 청주지역 도시열섬효과의 평가 (Assessment of the Urban Heat Island Effects with LANDSAT and KOMPSAT-2 Data in Cheongju)

  • 나상일;박종화
    • 농업과학연구
    • /
    • 제39권1호
    • /
    • pp.87-95
    • /
    • 2012
  • Land surface temperature (LST) is an important factor in human health, thermal environment, heat balance, global change studies, and as control for climate change. The objective of this study was to assess the influence of Urban Heat Island (UHI) Effects on the LST and NDVI in Cheongju, Korea. The aim was to evaluate the effect of urban thermal environment for LST comparison of satellite-derived and in situ measured temperature. In this study, LANDSAT TM and KOMPSAT scene were used. The results indicated that the minimum LST is observed over dense forest as about $21{\sim}25^{\circ}C$ and maximum LST is observed over industrial area of about $28{\sim}32^{\circ}C$. The estimated LST showed that industrial area, bare soils and built-up areas exhibit higher surface temperatures, while forest, water bodies, agricultural croplands, and dense vegetations have lower surface temperatures during the summer daytime. Result corroborates the fact that LST over land use/land cover (LULC) types are greatly influenced by the amount of vegetation and water bodies present. The LST of industrial area and urban center is higher than that of suburban area, so it is clearly proved that there are obvious UHIE in Cheongju.

미시적 열섬현상 저감을 위한 도시 가로수 식재 시나리오별 분석 - 서울시를 대상으로 - (Urban Street Planting Scenarios Simulation for Micro-scale Urban Heat Island Effect Mitigation in Seoul)

  • 권유진;이동근;안새결
    • 환경영향평가
    • /
    • 제28권1호
    • /
    • pp.23-34
    • /
    • 2019
  • 지구온난화는 해수면 상승이나 전 세계의 변덕스러운 기후와 같은 심각하면서 부차적인 문제를 야기한다. 2015년 여름에 심각한 폭염이 있은 이래로, 도시열섬에 대한 큰 관심이 모아졌다. 폭염 자체에 대한 연구뿐만이 아니라, 많은 연구가 온난화된 기후와 미시 기후에 적응하는 방법에 중점을 둔다. 기존 연구들의 상당부분은 도시열섬 효과를 완화하는 것인데, 이는 다양한 활동을 하고 있는 인구가 많은 도시 지역에 거대한 불침투성 표면이 존재하고 있기 때문이다. 또한 이 열 환경이 열 취약성에 의한 사망을 초래할 가능성이 높다는 것은 심각한 문제이다. 여름철 그린인프라의 냉각효과에 대한 논문이 많이 있어왔지만, 본 연구는 도시 협곡과 인접한 그린인프라 유형을 고려하여 가로수의 냉각 효과를 측정하는 데에 집중했다. 이 정량적 접근은 ENVI-met 시뮬레이션을 통해 서울의 상업지역 블록에서 진행되었다. 연구결과로 밀도가 높은 2열 식재가 단열식재보다 온도 변화에 더 민감하다는 것을 발견했다. 2열 식재 시나리오 중 가로수와 지표면 사이의 공간이 좁은 관목은 주간에 열을 저장하여 야간에 저장열 방출을 막아 더 높은 온도를 유지하는 것으로 밝혀졌다. 식생 공간의 냉각 효과를 정량화하면 미래의 비용 및 편익 평가 연구에 기여할 것으로 기대된다.

Monitoring and spatio-temporal analysis of UHI effect for Mansa district of Punjab, India

  • Kaur, Rajveer;Pandey, Puneeta
    • Advances in environmental research
    • /
    • 제9권1호
    • /
    • pp.19-39
    • /
    • 2020
  • Urban heat island (UHI) is one of the most important climatic implications of urbanization and thus a matter of key concern for environmentalists of the world in the twenty-first century. The relationship between climate and urbanization has been better understood with the introduction of thermal remote sensing. So, this study is an attempt to understand the influence of urbanization on local temperature for a small developing city. The study focuses on the investigation of intensity of atmospheric and surface urban heat island for a small urbanizing district of Punjab, India. Landsat 8 OLI/TIRS satellite data and field observations were used to examine the spatial pattern of surface and atmospheric UHI effect respectively, for the month of April, 2018. The satellite data has been used to cover the larger geographical area while field observations were taken for simultaneous and daily temperature measurements for different land use types. The significant influence of land use/land cover (LULC) patterns on UHI effect was analyzed using normalized built-up and vegetation indices (NDBI, NDVI) that were derived from remote sensing satellite data. The statistical analysis carried out for land surface temperature (LST) and LULC indicators displayed negative correlation for LST and NDVI while NDBI and LST exhibited positive correlation depicting attenuation in UHI effect by abundant vegetation. The comparison of remote sensing and in-situ observations were also carried out in the study. The research concluded in finding both nocturnal and daytime UHI effect based on diurnal air temperature observations. The study recommends the urgent need to explore and impose effective UHI mitigation measures for the sustainable urban growth.

