• 제목/요약/키워드: Regional climate model

검색결과 317건 처리시간 0.024초

한반도 대기정체의 특성 및 지역기후모델 HadGEM3-RA를 이용한 미래 전망 (Characteristics of Air Stagnation over the Korean Peninsula and Projection Using Regional Climate Model of HadGEM3-RA)

  • 김도현;김진욱;김태준;변재영;김진원;권상훈;김연희
    • 대기
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    • 제30권4호
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    • pp.377-390
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    • 2020
  • Not only emissions, but also atmospheric circulation is a key factor that affects local particulate matters (PM) concentrations in Korea through ventilation effects and transboundary transports. As part of the atmospheric circulation, air stagnation especially adversely affects local air quality due to weak ventilation. This study investigates the large-scale circulation related to air stagnation over Korea during winter and projects the climate change impacts on atmospheric patterns, using observed PM data, reanalysis and regional climate projections from HadGEM3-RA with Modified Korea Particulate matter Index. Results show that the stagnation affects the PM concentration, accompanied by pressure ridge at upper troposphere and weaken zonal pressure gradient at lower troposphere. Downscaling using HadGEM3-RA is found to yield Added-Value in the simulated low tropospheric winds. For projection of future stagnation, SSP5-8.5 and SSP1-2.6 (high and low emission) scenarios are used here. It has been found that the stagnation condition occurs more frequently by 11% under SSP5-8.5 and by 5% under SSP1-2.6 than in present-day climate and is most affected by changes in surface wind speed. The increase in the stagnation conditions is related to anticyclonic circulation anomaly at upper troposphere and weaken meridional pressure gradient at lower troposphere. Considering that the present East Asian winter monsoon is mainly affected by change in zonal pressure gradient, it is worth paying attention to this change in the meridional gradient. Our results suggest that future warming condition increase the frequency of air stagnation over Korea during winter with response of atmospheric circulation and its nonlinearity.

기후변화를 고려한 소규모 하수처리장 건설에 대한 영향 분석 (Impact Analysis of Construction of Small Wastewater Treatment Plant Under Climate Change)

  • 박경신;정은성;김상욱;이길성
    • 한국물환경학회지
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    • 제26권2호
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    • pp.268-278
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    • 2010
  • This study derived the effectiveness analysis results of construction of wastewater treatment plant under climate change scenarios. Canadian Global Coupled Model (CGCM3) was used and A1B and A2 of Special Report on Emission Scenario (SRES) were selected. Regional climate change data for this application were downscaled by using Statistical Downscaling Model (SDSM) and the flow and BOD concentration durations were obtained by using Hydrological Simulation Program - Fortran (HSPF). The criteria for low flow and water quality were chosen as $Q_{99}$, $Q_{95}$, $Q_{90}$ and $C_{30}$, $C_{10}$, $C_1$. The numbers of days to satisfy the instreamflow requirements and target BOD concentration were also added to the criteria for comparison. As a results, small wastewater treatment plant improved the water cycle due to the increase of low flow and the decrease of BOD concentration. But climate change affected the reduction of effectiveness significantly. Especially in case of construction of small waste water treatment plant in the upstream region, it is necessary to take climate change impact into consideration since it is usually related to the low flow and the water quality of the stream.

NCAR 지역기후모형의 인도 여름 몬순의 모사 성능 (Performance of NCAR Regional Climate Model in the Simulation of Indian Summer Monsoon)

  • ;오재호
    • 한국농림기상학회지
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    • 제12권3호
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    • pp.183-196
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    • 2010
  • 아시아 주요 곡물 생산지의 경제 성장과 지표 이용 변화에 따른 인간 활동의 증가는 아시아 몬순의 경향을 변화 시켰다. 본 연구에서는 지표-해양 대비, 하층제트 기류(LLJ), 티벳 고층 및 상층 편동풍 제트 기류를 포함한 인도 여름 몬순의 중요한 구성 요소를 모사하여 지역기후 모형 (RegCM3)의 성능을 평가하였다. 3년(1994: 다우 해, 2002: 평균 해, 2002: 가뭄 해)의 비교 자료를 선택하여 RegCM3은 매년 4월 1일부터 10월 1일까지 60 km의 해상도로 적분하였다. 순환과 강수 모사 결과는 NCEP/NCAR 재해석 자료와 Global Precipitation Climatology Centre(GPCC)의 관측 자료로 검증하였다. RegCM3 모형 모사의 중요 결과는 다음과 같다. (a) LLJ 는 다소 강하였으며 아라비아해에서 다우 해에 두 개로 분할되었으나, 평균 및 가뭄 해에서는 분할되지 않았다. (b) 단일의 대형 고기압이 다우 해에 존재하였으나, 가뭄 해에는 약하고 두 개의 고기압대로 분할되었다. (c) 강수의 공간분포 모사는 대부분 인도 지역에서 GPCC의 관측 강수량과 유사하였다. (d) NIMBUS-7 SMMR 적설 자료를 이용한 민감도 실험에서 북동 및 남부 인도 반도 지역에서 주로 강수량의 감소가 나타났으며, 티벳 지역에서는 4월 적설량이 0.1m 감소하는 것으로 나타났다.

