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      법주사와 선암사의 국지 기상 및 미세먼지 특성 비교

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      https://www.riss.kr/link?id=A103349622

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      국문 초록 (Abstract)

      건조물문화재의 생물피해 관련하여 먼저 기상요소를 직접 측정하고 국지 기상 특성을 파악하는 것은 매우 중요하다. 본 연구는 목조 건축물, 석조 건축물 생물피해가 확인되고, 지역적 기후...

      건조물문화재의 생물피해 관련하여 먼저 기상요소를 직접 측정하고 국지 기상 특성을 파악하는 것은 매우 중요하다. 본 연구는 목조 건축물, 석조 건축물 생물피해가 확인되고, 지역적 기후 차이가 뚜렷한 충북 보은 법주사와 전남 순천 선암사를 비교 대상으로 기상요소 10가지 항목을 관측하였고 미세먼지(TSP)를 포집 분석하였다. 또한, 기상요소-미세먼지 간, 기상요소 간 상관성 분석을 실시하였다. 법주사의 국지 기상 특성은 일사량, 자외선량, 증발량이 많고 풍속이 빠르며 미세먼지 농도가 높은 반면 선암사의 국지 기상 특성은 기온, 습도, 이슬점온도, 기압이 높고 강수량, 강수일수가 많았다. 미세먼지의 원소분석결과, 선암사는 해염 입자가 추가로 발견되었고, 법주사에 비해 생체 입자와 철함유 입자의 월별 빈도가 높게 나타났다. 상관성 분석 결과, 법주사는 풍속이, 선암사는 습도가 주요 기상인자로써 영향을 미치는 것으로 확인되었다. 이상의 결과로 선암사의 기상 특성은 각종 생물 성장에 유리하므로 건조물문화재의 생물학적 손상에 영향이 더 클 것으로 예상된다.

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      다국어 초록 (Multilingual Abstract)

      It is crucial to measure meteorological elements in relation to the biodeterioration of building cultural heritages. The Beopjusa and Seonamsa temples located respectively in Chungbuk and Jeonnam provinces, Korea, exhibit biological damage to the buil...

      It is crucial to measure meteorological elements in relation to the biodeterioration of building cultural heritages. The Beopjusa and Seonamsa temples located respectively in Chungbuk and Jeonnam provinces, Korea, exhibit biological damage to the building cultural heritages and cause noticeable climatic differences. To compare biodeterioration environments of the abovementioned temples, 10 meteorological elements were observed, and particulate matter (TSP) was collected at each location. Furthermore, a correlation analysis was conducted between meteorological elements, and between meteorological elements and TSP. The local meteorology at Beopjusa temple characteristically showcased high total horizontal radiation, UV radiation, evaporation, wind speed, and TSP concentration, whereas, that at Seonamsa temple showcased high temperature, humidity, dew point temperature, air pressure, precipitation and number of days with precipitation. An elemental analysis of TSP revealed the presence of sae-salts at Seonamsa temple, and compared to that of Beopjusa temple, the monthly frequencies of biogenic aerosol and Fe-containing particles were higher. The correlation analysis showed that wind speed and humidity were major meteorological factors at Beopjusa and Seonamsa temples, respectively. Subsequently, the characteristics of the local meteorology at Seonamsa temple are expected to affect the biological damage of the building cultural heritages, which is favorable for the growth of various organisms.

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      목차 (Table of Contents)

      • 초록
      • ABSTRACT
      • 1. 서론
      • 2. 연구방법
      • 2.1. 관측지점
      • 초록
      • ABSTRACT
      • 1. 서론
      • 2. 연구방법
      • 2.1. 관측지점
      • 2.2. 기상요소
      • 2.3. 미세먼지
      • 2.4. 상관성분석
      • 3. 결과
      • 3.1. 법주사와 선암사의 기상요소
      • 3.2. 법주사와 선암사의 미세먼지
      • 3.3. 법주사와 선암사의 통계분석
      • 4. 고찰
      • 4.1. 법주사와 선암사의 기상요소
      • 4.2. 법주사와 선암사의 미세먼지
      • 4.3. 법주사와 선암사의 기상요소 상관성분석
      • 5. 결론
      • REFERENCES
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      참고문헌 (Reference)

      1 Abdel Hameed, A. A., 414 : 696-700, 2012

      2 설동일, "지구 온난화와 태풍의 변화 경향" 한국항해항만학회 34 (34): 453-458, 2010

      3 Herald Corporation, "Winter has changed on the Korean Peninsula : Heavy snow and cold wave decreased, and strong wind and high seas incresed"