서울 수도권 지역의 토지 피복 변화가 여름철 도시열섬 강도와 체감온도에 미치는 영향 (Effects of Land Cover Change on Summer Urban Heat Island Intensity and Heat Index in Seoul Metropolitan Area, Korea)

  • 홍선옥;변재영;김도형;이상삼;김연희
    • 대기
    • /
    • 제31권2호
    • /
    • pp.143-156
    • /
    • 2021
  • This study investigates the impacts of land cover change due to urbanization on the Urban Heat Island Intensity (UHII) and the Heat Index (HI) over the Seoul metropolitan area using the Unified Model (UM) with the Met Office Reading Urban Surface Exchange Scheme (MORUSES) during the heat wave from 16, July to 5, August 2018. Two simulations are performed with the late 1980s land-use (EXP1980) and the late 2000s land-use (EXP2000). EXP2000 is verified using Automatic Weather Station (AWS) data from 85 points in the study area, and observation sites are classified into two categories according to the urban fraction change over 20 years; Category A is 0.2 or less increase, and Category B is 0.2 or more increase. The 1.5-m temperature and relative humidity in Category B increase by up to 1.1℃ and decreased by 7% at 1900 LST and 2000 LST, respectively. This means that the effect of the urban fraction changes is higher at night. UHII increases by up to 0.3℃ in Category A and 1.3℃ in Category B at 1900 LST. Analysis of the surface energy balance shows that the heat store for a short time during the daytime and release at nighttime with upward sensible heat flux. As a result of the HI, there is no significant difference between the two experiments during the daytime, but it increases 1.6℃ in category B during the nighttime (2200 LST). The results indicate that the urbanization increase both UHII, and HI, but the times of maximum difference between EXP1980 and EXP2000 are different.

분포형 수문모형을 이용한 도시지역 옥상녹화에 따른 물 및 열순환 영향 평가 (Assessing the Effect of Water and Heat Cycle of Green Roof System using Distributed Hydrological Model in Urban Area)

  • 장철희;김현준;김연미;남미아
    • KIEAE Journal
    • /
    • 제13권4호
    • /
    • pp.33-41
    • /
    • 2013
  • The impervious area on the surface of urban area has been increased as buildings and artificial land cover have continually been increased. Urban development has gradually decreased the green zone in downtown and alienated the city from the natural environment on outskirt area devastating the natural ecosystem. There arise the environmental problems to urban area including urban heat island phenomenon, urban flood, air pollution and urban desertification. As one of urban plans to solve such problems, green roof system is attracting attentions. The purpose of this study was to investigate flood discharge and heat reduction effect according to the green roof system and to quantify effect by analyzing through simulation water and heat cycle before and after green roof system. For the analysis, Distributed hydrologic model, WEP (Water and Energy transfer Processes) and WEP+ model were used. WEP was developed by Dr. Jia, the Public Works Research Institute in Japan (Jia et al., 2005), which can simulate water and heat cycle of an urban area with complex land uses including calculation of spatial and temporal distributions of water and heat cycle components. The WEP+ is a visualization and analysis system for the WEP model developed by Korea Institute of Construction Technology (KICT).

인공열과 land-use가 부산시의 열적 환경에 미치는 영향 연구 (A Study on The Effect of Anthropogenic Heat Flux and Land-Use on Thermal Environment in Pusan)

  • 김유근
    • 한국대기환경학회지
    • /
    • 제16권4호
    • /
    • pp.363-372
    • /
    • 2000
  • In order to overtake a quantitative analysis of effect of anthropogenic heat and different land-use on urban thermal environment numerical simulation of surface energy budget was carried out under typical summer synoptic condition. It is beneficial to understand surface temperature of complex urban surace. The different land-use types are classified of rice field farm fruit garden residential region forest water and swamp by using map scaled 1/25000 of Pusan metropolitan. The model predicts that maximum heat island intensity in the central part of Pusan is 7$^{\circ}C$ at 2000 LST in summertime. The surface temperature is propotional to the density of constructions. The effect of anthropogenic heat generation on surface temperature is the increase of 0.3$^{\circ}C$ at 1400LST in the central part of Pusan during summertime.

  • PDF

도시 열섬현상 저감을 위한 MPCM 적용 축열도료 제조 및 열적성능 평가 (Preparation and Thermal Performance Evaluation of Heat Storage paint with MPCM for Reducing Urban Heat Island Effect)

