• 제목/요약/키워드: potential impact on drought

검색결과 21건 처리시간 0.032초

Impact of Climate Change on Variation of the Aridity and Evaporative Indexes in South Korea

  • Ha, Doan Thi Thu;Bae, Deg-Hyo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.146-146
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    • 2019
  • The aridity index, which is determined as the ratio of potential evapotranspiration to precipitation, is one of key parameters in drought characterization. Whereas the evaporative index, which is defined as the ratio of actual evapotranspiration to precipitation, represents the fraction of available water consumed by the evapotranspiration process. This study investigates variation of the aridity and evaporative indexes due to climate change during the 21st century in South Korea. Estimations of the aridity and evaporative indexes are obtained using SWAT mode based on ensemble of 13 different GCMs over 5 large basins of South Korea for 2 RCP scenarios (RCP 4.5 and RCP 8.5). The results shows the opposite trends of the two indexes, where the aridity index is projected as always increase, while the evaporative index is expected to decrease in all of 3 future period (2011-1940, 1941-1970, 1971-2099). The estimated results also suggest that land cover influenced significantly evapotranspiration along with the change of climate. The study indicates that South Korea will be facing with a high risk of water scarcity in future due to climate change, which is seriously challenging for water planing and management in the country.

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GLDAS 증발 스트레스 기반 한반도 돌발가뭄의 공간적 발생 특성 연구 (A study on spatial onset characteristics of flash drought based on GLDAS evaporative stress in the Korean Peninsula)

  • 강민선;정재환;이슬찬;최민하
    • 한국수자원학회논문집
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    • 제56권10호
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    • pp.631-639
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    • 2023
  • 돌발가뭄(Flash drought, FD)은 기존 가뭄과는 달리 급작스러운 발생이 대표적인 특징으로, 즉각적인 수분 스트레스를 유발하여 생태계에 주요한 영향을 미친다. 보다 효과적인 돌발가뭄의 모니터링을 위해서는 돌발가뭄의 특징과 원인에 대한 보다 종합적인 이해가 필요하다. 이에, 본 연구에서는 Global Land Data Assimilation System (GLDAS) 자료를 사용하여 2012년부터 2022년 사이 한반도 전역에서 발생한 돌발가뭄에 대해 분석하고자 하였다. 스트레스 기반 탐지 기법인 표준 증발 스트레스 비율(Standardized Evaporative Stress Ratio, SESR)의 변화를 바탕으로 돌발가뭄을 탐지하였으며, 발생 빈도와 기간에 대해 분석하였다. 또한, 탐지된 돌발가뭄 사건들을 실제 증발산(Actual Evapotranspiration, AET)과 잠재 증발산(Potential Evapotranspiration, PET)의 변화를 기반으로 세 가지 케이스로 분류하였으며, 각 케이스 별 발생 특성 및 공간 분포에 대해 분석하였다. 그 결과, 돌발가뭄의 발생 빈도와 기간에 지역적인 편차가 있는 것을 확인하였으며, 평균 빈도는 6.4회, 평균 발생 기간은 31일로 나타났다. 일반적인 돌발가뭄인 Case 1, AET의 감소가 주 원인이 되어 발생한 Case 2, PET의 증가에 의해 발생한 Case 3으로 돌발가뭄 사건들을 분류하였을 때, 한반도에서는 Case 1 돌발가뭄이 1,448건으로 가장 많이 발생했으며, Case 2 돌발가뭄이 Case 3 돌발가뭄보다 약 1.5배 더 많이 일어난 것을 확인할 수 있었다. Case 2 돌발가뭄은 수분 제한 조건(water-limited condition)에서 발생하여 AET와 PET가 모두 감소하는 결과로 이어졌으며, Case 3 돌발가뭄은 에너지 제한 조건(energy-limited condition)에서 발생한 이후 AET와 PET가 모두 증가하였다. Case 2 돌발가뭄은 주로 북서부와 중남부에 위치한 농경지에 영향을 주었으며, Case 3 돌발가뭄은 산지에 해당하는 동부에서 집중적으로 발생하였다. 본 연구의 결과들은 기후 요소, 토지피복 및 수분 가용성을 고려한, 돌발가뭄에 대한 이해를 돕고, 보다 효과적인 가뭄 대응 방안 수립에 기여할 수 있다.

