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      도시건물정보를 반영한 초고해상도 규모상세화 수치자료 산출체계(KMAPP) 구축 및 풍속 평가 = Development and Wind Speed Evaluation of Ultra High Resolution KMAPP Using Urban Building Information Data

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      https://www.riss.kr/link?id=A108282262

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      다국어 초록 (Multilingual Abstract)

      The purpose of this study is to build and evaluate a high-resolution (50 m) KMAPP (Korea Meteorological Administration Post Processing) reflecting building data. KMAPP uses LDAPS (Local Data Assimilation and Prediction System) data to detail ground wind speed through surface roughness and elevation corrections. During the detailing process, we improved the vegetation roughness data to reflect the impact of city buildings. AWS (Automatic Weather Station) data from a total of 48 locations in the metropolitan area including Seoul in 2019 were used as the observation data used for verification. Sensitivity analysis was conducted by dividing the experiment according to the method of improving the vegetation roughness length. KMAPP has been shown to improve the tendency of LDAPS to over simulate surface wind speeds. Compared to LDAPS, Root Mean Square Error (RMSE) is improved by approximately 23% and Mean Bias Error (MBE) by about 47%. However, there is an error in the roughness length around the Han River or the coastline. Accordingly, the surface roughness length was improved in KMAPP and the building information was reflected. In the sensitivity experiment of improved KMAPP, RMSE was further improved to 6% and MBE to 3%. This study shows that high-resolution KMAPP reflecting building information can improve wind speed accuracy in urban areas.
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      The purpose of this study is to build and evaluate a high-resolution (50 m) KMAPP (Korea Meteorological Administration Post Processing) reflecting building data. KMAPP uses LDAPS (Local Data Assimilation and Prediction System) data to detail ground wi...

      The purpose of this study is to build and evaluate a high-resolution (50 m) KMAPP (Korea Meteorological Administration Post Processing) reflecting building data. KMAPP uses LDAPS (Local Data Assimilation and Prediction System) data to detail ground wind speed through surface roughness and elevation corrections. During the detailing process, we improved the vegetation roughness data to reflect the impact of city buildings. AWS (Automatic Weather Station) data from a total of 48 locations in the metropolitan area including Seoul in 2019 were used as the observation data used for verification. Sensitivity analysis was conducted by dividing the experiment according to the method of improving the vegetation roughness length. KMAPP has been shown to improve the tendency of LDAPS to over simulate surface wind speeds. Compared to LDAPS, Root Mean Square Error (RMSE) is improved by approximately 23% and Mean Bias Error (MBE) by about 47%. However, there is an error in the roughness length around the Han River or the coastline. Accordingly, the surface roughness length was improved in KMAPP and the building information was reflected. In the sensitivity experiment of improved KMAPP, RMSE was further improved to 6% and MBE to 3%. This study shows that high-resolution KMAPP reflecting building information can improve wind speed accuracy in urban areas.

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      참고문헌 (Reference) 논문관계도

      1 홍선옥 ; 변재영 ; 박향숙 ; 이영곤 ; 김백조 ; 하종철, "통합모델을 이용한 토지피복변화와 도시 모수화 방안에 따른 지상 기온 모의성능 민감도 분석" 한국기상학회 28 (28): 427-441, 2018

      2 김도형 ; 홍선옥 ; 변재영 ; 박향숙 ; 하종철, "서울 건물정보 자료를 활용한 UM 기반의 도시캐노피 모델 입력자료 구축 및 평가" 한국기상학회 29 (29): 417-427, 2019

      3 금왕호 ; 이상현 ; 이두일 ; 이상삼 ; 김연희, "복잡 지형 지역에서의 KMAPP 지상 풍속 예측 성능 평가와 개선" 한국기상학회 31 (31): 85-100, 2021

      4 윤진아 ; 김연희 ; 최희욱, "고해상도 규모상세화 수치자료 산출체계를 이용한 남한의 풍력기상자원 특성 분석" 한국기상학회 31 (31): 1-15, 2021

      5 Oke, T. R., "Wind Climate in Cities" Springer 81-107, 1995

      6 변재영 ; 서범근 ; 최영진, "WRF-UCM (Urban Canopy Model)을 이용한 서울 지역의 도시기상 예보 평가" 한국기상학회 20 (20): 13-26, 2010

      7 Ibidun O Adelekan, "Vulnerability to wind hazards in the traditional city of Ibadan, Nigeria" SAGE Publications 24 (24): 597-617, 2012

      8 Wei Zhang, "Urbanization exacerbated the rainfall and flooding caused by hurricane Harvey in Houston" Springer Science and Business Media LLC 563 (563): 384-388, 2018

      9 Junkai Liu, "The impact of urbanization on wind speed and surface aerodynamic characteristics in Beijing during 1991–2011" Springer Science and Business Media LLC 130 (130): 311-324, 2017