Haines Index를 이용한 동아시아 지역 산불 확산 위험도 변화와 지표-대기 상호관계와의 연관성 연구 (Future Changes of Wildfire Danger Variability and Their Relationship with Land and Atmospheric Interactions over East Asia Using Haines Index)

  • 이미나;홍승범;박선기
    • 대기
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    • 제23권2호
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    • pp.131-141
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    • 2013
  • Many studies have related the recent variations of wildfire regime such as the increasing number of occurrances, their patterns and timing changes, and the severity of their extreme cases with global warming. However, there are only a few numbers of wildfire studies to assess how the future wildfire regime will change in the interactions between land and atmosphere with climate change especially over East Asia. This study was performed to estimate the future changing aspect of wildfire danger with global warming, using Haines Index (HI). Calculated from atmospheric instability and dryness, HI is the potential of an existing fire to become a dangerous wildfire. Using the Weather Research and Forecasting (WRF) model, two separated 5-year simulations of current (1995~1999) and far future (2095~2099) were performed and analyzed. Community Climate System Model 3 (CCSM3) model outputs were utilized for the model inputs for the past and future over East Asia; future prediction was driven under the IPCC A1B scenario. The results indicate changes of the wildfire danger regime, showing overall decreasing the wildfire danger in the future but intensified regional deviations between north and south. The overall changes of the wildfire regime seems to stem from atmospheric dryness which is sensitive to soil moisture variation. In some locations, the future wildfire danger overall decreases in summer but increases in winter or fall when the actual fire occurrence are generally peaked especially in South China.

Climate Change Adaptation Policy and Expansion of Irrigated Agriculture in Georgia, U.S.

  • Park, ChangKeun
    • Asian Journal of Innovation and Policy
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    • 제10권1호
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    • pp.68-89
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    • 2021
  • The expansion of irrigated agricultural production can be appropriate for the southeast region in the U.S. as a climate change adaptation strategy. This study investigated the effect of supplemental development of irrigated agriculture on the regional economy by applying the supply side Georgia multiregional input-output (MRIO) model. For the analysis, 100% conversion of non-irrigated cultivable acreage into irrigated acreage for cotton, peanuts, corn, and soybeans in 42 counties of southwest Georgia is assumed. With this assumption, the difference in total net returns of production between the non-irrigation and irrigation method is calculated as input data of the Georgia MRIO model. Based on the information of a 95% confidence interval for each crop's average price, the lower and upper bounds of estimated results are also presented. The total impact of cotton production was $60 million with the range of $35 million to $85 million: The total impact of peanuts, soybeans, corn was $10.2 million (the range of $3.28 million to $23.7 million), $6.6 million (the range of $3.1 million to $10.2 million), $1.2 million (the range of -$6 million to $8.5 million), respectively.

A hierarchical Bayesian model for spatial scaling method: Application to streamflow in the Great Lakes basin

  • Ahn, Kuk-Hyun
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2018년도 학술발표회
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    • pp.176-176
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    • 2018
  • This study presents a regional, probabilistic framework for estimating streamflow via spatial scaling in the Great Lakes basin, which is the largest lake system in the world. The framework follows a two-fold strategy including (1) a quadratic-programming based optimization model a priori to explore the model structure, and (2) a time-varying hierarchical Bayesian model based on insights found in the optimization model. The proposed model is developed to explore three innovations in hierarchical modeling for reconstructing historical streamflow at ungaged sites: (1) information of physical characteristics is utilized in spatial scaling, (2) a time-varying approach is introduced based on climate information, and (3) heteroscedasticity in residual errors is considered to improve streamflow predictive distributions. The proposed model is developed and calibrated in a hierarchical Bayesian framework to pool regional information across sites and enhance regionalization skill. The model is validated in a cross-validation framework along with four simpler nested formulations and the optimization model to confirm specific hypotheses embedded in the full model structure. The nested models assume a similar hierarchical Bayesian structure to our proposed model with their own set of simplifications and omissions. Results suggest that each of three innovations improve historical out-of-sample streamflow reconstructions although these improvements vary corrsponding to each innovation. Finally, we conclude with a discussion of possible model improvements considered by additional model structure and covariates.