기후인자의 변화에 따른 대청댐유역의 유출민감도 모의평가 - 4th IPCC 보고서의 결과를 기준으로 - (Sensitivity Assessment on Daecheong Dam Basin Streamflows According to the Change of Climate Components - Based on the 4th IPCC Report -)

  • 정상만;서형덕;김형수;한규하
    • 한국수자원학회논문집
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    • 제41권11호
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    • pp.1095-1106
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    • 2008
  • 기후변화와 지구온난화현상은 지구 전체에 걸쳐 분명하게 나타나고 있으며 그에 따라 발생할 수 있는 수문 변화에 대한 연구가 다양하게 이루어지고 있다. 본 연구에서는 기후변화에 따른 유역 유출의 민감도를 평가하기 위하여 SWAT 모형을 이용하였으며 대청댐유역에 적용하였다. 모형의 보정은 1982-1995년의 월평균 하천유량을 이용하였고 1996-2005년의 자료를 이용하여 검증하였다. 기후변화에 따른 수문 변동을 정량적으로 분석하기 위하여 1988-2002년을 기준시나리오 기간으로 설정하였으며 이산화탄소 농도, 기온, 강수의 변화에 따른 총 7개의 시나리오를 구성하였다. 7개의 시나리오 중 배증 이산화탄소와 기온의 5.4℃ 증가를 반영하는 시나리오는 연평균 4~5%의 하천유량 증가를 예측하였고, 강수량의 변화를 반영하는 시나리오는 -42, -17, 17, 42%의 변화에 따라 -55, -24, 25, 64%의 비선형적인 하천유량 증감이 예측되었다. 기후인자의 변화를 복합적으로 반영하고 있는 시나리오에서는 평균 12%(봄, 여름, 가을)와 63%(겨울)의 하천유량 변화를 예측하였다. 또한 유황분석 결과 대청댐유역의 유출은 기후변화에 매우 민감한 것으로 나타났으며, 이러한 기후변화는 가뭄과 홍수의 심도와 발생기간에 큰 영향을 미칠 것으로 판단된다.

현 기후예측시스템에서의 기온과 강수 계절 확률 예측 신뢰도 평가 (Reliability Assessment of Temperature and Precipitation Seasonal Probability in Current Climate Prediction Systems)

  • 현유경;박진경;이조한;임소민;허솔잎;함현준;이상민;지희숙;김윤재
    • 대기
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    • 제30권2호
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    • pp.141-154
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    • 2020
  • Seasonal forecast is growing in demand, as it provides valuable information for decision making and potential to reduce impact on weather events. This study examines how operational climate prediction systems can be reliable, producing the probability forecast in seasonal scale. A reliability diagram was used, which is a tool for the reliability by comparing probabilities with the corresponding observed frequency. It is proposed for a method grading scales of 1-5 based on the reliability diagram to quantify the reliability. Probabilities are derived from ensemble members using hindcast data. The analysis is focused on skill for 2 m temperature and precipitation from climate prediction systems in KMA, UKMO, and ECMWF, NCEP and JMA. Five categorizations are found depending on variables, seasons and regions. The probability forecast for 2 m temperature can be relied on while that for precipitation is reliable only in few regions. The probabilistic skill in KMA and UKMO is comparable with ECMWF, and the reliabilities tend to increase as the ensemble size and hindcast period increasing.

