• Title/Summary/Keyword: SRES

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Climate Change Impacts on Agricultural Water in Nakdong-river Watershed (기후변화에 따른 낙동강 유역 농업용수 영향 분석)

  • Jee, Yong-Keun;Lee, Jin-Hee;Kim, Sang-Dan
    • Journal of The Korean Society of Agricultural Engineers
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    • v.54 no.3
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    • pp.149-157
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    • 2012
  • For the systemic management and planning of future agricultural water resources, deriving and analyzing the various results of climate change are necessary to respond the uncertainties of climate change. This study assessed the impact of climate change on the rainfall, temperature, and agricultural water requirement targeting in the Nakdong-river's basin periodically according to socioeconomic driving factors under the scenarios A1B, A2 and B1 of the Special Report on Emission Scenarios (SRES) through the various IPCC GCMs. As a result of future rainfall change (2011~2100), increasing or decreasing tendency of rainfall change for future periods did not show a clear trend for three rainfall observatories, Daegu, Busan and Gumi. The characteristics of the temperature change consistently show a tendency to increase, and in the case of Daegu observatory, high temperature growth was shown. Especially, it was increased by 93.3 % in the period of future3 (2071~2100) for A2 scenario. According to the scenario and periodic analyses on the agricultural water demand, which was thought to be dependent on rainfall and temperature, the agricultural water demand increased at almost every period except during the Period Future1 (2011~2040) with different increase sizes, and the scenario-specific results were shown to be similar. As for areas, the agricultural water demand showed more changes in the sub-basin located by the branch of Nakdong-river than at the mainstream of the River.

Uncertainty of Simulated Paddy Rice Yield using LARS-WG Derived Climate Data in the Geumho River Basin, Korea (LARS-WG 기후자료를 이용한 금호강 유역 모의발생 벼 생산량의 불확실성)

  • Nkomozepi, Temba D.;Chung, Sang-Ok
    • Journal of The Korean Society of Agricultural Engineers
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    • v.55 no.4
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    • pp.55-63
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    • 2013
  • This study investigates the trends and uncertainty of the impacts of climate change on paddy rice production in the Geumho river basin. The Long Ashton Research Station stochastic Weather Generator (LARS-WG) was used to derive future climate data for the Geumho river basin from 15 General Circulation models (GCMs) for 3 Special Report on Emissions Scenarios (SRES) (A2, A1B and B1) included in the Intergovernmental Panel on Climate Change (IPCC) 4th assessment report. The Food and Agricultural Organization (FAO) AquaCrop, a water-driven crop model, was statistically calibrated for the 1982 to 2010 climate. The index of agreement (IoA), prediction efficiency ($R^2$), percent bias (PBIAS), root mean square error (RMSE) and a visual technique were used to evaluate the adjusted AquaCrop simulated yield values. The adjusted simulated yields showed RMSE, NSE, IoA and PBIAS of 0.40, 0.26, 0.76 and 0.59 respectively. The 5, 9 and 15 year central moving averages showed $R^2$ of 0.78, 0.90 and 0.96 respectively after adjustment. AquaCrop was run for the 2020s (2011-2030), 2050s (2046-2065) and 2090s (2080-2099). Climate change projections for Geumho river basin generally indicate a hotter and wetter future climate with maximum increase in the annual temperature of $4.5^{\circ}C$ in the 2090s A1B, as well as maximum increase in the rainfall of 45 % in the 2090s A2. The means (and ranges) of paddy rice yields are projected to increase by 21 % (17-25 %), 34 % (27-42 %) and 43 % (31-54 %) for the 2020s, 2050s and 2090s, respectively. The A1B shows the largest rice yield uncertainty in all time slices with standard deviation of 0.148, 0.189 and $0.173t{\cdot}ha^{-1}$ for the 2020s, 2050s and 2090s, respectively.