      10 Tom G. Farr, "The Shuttle Radar Topography Mission" American Geophysical Union (AGU) 45 (45): 2007

      1 홍선옥 ; 변재영 ; 박향숙 ; 이영곤 ; 김백조 ; 하종철, "통합모델을 이용한 토지피복변화와 도시 모수화 방안에 따른 지상 기온 모의성능 민감도 분석" 한국기상학회 28 (28): 427-441, 2018

      2 김도형 ; 홍선옥 ; 변재영 ; 박향숙 ; 하종철, "서울 건물정보 자료를 활용한 UM 기반의 도시캐노피 모델 입력자료 구축 및 평가" 한국기상학회 29 (29): 417-427, 2019

      3 금왕호 ; 이상현 ; 이두일 ; 이상삼 ; 김연희, "복잡 지형 지역에서의 KMAPP 지상 풍속 예측 성능 평가와 개선" 한국기상학회 31 (31): 85-100, 2021

      4 윤진아 ; 김연희 ; 최희욱, "고해상도 규모상세화 수치자료 산출체계를 이용한 남한의 풍력기상자원 특성 분석" 한국기상학회 31 (31): 1-15, 2021

      5 Oke, T. R., "Wind Climate in Cities" Springer 81-107, 1995

      6 변재영 ; 서범근 ; 최영진, "WRF-UCM (Urban Canopy Model)을 이용한 서울 지역의 도시기상 예보 평가" 한국기상학회 20 (20): 13-26, 2010

      7 Ibidun O Adelekan, "Vulnerability to wind hazards in the traditional city of Ibadan, Nigeria" SAGE Publications 24 (24): 597-617, 2012

      8 Wei Zhang, "Urbanization exacerbated the rainfall and flooding caused by hurricane Harvey in Houston" Springer Science and Business Media LLC 563 (563): 384-388, 2018

      9 Junkai Liu, "The impact of urbanization on wind speed and surface aerodynamic characteristics in Beijing during 1991–2011" Springer Science and Business Media LLC 130 (130): 311-324, 2017

      10 Tom G. Farr, "The Shuttle Radar Topography Mission" American Geophysical Union (AGU) 45 (45): 2007

      11 M. J. Best, "The Joint UK Land Environment Simulator (JULES), model description – Part 1: Energy and water fluxes" Copernicus GmbH 4 (4): 677-699, 2011

      12 Alvin Christopher G. Varquez, "The Effects of Highly Detailed Urban Roughness Parameters on a Sea-Breeze Numerical Simulation" Springer Science and Business Media LLC 154 (154): 449-469, 2014

      13 Unnikrishnan C.K., "Recent changes on land use/land cover over Indian region and its impact on the weather prediction using Unified model" Wiley 17 (17): 294-300, 2016

      14 H. Taubenböck, "Monitoring urbanization in mega cities from space" Elsevier BV 117 : 162-176, 2012

      15 Fuchs, R. J., "Mega-city Growth and the Future" United Nations University Press 392-, 1994

      16 Supantha Paul, "Increased Spatial Variability and Intensification of Extreme Monsoon Rainfall due to Urbanization" Springer Science and Business Media LLC 8 (8): 2018

      17 Shepherd, J. M., "Impacts of urbanization on precipitation and storms : Physical insights and vulnerabilities" 5 : 109-125, 2013

      18 Xingcheng Lu, "Impacts of urbanization and long-term meteorological variations on global PM2.5 and its associated health burden" Elsevier BV 270 : 116003-, 2021

      19 Eugenia Kalnay, "Impact of urbanization and land-use change on climate" Springer Science and Business Media LLC 423 (423): 528-531, 2003

      20 Statistics Korea, "Household projections by province 2017-basaed: 2017-2047"

      21 Moon-Soo Park, "High-resolution urban observation network for user-specific meteorological information service in the Seoul Metropolitan Area, South Korea" Copernicus GmbH 10 (10): 1575-1594, 2017

      22 Matthias Garschagen, "Exploring the relationships between urbanization trends and climate change vulnerability" Springer Science and Business Media LLC 133 (133): 37-52, 2013

      23 NIMS, "Development of Production Techniques on User-Customized High Resolution Weather Information" National Institute of Meteorological Sciences 72-, 2020

      24 Cardona, O. D., "Determinants of risk: Exposure and vulnerability. Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation" Intergovernmental Panel on Climate Change 65-108, 2012

      25 Howard, T., "Correction and downscaling of NWP wind speed forecasts" 14 : 105-116, 2007

      26 Dong-Ju Kim, "Characteristics of LDAPS-Predicted Surface Wind Speed and Temperature at Automated Weather Stations with Different Surrounding Land Cover and Topography in Korea" MDPI AG 11 (11): 1224-, 2020

      27 Hiroyuki Kusaka, "A Simple Single-Layer Urban Canopy Model For Atmospheric Models: Comparison With Multi-Layer And Slab Models" Springer Science and Business Media LLC 101 (101): 329-358, 2001

      28 Valéry Masson, "A Physically-Based Scheme For The Urban Energy Budget In Atmospheric Models" Springer Science and Business Media LLC 94 (94): 357-397, 2000

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