미국 Corn Belt 폭염이 개발도상국의 식량안보에 미치는 영향 평가 (Modeling the Effect of a Climate Extreme on Maize Production in the USA and Its Related Effects on Food Security in the Developing World)

  • 정유란
    • 한국농림기상학회:학술대회논문집
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    • 한국농림기상학회 2014년도 추계 학술발표논문집
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    • pp.1-24
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    • 2014
  • 2012년 상반기 미국의 옥수수 생산량은 재배면적의 증가 등으로 20% 이상 증가할 것으로 예측되었다. 하지만 2012년 봄 미국의 폭염과 가뭄이 발생하였고, 그 현상이 지속될 것으로 예측되면서 많은 경제학자들, 국제곡물수급 관련 전문가들은 미국의 옥수수 생산량이 감소할 것으로 예측했다. 실제로, 2013년 미국 농무부 (USDA)의 작물생산 총 보고서에서 2012년 미국 폭염과 가뭄으로 미국의 2012년 옥수수 생산량은 2011년에 비해 20% 감소했다고 발표했다. 많은 연구에서 곡물 생산량을 예측하지만 기상이변과 함께 작물의 생물학적 반응뿐 아니라 경제모형이 결합된 연구는 많지 않다. 본 연구에서는 기상이변과 작물모형, 경제모형을 결기상합하여 미국의 최대 옥수수 생산지역의 옥수수 생산량을 예측하고 생산량의 변화가 개발도상국의 식량안보에 어떤 영향을 줄 것인가를 예측하였다. 기상이변 시나리오를 재현하기 위해 미국 NOAA의 NCDC에서 미국의 폭염 발생 연도의 정보를 획득하고 해당 연도에 대하여 미국 전역의 기상관측소에서 6월부터 8월까지의 월별 일 기상자료 (최고 및 최저기온, 강수량)를 수집하였으며 기준연도 (1950-2000)에 산술평균 방법으로 폭염/가뭄 정보를 적용했다. 미래 시나리오 (2050)는 CGIAR의 CCAFS에서 $CO_2$ emission scenario에 따라 A1B와 B1, 전지구 모형에 따라 CSIRO-MK 3와 MIROC 3.2를 다운로드하였으며, 해상도는 5 arc-minutes (적도에서 10km)이다. 작물모형 (CERES-Maize)으로부터 출력된 옥수수의 생물리학적 결과는 경제모형의 단위 (FPU)로 다시 정리되어 사회경제, 정책과 농업생산을 예측하기 위해 글로벌 경제모형 (IMPACT2)에 입력되었다. 작물모형에서 기준연도에 비해 미국 폭염과 가뭄에 의한 옥수수 생산량은 29% 감소할 것으로 예측되었다. 미래 시나리오 B1의 CSIRO-MK 3과 MIROC 3.2에서는 36% 감소할 것으로 예측되었으며, A1B의 CSIRO-MK 3에서는 38%, MIROC 3.2에서는 58% 감소할 것으로 나타났다. 미국의 기상이변으로 인한 옥수수 생산량의 감소는 전세계 옥수수 시장에 부정적 영향을 끼칠 것으로 예상되면서 세계 옥수수 소비의 감소로 이어질 것으로 예측되었다. 사하라 사막 이남 아프리카 (SSA)의 나라들에서 가장 많은 기아인구가 발생하고 그 외 남아시아와 라틴 아메리카, Caribbean 지역의 나라들에서 기아와 함께 식량 불안이 증가할 것으로 나타났다. 옥수수를 매일 섭취하는 사람들은 옥수수 생산량 감소에서 비롯된 옥수수 소비 감소에 즉각적으로 반응하지 못함으로써 영양불균형에 처하는 등 식량수급의 불안정은 이러한 개발도상국 지역에서 계속 악화될 것으로 나타났다.

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Estimation of methane emissions from local and crossbreed beef cattle in Daklak province of Vietnam