Future drought assessment in the Nakdong basin in Korea under climate change impacts

  • Kim, Gwang-Seob;Quan, Ngo Van
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.458-458
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    • 2012
  • Climate extreme variability is a major cause of disaster such as flood and drought types occurred in Korea and its effects is also more severe damage in last decades which can be danger mature events in the future. The main aim of this study was to assess the effectives of climate change on drought for an agriculture as Nakdong basin in Korea using climate change data in the future from data of General Circulation Models (GCM) of ECHO-G, with the developing countries like Korea, the developed climate scenario of medium-high greenhouse gas emission was proposed of the SRES A2. The Standardized Precipitation Index (SPI) was applied for drought evaluation. The drought index (SPI) applied for sites in catchment and it is evaluated accordingly by current and future precipitation data, specific as determined for data from nine precipitation stations with data covering the period 1980-2009 for current and three periods 2010-2039, 2040-2069 and 2070-2099 for future; time scales of 3month were used for evaluating. The results determined drought duration, magnitude and spatial extent. The drought in catchment act intensively occurred in March, April, May and November and months of drought extreme often appeared annual in May and November; drought frequent is a non-uniform cyclic pattern in an irregular repetitive manner, but results showed drought intensity increasing in future periods. The results indicated also spatial point of view, the SPI analysis showed two of drought extents; local drought acting on one or more one of sites and entire drought as cover all of site in catchment. In addition, the meteorology drought simulation maps of spatial drought representation were carried out with GIS software to generate for some drought extreme years in study area. The method applied in this study are expected to be appropriately applicable to the evaluation of the effects of extreme hydrologic events, the results also provide useful for the drought warning and sustainable water resources management strategies and policy in agriculture basins.

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Assessment of climate change impact on Hydrology and water quality by snowmelt (기후변화를 고려한 미래 융설이 수문-수질에 미치는 영향 평가)

  • Kim, Saet-Byul;Ha, Rim;Yu, Yung-Seok;Yi, Jae-Eung;Kim, Seong-Joon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.126-126
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    • 2012
  • 기후변화는 전 세계적으로 다양한 영향을 미치고 있으며 특히, 홍수나 대설로 인한 수문변화에 영향을 준다. 본 연구는 준분포형 연속 모형인 SWAT (Soil and Water Assessment Tool)모형을 이용하여 우리나라 3대 대설지역에 속하는 다목적댐인 충주댐유역(6642.0 m)의 기후변화에 따른 융설이 수문과 수질에 미치는 영향을 분석하고자 한다. 먼저, 융설 모형의 매개변수인 적설분포면적감소곡선 (Snow Cover Depletion Curve; SCDC)을 구축하기 위하여 10년(2000-2010)동안의 Terra MODIS (MODerate resolution Imaging Spectroradiometer) 위성영상자료와 6개 기상관측소(충주, 제천, 원주, 영월, 대관령, 태백)의 최심적설자료를 이용하여 연도별 SCDC을 구축하였다. 구축 결과, 눈이 50% 피복 일 때 snow volume은 연 평균 0.47로 분석되었다. 이를 SWAT 모형에 적용하여 수문과 수질에 대한 적용성 평가를 실시한 결과, 유출의 경우 NSE는 융설기간 동안 평균 0.8, 전체기간은 평균 0.6으로 나타났으며 수질(Sediment, T-N, T-P)의 경우 각각 평균 0.72, 0.70, 0.85을 나타내었다. 미래 기후자료는 IPCC(Intergovernmental Panel on Climate Change)에서 제공하는 SRES(Special Report on Emission Scenarios) A1B, B1 기후변화시나리오의 HadCM3 모델의 결과 값을 이용하였으며 기간은 과거 30년 기후자료(1981-2010, baseline)를 바탕으로 2040s(2020-2059), 2080s(2060-2099)의 두 기간으로 나누어 각각 분석하였으며 기후변화 결과 값의 불확실성을 줄이고자 과거 자료와 GCM의 1981년에서 2000년까지의 값을 비교하여 온도와 강수량의 보정을 실시한 후 LARS-WG를 이용하여 온도와 강수량 자료를 구축하였다. SWAT 모형을 적용한 결과, 평균 1.92 증가한 것으로 나타났으며 유출은 융설기간(Nov-Apr)이 비융설기간(May-Oct)보다 10% 더 증가하였다. 본 연구에서는 SWAT 모형을 통한 유출 및 환경부하량 전망을 목표로 하여 미래 기후변화를 고려한 융설이 다목적댐에서의 유출과 수질 (Sediment, Total Nitrogen, Total Phosphorus)에 미치는 영향을 평가해 보고자 한다.

