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      청주시 무심천 주변의 열환경 특성 분석 = Analysis of Thermal Characteristics for Areas of Musim Stream in Cheongju City

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      https://www.riss.kr/link?id=A105056234

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      다국어 초록 (Multilingual Abstract)

      The urban thermal environment can be an important index to detect heat island phenomena and manage it to improve urban life quality. Cheongju is a typical plain-city that main part has been formed and developed in lowland. The Mushim stream crosses the city from south to north. We reviewed the use of thermal remote sensing in stream around areas and the thermal environments, focusing primarily on the Urban Heat Island(UHI) effect. The purpose of this study is to determine the relationship between the stream nearby urban area and the stream cooling effect of UHI. The objectives are to determine the usefulness of KOMPSAT-2 bands MS3 and MS4 for vegetation cover mapping, and the usefulness of LANDSAT TM band 6 in identifying thermal environmental characteristics and UHI. Land Surface Temperatures (LST) are retrieved by single-channel algorithm to study the UHI from the 6th band (thermal infrared band) of LANDSAT TM images and thermal radiance thermometer based on remote sensing method and the LST distribution maps are accomplished according to the retrieval results. There is also comparison of satellite-derived and in situ measured temperature. The results indicated that the LST of urban center is higher than that of suburban area, the temperature of mountain and water are the lowest area, so it is clearly proved that there are obvious UHI effects by stream. The surface temperature distribution of Mushim stream is detected $2^{\circ}C$ lower than urban area.
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      The urban thermal environment can be an important index to detect heat island phenomena and manage it to improve urban life quality. Cheongju is a typical plain-city that main part has been formed and developed in lowland. The Mushim stream crosses th...

      The urban thermal environment can be an important index to detect heat island phenomena and manage it to improve urban life quality. Cheongju is a typical plain-city that main part has been formed and developed in lowland. The Mushim stream crosses the city from south to north. We reviewed the use of thermal remote sensing in stream around areas and the thermal environments, focusing primarily on the Urban Heat Island(UHI) effect. The purpose of this study is to determine the relationship between the stream nearby urban area and the stream cooling effect of UHI. The objectives are to determine the usefulness of KOMPSAT-2 bands MS3 and MS4 for vegetation cover mapping, and the usefulness of LANDSAT TM band 6 in identifying thermal environmental characteristics and UHI. Land Surface Temperatures (LST) are retrieved by single-channel algorithm to study the UHI from the 6th band (thermal infrared band) of LANDSAT TM images and thermal radiance thermometer based on remote sensing method and the LST distribution maps are accomplished according to the retrieval results. There is also comparison of satellite-derived and in situ measured temperature. The results indicated that the LST of urban center is higher than that of suburban area, the temperature of mountain and water are the lowest area, so it is clearly proved that there are obvious UHI effects by stream. The surface temperature distribution of Mushim stream is detected $2^{\circ}C$ lower than urban area.

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      참고문헌 (Reference)

      1 나상일, "청주북부지역의 토지이용 매핑과 변화탐지" 한국농공학회 50 (50): 77-90, 2008

      2 김진수, "여름철 토지피복별 기온변화 특성" 한국농공학회 49 (49): 79-88, 2007

      3 "기상청"

      4 권성일, "겨울철 도시부와 도시 교외부의 기온변화 특성" 한국농공학회 50 (50): 3-11, 2008

      5 Artis, D. A., "Survey of emissivity variability in thermography of urban areas" 12 : 313-329, 1982

      6 Goovaerts, P., "Stochastic simulation of categorical variables using a classification algorithm and simulated annealing" 28 (28): 909-921, 1996

      7 Kim, Y. H., "Maximum urban heat island in Seoul" 41 (41): 651-659, 2002

      8 나상일, "Landsat ETM+영상의 지표면온도와 NDVI공간을 이용한 광역 증발산량의 도면화" 한국농공학회 50 (50): 155-164, 2008

      9 박종화, "LANDSAT영상을 이용한 여름철 청주지역의 토지피복과 지표면온도와의 관계 분석" 한국농공학회 48 (48): 39-49, 2006

      10 Oke, T. R., "City size and the urban heat island" 7 : 769-779, 1973

      1 나상일, "청주북부지역의 토지이용 매핑과 변화탐지" 한국농공학회 50 (50): 77-90, 2008

      2 김진수, "여름철 토지피복별 기온변화 특성" 한국농공학회 49 (49): 79-88, 2007

      3 "기상청"

      4 권성일, "겨울철 도시부와 도시 교외부의 기온변화 특성" 한국농공학회 50 (50): 3-11, 2008

      5 Artis, D. A., "Survey of emissivity variability in thermography of urban areas" 12 : 313-329, 1982

      6 Goovaerts, P., "Stochastic simulation of categorical variables using a classification algorithm and simulated annealing" 28 (28): 909-921, 1996

      7 Kim, Y. H., "Maximum urban heat island in Seoul" 41 (41): 651-659, 2002

      8 나상일, "Landsat ETM+영상의 지표면온도와 NDVI공간을 이용한 광역 증발산량의 도면화" 한국농공학회 50 (50): 155-164, 2008

      9 박종화, "LANDSAT영상을 이용한 여름철 청주지역의 토지피복과 지표면온도와의 관계 분석" 한국농공학회 48 (48): 39-49, 2006

      10 Oke, T. R., "City size and the urban heat island" 7 : 769-779, 1973

      11 Price, J. C., "Assessment of the urban heat island effect through the use of satellite data" 107 : 1554-1557, 1979

      12 박종화, "AVHRR영상과 분광반사특성을 이용한 식생지수(NDVI)의 변동특성" 8 (8): 33-40, 2004

      13 Oue H., "A micrometeorological function of paddy fields and control temperature conditions" 62 (62): 955-960, 1994

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      2026 평가예정 재인증평가 신청대상 (재인증)
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