  • Ramirez-Restrepo, Carlos Alberto;Van Tien, Dung;Le Duc, Ngoan;Herrero, Mario;Le Dinh, Phung;Van, Dung Dinh;Le Thi Hoa, Sen;Chi, Cuong Vu;Solano-Patino, Cesar;Lerner, Amy M.;Searchinger, Timothy D.
    • Asian-Australasian Journal of Animal Sciences
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    • 제30권7호
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    • pp.1054-1060
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    • 2017
  • Objective: This study was aimed at evaluating effects of cattle breed resources and alternative mixed-feeding practices on meat productivity and emission intensities from household farming systems (HFS) in Daklak Province, Vietnam. Methods: Records from Local $Yellow{\time}Red$ Sindhi (Bos indicus; Lai Sind) and 1/2 Limousin, 1/2 Drought Master, and 1/2 Red Angus cattle during the growth (0 to 21 months) and fattening (22 to 25 months) periods were used to better understand variations on meat productivity and enteric methane emissions. Parameters were determined by the ruminant model. Four scenarios were developed: (HFS1) grazing from birth to slaughter on native grasses for approximately 10 h plus 1.5 kg dry matter/d (0.8% live weight [LW]) of a mixture of guinea grass (19%), cassava (43%) powder, cotton (23%) seed, and rice (15%) straw; (HFS2) growth period fed with elephant grass (1% of LW) plus supplementation (1.5% of LW) of rice bran (36%), maize (33%), and cassava (31%) meals; and HFS3 and HFS4 computed elephant grass, but concentrate supplementation reaching 2% and 1% of LW, respectively. Results: Results show that compared to HFS1, emissions ($72.3{\pm}0.96kg\;CH_4/animal/life$; least squares $means{\pm}standard$ error of the mean) were 15%, 6%, and 23% lower (p<0.01) for the HFS2, HFS3, and HFS4, respectively. The predicted methane efficiencies ($CO_2eq$) per kg of LW at slaughter ($4.3{\pm}0.15$), carcass weight ($8.8{\pm}0.25kg$) and kg of edible protein ($44.1{\pm}1.29$) were also lower (p<0.05) in the HFS4. In particular, irrespective of the HSF, feed supply and ratio changes had a more positive impact on emission intensities when crossbred 1/2 Red Angus cattle were fed than in their crossbred counterparts. Conclusion: Modest improvements on feeding practices and integrated modelling frameworks may offer potential trade-offs to respond to climate change in Vietnam.

Exploring sustainable resources utilization: Interlink between food waste generation and water resources conservation

  • Adelodun, Bashir;Choi, Kyung-Sook
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.232-232
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    • 2019
  • The persistence of drought periods and water scarcity is a growing public concern, as climate change projections indicate a more critical scenario in the future. The sustainability of water resources for the increasing population, and to ensuring crop production will unarguably be a daunting task for the water resources managers, with a projected 9.8 billion people by 2050 as well as the need to increase food production by 70 to 100%. Consequently, there is a need for significant irrigation water use for more crop production in the face of stiff competition among water users. However, the available natural resources are already over-constrained, and the allocation of more resources for food production is not feasible. Currently, about two-thirds of global water withdrawer is used by the agricultural sector while 48% of water resources in Korea is used for agricultural production. Despite the apparent ecological deficit and unfavorable conditions of resources utilization, a staggering amount of food waste occurs in the country. Moreover, wastage of food translates to waste of all the resources involved in the food production including water resources. Food waste can also be considered a serious potential for economic and environmental problems. Hence, exploring an alternative approach to efficient resources utilization in a more sustainable way can ensure considerable resources conservation. We hypothesized that reducing food waste will decline the demand for food production and consequently reduce the pressure on water resources. We investigated the food wastage across the food supply chain using the top-down datasets based on the FAO mass balance model. Furthermore, the water footprint of the estimated food wastage was assessed using the representative of selected food crops. The study revealed that the average annual food wastage across the food supply chain is 9.05 million tonnes, signifying 0.51 kg/capita/day and 48% of domestic food production. Similarly, an average of 6.29 Gm3 per annum of water resources was lost to food wastage, which translates to 40% of the total allotted water resources for agriculture in the country. These considerable resources could have been conserved or efficiently used for other purposes. This study demonstrated that zero food waste generation would significantly reduce the impact on freshwater resources and ensure its conservation. There is a need for further investigation on the food waste study using the bottom-up approach, specifically at the consumer food waste, since the top-down approach is based on estimations and many assumptions were made.