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Evaluation of Future Climate Change Impact on Streamflow of Gyeongancheon Watershed Using SLURP Hydrological Model

  • Ahn, So-Ra;Ha, Rim;Lee, Yong-Jun;Park, Geun-Ae;Kim, Seong-Joon
    • Korean Journal of Remote Sensing
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    • v.24 no.1
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    • pp.45-55
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    • 2008
  • The impact on streamflow and groundwater recharge considering future potential climate and land use change was assessed using SLURP (Semi-distributed Land-Use Runoff Process) continuous hydrologic model. The model was calibrated and verified using 4 years (1999-2002) daily observed streamflow data for a $260.4km^2$ which has been continuously urbanized during the past couple of decades. The model was calibrated and validated with the coefficient of determination and Nash-Sutcliffe efficiency ranging from 0.8 to 0.7 and 0.7 to 0.5, respectively. The CCCma CGCM2 data by two SRES (Special Report on Emissions Scenarios) climate change scenarios (A2 and B2) of the IPCC (Intergovemmental Panel on Climate Change) were adopted and the future weather data was downscaled by Delta Change Method using 30 years (1977 - 2006, baseline period) weather data. The future land uses were predicted by CA (Cellular Automata)-Markov technique using the time series land use data of Landsat images. The future land uses showed that the forest and paddy area decreased 10.8 % and 6.2 % respectively while the urban area increased 14.2 %. For the future vegetation cover information, a linear regression between monthly NDVI (Normalized Difference Vegetation Index) from NOAA/AVHRR images and monthly mean temperature using five years (1998 - 2002) data was derived for each land use class. The future highest NDVI value was 0.61 while the current highest NDVI value was 0.52. The model results showed that the future predicted runoff ratio ranged from 46 % to 48 % while the present runoff ratio was 59 %. On the other hand, the impact on runoff ratio by land use change showed about 3 % increase comparing with the present land use condition. The streamflow and groundwater recharge was big decrease in the future.

Analysis of Rainfall-Runoff Characteristics on Bias Correction Method of Climate Change Scenarios (기후변화 시나리오 편의보정 기법에 따른 강우-유출 특성 분석)

  • Kum, Donghyuk;Jung, Young Hun;Yang, Jae E;Lim, Kyoung Jae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.438-438
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    • 2015
  • 기후변화 시나리오는 다양한 자연조건에 대한 불완전한 이해, 연산능력 등의 제한으로 매우 높은 불확실성이 내포되어 있으며, 국내의 다양한 연구에서도 제시되어 있듯이 매우 과소 추정되어 있는 문제점이 있다. 이러한 문제로 인하여 다양한 편의보정 기법을 통해 기후변화 시나리오의 불확실성을 줄이고자 하는 노력이 수행되었다. 그러나 편의보정 기법은 적용 방법이 서로 상이하기 때문에 보정에 따른 강우 특성이 다르게 나타나는 문제점이 있다. 이에 본 연구에서는 편의보정 기법에 따른 강우-유출 특성을 갑천유역을 대상으로 분석하였다. Change Factor(CF)와 Quantile Mapping(QM) 그리고 CF와 QM을 연계한 편의보정기법(CQ)에 따른 강우-유출 특성을 갑천유역을 대상으로 Change Factor(CF)에서 연평균(CF_Y)/월평균(CF_M) 교정계수를 이용하는 방법과 Quantile Mapping(QM)을 총 편의보정기간(QM_E)과 우기와 비우기(QM_P)를 구분하여 누적확률분포를 고려하는 방법, 그리고 CF와 QM을 연계한 편의보정기법(CQ) 총 5가지에 대해서 편의보정을 수행하고 유출특성을 SWAT모형을 이용하여 분석하였다. 과거 기간에 대해 CF_M과 QM_P는 첨두유량이 실측 첨두유량에 비해 2배 이상 크게 나타났으며, 특히 QM_P는 최대 강우 발생 월이 다른 편의보정 기법과는 다르게 나타나 월별 유출 분석시 큰 오류가 발생될 것으로 판단된다. 5가지의 편의보정 기법 중에 CQ가 과거 강수 크기, 발생 분포 및 빈도 재현을 가장 잘 반영하며, 미래기간에 대한 기간별(2030s, 2050s, 2070s, 2090s) 평균유량을 비교한 결과 본 연구에서 사용한 SRES A1B 시나리오의 이산화탄소 배출 시나리오의 특성을 유지한 미래 강우-유출해석이 이루어지는 것으로 나타났다. 기후변화 시나리오에 편의보정 기법 적용으로 자연적인 현상을 정확하게 모의하기에는 어려움이 많고 불확실성 역시 매우 크지만, 과거 강수발생 경향이나 편의보정의 특성을 알고 활용목적에 맞는 편의보정을 수행한다면 수자원 관리 계획 수립 등에 큰 도움이 될것으로 판단된다.