      4 National Institute of Environmental Research, "The study for a regional scale variation of acid deposition and its impact on the ecosystem (I)" National Institute of Environmental Research 13-117, 2009

      5 Zhong, X., "Seasonal distribution of microbial activity in bioaerosols in the outdoor environment of the Qingdao coastal region" 140 : 506-513, 2016

      6 National Institute of Environmental Research, "Sampling methods in ambient atmosphere" National Institute of Environmental Research 1-38, 2016

      7 Korea National University of Cultural Heritage Industry-Academic Cooperation Foundation, "Research on environmental effect to nearby cultural properties after construction of Yeoju-Bo" Korea National University of Cultural Heritage Industry-Academic Cooperation Foundation 1-244, 2014

      8 National Research Institute of Cultural Heritage, "Reconstruction of investigation technology of biodeterioration on building cultural heritages" National Research Institute of Cultural Heritage 1-277, 2015

      9 Kang, S. J., "Quantitative ED-EPMA combined with morphological information for the characterization of individual aerosol particles collected in Incheon" 43 : 3445-3453, 2009

      10 Kim, C. H., "Numerical simulations of the three-dimensional land and sea breezes under synoptic flows over South Korea" 28 (28): 165-181, 1992

      1 Abdel Hameed, A. A., 414 : 696-700, 2012

      2 설동일, "지구 온난화와 태풍의 변화 경향" 한국항해항만학회 34 (34): 453-458, 2010

      3 Herald Corporation, "Winter has changed on the Korean Peninsula : Heavy snow and cold wave decreased, and strong wind and high seas incresed"

      4 National Institute of Environmental Research, "The study for a regional scale variation of acid deposition and its impact on the ecosystem (I)" National Institute of Environmental Research 13-117, 2009

      5 Zhong, X., "Seasonal distribution of microbial activity in bioaerosols in the outdoor environment of the Qingdao coastal region" 140 : 506-513, 2016

      6 National Institute of Environmental Research, "Sampling methods in ambient atmosphere" National Institute of Environmental Research 1-38, 2016

      7 Korea National University of Cultural Heritage Industry-Academic Cooperation Foundation, "Research on environmental effect to nearby cultural properties after construction of Yeoju-Bo" Korea National University of Cultural Heritage Industry-Academic Cooperation Foundation 1-244, 2014

      8 National Research Institute of Cultural Heritage, "Reconstruction of investigation technology of biodeterioration on building cultural heritages" National Research Institute of Cultural Heritage 1-277, 2015

      9 Kang, S. J., "Quantitative ED-EPMA combined with morphological information for the characterization of individual aerosol particles collected in Incheon" 43 : 3445-3453, 2009

      10 Kim, C. H., "Numerical simulations of the three-dimensional land and sea breezes under synoptic flows over South Korea" 28 (28): 165-181, 1992

      11 National Institute of Environmental Research, "Monitoring plan of acid deposition" National Institute of Environmental Research 1-15, 2008

      12 Mansour, A. A., "Microorganisms associated particulate matter: A preliminary study" 479-480 : 109-116, 2014

      13 Meteorological Research Institute Korea Meteorological Administration, "Diagnosis of characteristics of local meteorology and development of techniques for the meteorological environmental impact assessment (I)" Meteorological Research Institute Korea Meteorological Administration 1-6, 2006

      14 National Institute of Environmental Research, "Determination of particulate matter(PM-10) in indoor by the gravimetric method" National Institute of Environmental Research 52-67, 2017

      15 Ro, C. U., "Determination of chemical species in individual aerosol particles using ultrathin window EPMA" 34 : 3023-3030, 2000

      16 National Research Institute of Cultural Heritage, "Conservation management of stone cultural heritage using nondestructive technology" National Research Institute of Cultural Heritage 13-15, 2014

      17 National Research Institute of Cultural Heritage, "Cleaning and surface contaminant of stone cultural heritage" National Research Institute of Cultural Heritage 7-, 2011

      18 National Research Institute of Cultural Heritage, "Analysis research of correlation with biodeterioration on building cultural heritages" National Research Institute of Cultural Heritage 1-371, 2016

      19 Kim, T. R., "A study on the air temperature change and regional characteristics in South Korea" 2 (2): 131-167, 2009

      20 Park, H. W., "A classification of climatic region in Korea using GIS" 33 (33): 17-40, 1998

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.52 0.52 0.47
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.5 0.47 0.455 0.1
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