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Exploring sustainable resources utilization: Interlink between food waste generation and water resources conservation

  • Adelodun, Bashir;Choi, Kyung-Sook
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.408-408
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    • 2019
  • The persistence of drought periods and water scarcity is a growing public concern, as climate change projections indicate a more critical scenario in the future. The sustainability of water resources for the increasing population, and to ensuring crop production will unarguably be a daunting task for the water resources managers, with a projected 9.8 billion people by 2050 as well as the need to increase food production by 70 to 100%. Consequently, there is a need for significant irrigation water use for more crop production in the face of stiff competition among water users. However, the available natural resources are already over-constrained, and the allocation of more resources for food production is not feasible. Currently, about two-thirds of global water withdrawer is used by the agricultural sector while 48% of water resources in Korea is used for agricultural production. Despite the apparent ecological deficit and unfavorable conditions of resources utilization, a staggering amount of food waste occurs in the country. Moreover, wastage of food translates to waste of all the resources involved in the food production including water resources. Food waste can also be considered a serious potential for economic and environmental problems. Hence, exploring an alternative approach to efficient resources utilization in a more sustainable way can ensure considerable resources conservation. We hypothesized that reducing food waste will decline the demand for food production and consequently reduce the pressure on water resources. We investigated the food wastage across the food supply chain using the top-down datasets based on the FAO mass balance model. Furthermore, the water footprint of the estimated food wastage was assessed using the representative of selected food crops. The study revealed that the average annual food wastage across the food supply chain is 9.05 million tonnes, signifying 0.51 kg/capita/day and 48% of domestic food production. Similarly, an average of $6.29Gm^3$ per annum of water resources was lost to food wastage, which translates to 40% of the total allotted water resources for agriculture in the country. These considerable resources could have been conserved or efficiently used for other purposes. This study demonstrated that zero food waste generation would significantly reduce the impact on freshwater resources and ensure its conservation. There is a need for further investigation on the food waste study using the bottom-up approach, specifically at the consumer food waste, since the top-down approach is based on estimations and many assumptions were made.

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Perspective of breaking stagnation of soybean yield under monsoon climate

  • Shiraiwa, Tatsuhiko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.8-9
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    • 2017
  • Soybean yield has been low and unstable in Japan and other areas in East Asia, despite long history of cultivation. This is contrasting with consistent increase of yield in North and South America. This presentation tries to describe perspective of breaking stagnation of soybean yield in East Asia, considering the factors of the different yields between regions. Large amount of rainfall with occasional dry-spell in the summer is a nature of monsoon climate and as frequently stated excess water is the factor of low and unstable soybean yield. For example, there exists a great deal of field-to-field variation in yield of 'Tanbaguro' soybean, which is reputed for high market value and thus cultivated intensively and this results in low average yield. According to our field survey, a major portion of yield variation occurs in early growth period. Soybean production on drained paddy fields is also vulnerable to drought stress after flowering. An analysis at the above study site demonstrated a substantial field-to-field variation of canopy transpiration activity in the mid-summer, but the variation of pod-set was not as large as that of early growth. As frequently mentioned by the contest winners of good practice farming, avoidance of excess water problem in the early growth period is of greatest importance. A series of technological development took place in Japan in crop management for stable crop establishment and growth, that includes seed-bed preparation with ridge and/or chisel ploughing, adjustment of seed moisture content, seed treatment with mancozeb+metalaxyl and the water table control system, FOEAS. A unique success is seen in the tidal swamp area in South Sumatra with the Saturated Soil Culture (SSC), which is for managing acidity problem of pyrite soils. In 2016, an average yield of $2.4tha^{-1}$ was recorded for a 450 ha area with SSC (Ghulamahdi 2017, personal communication). This is a sort of raised bed culture and thus the moisture condition is kept markedly stable during growth period. For genetic control, too, many attempts are on-going for better emergence and plant growth after emergence under excess water. There seems to exist two aspects of excess water resistance, one related to phytophthora resistance and the other with better growth under excess water. The improvement for the latter is particularly challenging and genomic approach is expected to be effectively utilized. The crop model simulation would estimate/evaluate the impact of environmental and genetic factors. But comprehensive crop models for soybean are mainly for cultivations on upland fields and crop response to excess water is not fully accounted for. A soybean model for production on drained paddy fields under monsoon climate is demanded to coordinate technological development under changing climate. We recently recognized that the yield potential of recent US cultivars is greater than that of Japanese cultivars and this also may be responsible for different yield trends. Cultivar comparisons proved that higher yields are associated with greater biomass production specifically during early seed filling, in which high and well sustained activity of leaf gas exchange is related. In fact, the leaf stomatal conductance is considered to have been improved during last a couple of decades in the USA through selections for high yield in several crop species. It is suspected that priority to product quality of soybean as food crop, especially large seed size in Japan, did not allow efficient improvement of productivity. We also recently found a substantial variation of yielding performance under an environment of Indonesia among divergent cultivars from tropical and temperate regions through in a part biomass productivity. Gas exchange activity again seems to be involved. Unlike in North America where transpiration adjustment is considered necessary to avoid terminal drought, under the monsoon climate with wet summer plants with higher activity of gas exchange than current level might be advantageous. In order to explore higher or better-adjusted canopy function, the methodological development is demanded for canopy-level evaluation of transpiration activity. The stagnation of soybean yield would be broken through controlling variable water environment and breeding efforts to improve the quality-oriented cultivars for stable and high yield.