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Development of Natural Disaster Risk Assessment Technique (자연재난 위험도 평가 기법 개발)

  • Choi, Changwon;Bae, Changyeon;Kang, Hoseon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.87-87
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    • 2018
  • 지난 30년간 한반도의 연평균 기온은 $1.2^{\circ}C$ 상승하여, 전세계 100년간 평균 기온 상승 $0.74^{\circ}C$에 비해 그 상승폭이 크게 증가하였다. IPCC 5차 평가보고서(2013년)의 RCP 시나리오에 따르면, 4차 평가보고서(2007년)의 SRES 시나리오에서 보다 우리나라의 기후변화 영향이 크게 증가될 것으로 예상하고 있으며, 2050년 연평균기온의 변화가 기존 $2.0^{\circ}C$에서 $3.2^{\circ}C$로, 강수량은 기존 11.5%에서 15.6%대로 증가할 것으로 전망하고 있다. 우리나라의 최근 10년간 발생한 자연재난을 살펴보면 호우, 태풍에 의한 피해가 가장 크게 나타났고, 대설, 강풍에 의한 피해가 뒤를 이었으며, 기후변화의 영향으로 재난 재해의 형태는 점차 대형화 다양화 되어가고 있다. 이러한 기후변화에 대비하여 효율적인 재난 대응 및 대책수립을 위해 재난 위험도 평가의 필요성이 증대되고 있으며 국내의 다양한 부처에서 연구를 수행하고 있다. 그러나 재난 위험도 평가체계 및 방법론이 각 연구별로 다원화되어 있고, 실무적용 또한 미흡한 실정이다. 따라서 본 연구에서는 UNISDR 등 국제기구에서 제시하는 위험도 평가방법론을 기반으로 우리나라에 적용 가능한 위험도 평가 방법론을 정립하고, 홍수, 태풍, 대설, 가뭄 등에 대한 재난 위험도 평가 기법을 개발하였다. 또한 실제 피해 통계와 평가 결과에 대한 비교 및 적정성 분석을 통해 우리나라 실정에 맞는 최적의 위험도 평가 체계 및 방법론을 구축하고자 하였다. 본 연구를 통해 위해성, 노출성, 취약성 및 저감능력 지표로 구성된 재난 위험도 평가 기법을 개발하였고, 재난 유형별 지역별 10단계, 5등급의 위험도 평가 결과를 도출하였다. 본 연구에서는 홍수, 태풍, 대설, 가뭄 등 6개 자연재난 유형에 대한 위험도 평가 지표를 개발하였으며, 향후, 국가 및 지역 재난안전관리계획에 자연재난 위험도 평가 결과 활용을 위해 후속 연구를 추진 중에 있다.