  • 정수광;강유진;위승환;장성진;김수민
    • 한국태양에너지학회 논문집
    • /
    • 제35권4호
    • /
    • pp.17-24
    • /
    • 2015
  • The formation of heat islands causes high energy demand for space cooling and peak cooling loads in conditioned buildings. High-temperature fluctuations on a building roof may cause mechanical stress and increase surface deterioration. Thermal energy storage (TES) systems using microencapsulated phase-change materials (MPCMs) have been recognized as one of the most advanced energy technologies for enhancing the energy efficiency and sustainability of buildings. In this study, we prepared MPCM/paint composites for mitigating the heat island effect and reducing peak temperature. In addition, we carried out thermal and physical analysis of prepared MPCM composite samples by means of SEM, FTIR spectroscopy, DSC, and TGA. Further, we evaluated the dynamic heat transfer performance of heat-storage tiles painted with 10 g of heat-storage paint. From the obtained results, we deduced that MPCM/hydrophilic paint composites are more applicable to various fields, including the building sector, than MPCM/hydrophobic paint composites. On the basis of SEM and FTIR spectroscopy results, we concluded that materials with hydrophilic properties are more compatible with MPCMs than those with hydrophobic properties. In addition, DSC analysis results revealed that MPCM/hydrophilic paint composites have better compatibility, higher latent heat capacity, and better thermal properties than other composites. TGA results showed that hydrophilic-paint-based composites have higher thermal durability than hydrophobic-paint-based composites. Finally, a lot of MPCM-loaded heat-storage tiles showed lower peak temperatures at all measurement positions.

대구 앞산 달비골의 국지풍 특성에 관한 관측적 연구 (Observational Study on the Local Wind of the Dalbi-Valley Located at Ap-Mountain in Daegu)

  • 구현숙;권병혁;김해동
    • 한국환경과학회지
    • /
    • 제16권1호
    • /
    • pp.73-79
    • /
    • 2007
  • The purpose of this study is to clarify the effect of mountain-valley wind on heat island formed in urban area which is located around valley mouth. The meteorological observations were carried out over the Dalbi-valley under a clear summer pressure patterns, and some consideration were tried from the results. In order to make clear the climatological characteristics and air-mass modification process of the mountain-valley wind over the valley, the meteorological observations were done simultaneously at two points. The observational points were located at the breast and valley mouth parts, respectively. The results were as follows: First, it was found that the valley wind was observed through the daytime, and it was replaced by a mountain wind after sunset. Second, the heat budget is also investigated with observation data. The sensible heat flux over the breast of Dalbi-valley reached to about $200 W/m^2$ during daytime, which is a little more than one third of net radiation. On the other hand, the sensible heat flux represented negative values during nighttime. But the sensible heat flux over the valley mouth covered by asphalt showed plus value(about $20{\sim}30 W/m^2$) during the nighttime.

유형별 녹지 시뮬레이션을 통한 아파트 단지 내 도시열섬현상 저감효과 분석 (Simulation Analysis of Urban Heat Island Mitigation of Green Area Types in Apartment Complexes)

  • 지은주;김다빈;김유경;이정아
    • 한국조경학회지
    • /
    • 제51권3호
    • /
    • pp.153-165
    • /
    • 2023
  • 도시 열섬현상을 완화하기 위하여 본 연구는 아파트 단지 내 바람의 흐름과 열쾌적성을 고려하여 녹지 연결성을 향상시키기 위한 효과적인 녹지 계획 시나리오를 제안하는 것에 있다. 연구의 사례 대상지는 서울특별시를 대상으로 2020년 6월부터 8월까지 수집된 온도 및 불쾌지수 자료를 비교하여 강동구 고덕동에 위치한 아파트 단지로 선정하였다. 먼저, 연구대상지 현재의 열환경과 바람환경을 분석하였다. 이를 바탕으로 녹지의 패치와 코리도 형태의 요소를 고려하여 시나리오 1(패치), 시나리오 2(코리도), 시나리오 3(패치+ 코리도)의 세 가지 시나리오를 계획하였다. 이후, 각각의 시나리오별 풍속, 풍향, 그리고 열쾌적성을 ENVI-met로 분석하여 도시 열섬현상의 완화효과를 비교하였다. 연구의 결과, 패치 형태의 녹지는 풍속의 증가 및 풍량 개선에 기여하여 예상온열감(PMV)가 31.20% 감소하는 효과를 보였으며(시나리오 1), 열쾌적성 지표(PET)가 68.59%감소하는 것으로 나타났다. 반면 코리도 형태의 녹지로 계획한 경우 바람길의 연결이 용이하여 패치 형태의 녹지 계획에 비하여 풍속이 더욱 높아지는 결과가 나타나 예상온열감(PMV)은 92.47%, 열쾌적성 지표(PET)는 90.14% 감소하였다 (시나리오 2). 녹지 패치와 녹지 코리도를 복합적으로 계획한 경우 가장 큰 풍속의 증가와 연결성을 보여 예상온열감(PMV)에서 95.75%, 열쾌적성 지표(PET)에서 95.35% 감소하는 것으로 나타났다(시나리오 3). 그러나 대상지 내에서 협소한 지역의 경우 패치형 녹지계획이 코리도형의 녹지 계획에 비하여 열쾌적성을 개선하는 데에 더 효과적으로 나타났다. 따라서, 연구의 결과에 근거하여 도시열섬현상을 효과적으로 완화하기 위해서는 패치형태의 녹지와 코리도 형태의 녹지의 계획의 복합적인 형태로 계획될 수 있도록 제안하고자 한다. 본 연구의 결과는 향후 도시형 아파트단지의 도시열섬현상 완화를 위한 녹지계획의 가이드를 제시하여 도시열섬현상에 따른 회복력을 향상시키기 위한 기초자료를 제시할 수 있을 것이다.