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RCP 기후변화시나리오를 이용한 극한지수 변화 전망 (Change Projection of Extreme Indices using RCP Climate Change Scenario)

  • 정세진;성장현;김병식
    • 한국수자원학회논문집
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    • 제46권11호
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    • pp.1089-1101
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    • 2013
  • 본 논문에서는 미래 극한기후의 변화를 확인하고자 지역기후모형을 이용하여, STARDEX에서 제시한 극한지수를 계산하고 경향성 분석을 통해 미래 극한기후의 지속성과 공간적 분포의 변화양상을 파악하였다. 강수관련 극한지수를 분석한 결과, 수도권과 경기도, 강원도 영동지역, 남해안 지역에서 증가경향성이 확인되었고, 중부 내륙지역에서는 감소경향성이 전망되었다. 기온관련 극한지수를 분석한 결과 기후변화로 인해 미래 우리나라의 평균 기온이 현재보다 증가하는 것을 알 수 있었다. 강수관련 극한지수 중 집중호우 한계점은 경향성에 대한 기울기 값이 서귀포에서 0.229, 지속기간 5일 최대 강수량은 서귀포에서 5.692, 최대 건조지속기간은 속초에서 0.099로 확인되었다. 기온관련 극한지수 중 Hotdays 한계점의 경향성에 대한 기울기 값은 인천에서 0.077, 최대혹서기기간은 울진에서 0.162, Coldnight 한계점은 인제에서 0.075, 동결일수는 통영에서 -0.193으로 확인되었다.

기후 요소가 해파리 출현에 미치는 영향 분석 (An Analysis of the Impact of Climatic Elements on the Jellyfish Blooms)

  • 김봉태;엄기혁;한인성;박혜진
    • 수산해양교육연구
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    • 제27권6호
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    • pp.1755-1763
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    • 2015
  • The objective of this study is to empirically analyze the relationship between sea temperature and jellyfish blooms. Ever since the 2000s, jellyfish population has been dramatically increased, which brought negative influence on the national health and the fisheries activities. Jellyfish blooms have been recognized as an effect of climate change, but there has been no empirical evidence to support such relationship. In this paper, the relationship between sea temperature and jellyfish blooms has been analyzed by using the regional jellyfish monitoring data and coastal stationary observing data of National Institute of Fisheries Science. Since the dependant variable carries left censoring issues, we used the panel tobit model. Our results indicate that there are statistically significant positive relationship between sea temperature and jellyfish blooms.

Generation and Verification on the Synthetic Precipitation/Temperature Data

  • Oh, Jai-Ho;Kang, Hyung-Jeon
    • 한국농림기상학회:학술대회논문집
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    • 한국농림기상학회 2016년도 추계 학술발표논문집
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    • pp.25-28
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    • 2016
  • Recently, because of the weather forecasts through the low-resolution data has been limited, the demand of the high-resolution data is sharply increasing. Therefore, in this study, we restore the ultra-high resolution synthetic precipitation and temperature data for 2000-2014 due to small-scale topographic effect using the QPM (Quantitative Precipitation Model)/QTM (Quantitative Temperature Model). First, we reproduce the detailed precipitation and temperature data with 1km resolution using the distribution of Automatic Weather System (AWS) data and Automatic Synoptic Observation System (ASOS) data, which is about 10km resolution with irregular grid over South Korea. Also, we recover the precipitation and temperature data with 1km resolution using the MERRA reanalysis data over North Korea, because there are insufficient observation data. The precipitation and temperature from restored current climate reflect more detailed topographic effect than irregular AWS/ASOS data and MERRA reanalysis data over the Korean peninsula. Based on this analysis, more detailed prospect of regional climate is investigated.

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기후변화에 따른 지표수의 수온 영향평가 (Projected Climate Change Impact on Surface Water Temperature in Korea)

  • 안종호;한대호
    • 한국물환경학회지
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    • 제26권1호
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    • pp.133-139
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    • 2010
  • Global human activities associated with the use of fossil fuels have aggravated climate change, increasing air temperature. Consequently, climate change has the potential to alter surface water temperature with significant impacts on biogeochemical cycling and ecosystems in natural water body. In this study, we examined temporal trends on historical records of surface water temperature, and investigated the air temperature/water temperature relationship and the potential water temperature change from an air temperature scenario developed with regional climate model. Although the temporal trends of water temperature are highly variable site-by-site, surface water temperature was highly dependent on air temperature, and has increased significantly in some sub-watersheds over the last two decades. The results presented here demonstrate that water temperature changes are expected to be slightly higher in river system than reservoir systems and more significant during winter than summer for both river and reservoir system. Projected change of surface water temperature will likely increase $1.06^{\circ}C$ for rivers and $0.95^{\circ}C$ for reservoirs during the period 2008 to 2050. Given the potential climatic changes, every $1^{\circ}C$ increase in water temperature could cause dissolved oxygen levels to fall every 0.206 ppm.