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A Review of Regional Climate Change in East-Asia and the Korean Peninsula Based on Global and Regional Climate Modeling Researches (전구 및 지역기후 모델 결과에 근거한 동아시아 및 한반도 지역기후 변화 전망 연구 소개 및 고찰)

  • Hong, Song You;Kwon, Won Tae;Chung, Il Ung;Baek, Hee Jeong;Byun, Young Hwa;Cha, Dong Hyun
    • Journal of Climate Change Research
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    • v.2 no.4
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    • pp.269-281
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    • 2011
  • In this review, numerical model results from global and regional climate models are introduced to regional detailed climate changes over East Asia and Korea. In particular, regional climate change scenarios in this region, which are created by several research groups in Korea based on Special Report on Emissions Scenarios (SRES) of IPCC 4th assessment report are introduced and characteristics of the scenarios are investigated. Despite slight differences in intensity, all scenarios reveal prominent warming over the Korean peninsula in future climate. Changes in precipitation amount vary with given scenarios and periods, but the frequency and intensity of heavy precipitation generally tend to increase in all scenarios. South Korea except for mountainous regions is expected to change into subtropical climate in future, which accompanies distinct changes in ecosystems and seasons.

Assessment of Flood Vulnerability: Baramarae Intertidal Area in Anmyeondo, Korea (침수 취약성 평가: 안면도 바람아래 조간대 지역을 사례로)

  • KIM, Jang-soo;JANG, Dong-Ho
    • Journal of The Geomorphological Association of Korea
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    • v.17 no.2
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    • pp.29-39
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    • 2010
  • Climate change recently causes rapid rises in sea level in Baramarae intertidal area and the rises present several socio-economic impacts to the affected area. We have assessed the vulnerability of the region by the rise of the sea level. Using quantitative GIS method on multi-temporal satellite images, we have first estimated the elevation (Digital Elevation Model: DEM) of Baramarae intertidal area and hence we were possibly able to identify the flooded areas under the IPCC SRES scenarios. As sea level rises by 20cm, 30cm, 40cm, 50cm and 60 cm, the estimated flooded areas of the tidal flat are 68ha, 85ha, 103ha, 121ha and 139ha, respectively. The most affected area is the tidal flat in Gagyeongju Village (Gonam-li, Gonam-myeon, Taean, Chungnam), because it has not only lower altitude but also, perhaps more significantly smooth slope. The potential affected areas are currently populated by farming of oysters and short-necked clams and therefore the areas expect significant economic loss by rise of sea level.

Vulnerability Assessment of Cultivation Facility by Abnormal Weather of Climate Change (이상기후에 의한 재배시설의 취약성 평가)

  • Yoon, Seong-Tak;Lee, Yong-Ho;Hong, Sun-Hee;Kim, Myung-Hyun;Kang, Kee-Kyung;Na, Young-Eun;Oh, Young-Ju
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.15 no.4
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    • pp.264-272
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    • 2013
  • Climate changes have caused not only changes in the frequency and intensity of extreme climate events, but also temperature and precipitation. The damages on agricultural production system will be increased by heavy rainfall and snow. In this study we assessed vulnerability of crop cultivation facility and animal husbandry facility by heavy rain in 232 agricultural districts. The climate data of 2000 years were used for vulnerability analysis on present status and the data derived from A1B scenario were used for the assessment in the years of 2020, 2050 and 2100, respectively. Vulnerability of local districts was evaluated by three indices such as climate exposure, sensitivity and adaptive capacity, and each index was determined from selected alternative variables. Collected data were normalized and then multiplied by weight value that was elicited in delphi investigation. Jeonla-do and Gangwon-do showed higher climate exposures than the other provinces. The higher sensitivity to abnormal weather was observed from the regions that have large-scale cultivation facility complex compared to the other regions and vulnerability to abnormal weather also was higher at these provinces. In the projected estimation based on the SRES A1B, the vulnerability of controlled agricultural facility in Korea totally increased, especially was dramatic between 2000's and 2020 year.