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미래 기후변화와 토지이용변화가 안성천 공도 도시성장 유역의 수문에 미치는 영향 평가 (Assessment of future climate and land use changes impact on hydrologic behavior in Anseong-cheon Gongdo urban-growing watershed)

  • 김다래;이용관;이지완;김성준
    • 한국수자원학회논문집
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    • 제51권2호
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    • pp.141-150
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    • 2018
  • 본 연구의 목적은 안성천 상류 공도유역($366.5km^2$)을 대상으로 SWAT 모형을 이용하여 미래 기후변화 평가에 있어, 미래의 토지이용변화를 동시에 고려하면 수문학적 거동에 얼마나 영향을 주는지를 분석하고자 하였다. 미래기후변화 시나리오는 HadGEM3-RA의 RCP 4.5와 8.5 시나리오를 이용하여 2030s (2020-2039)과 2050s (2040-2059) 기간으로 나누어 적용하였으며, 토지이용변화는 도시성장 시나리오에 따른 회귀모형 기반의 CLUE-s 모델을 이용하였다. 기준년(1976-2005) 대비 미래 강수량은 RCP 4.5에서 2030s에 최대 5.7%의 감소, 2050s에는 최대 18.5% 증가하였고, 미래 기온은 2030s RCP 4.5에서 최대 $1.8^{\circ}C$, 2050s RCP 8.5에서 최대 $2.6^{\circ}C$ 증가하였다. 미래 토지이용은 2050년 도시지역이 58.6% ($29.0km^2$에서 $46.0km^2$) 증가하는 것으로 예측되었다. SWAT 수문 검보정은 14년(2002-2015) 동안의 공도관측소 일유량 자료를 이용하였으며, 저유량 모델효율의 향상을 위하여 2014-2015년 연속 가뭄년을 대상으로 보정을 실시한 결과, 하천유량(Q)과 1/Q을 대상으로 Nash-Sutcliffe 모델효율은 각각 0.86과 0.76이었다. 미래 기후변화 시나리오만을 적용한 결과, 하천유출량이 2030s RCP 4.5에서 최대 24.2% 감소하다가 2050s RCP 4.5에서 최대 10.9% 증가하는 변화를 보여주었다. 한편, 기후변화와 더불어 미래의 토지이용변화를 함께 고려한 경우는 하천유출량이 2030s RCP 4.5에서 최대 14.9% 감소, 2050s RCP 4.5에서 최대 19.5% 증가하는 변화를 보여주어, 미래 기후변화에 따른 유역의 수문평가 시, 도시성장이 기대되는 유역 등 미래의 토지이용변화가 클 가능성이 있는 유역에 대해서는 토지이용변화 요소를 고려할 필요가 있다고 생각된다.