• 제목/요약/키워드: DROUGHT

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가뭄모니터링 시스템 구축: I. 정량적 가뭄모니터링을 위한 가뭄지수의 적용성 분석 (Development of Drought Monitoring System: I. Applicability of Drought Indices for Quantitative Drought Monitoring)

  • 이주헌;정상만;김성준;이명호
    • 한국수자원학회논문집
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    • 제39권9호
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    • pp.787-800
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    • 2006
  • 본 연구에서는 한반도에 대한 가뭄모니터링 시스템을 구축하기 위하여 각종 기상 및 수문자료를 활용하여 우리나라 전역에 대한 PDSI, SPI 및 MSWSI 등의 가뭄지수를 월 단위로 산정 하였으며 산정된 각종 지수들이 어느 정도로 과거에 발생했던 가뭄을 정량적으로 재현하는가를 분석하였다. 분석을 위하여 1994년, 1995년 및 200l년에 발생했던 가뭄의 가뭄피해 조사기록을 이용하였고 본 연구에서 이용되는 3가지의 가뭄지수들이 가뭄감시를 위한 가뭄지표로 활용할 수 있는가를 판단하기 위하여 과거 가뭄에 대한 재현정도, 가뭄단계의 일치성 및 상관관계를 분석하였다. 분석결과, PDSI, SPI(3), SPI(6), MSWSI 순으로 과거 가뭄 모니터링에 대한 정확성을 나타냈고 특히 가뭄의 심도 및 지속기간을 비교 분석한 결과에서도 상당히 우수한 결과를 보여 가뭄모니터링을 위한 지표로 충분히 활용될 수 있다는 결론을 얻었다.

비선형 물수지모형과 팔머가뭄심도지수를 이용한 가뭄지속기간 분석 (An Analysis of the Drought Period Using Non-Linear Water Balance Model and Palmer Drought Severity1 Index)

  • 이재수
    • 한국수자원학회논문집
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    • 제34권5호
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    • pp.533-542
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    • 2001
  • 가뭄에 대한 대책을 수립하기 위해서는 각 가뭄상태별로 가뭄의 지속기간을 산정하는 것이 선행되어야 한다. 이러한 가뭄의 지속기간 분석에 사용할 수 있는 방법에는 비선형 물수지모형과 Palmer 가뭄심도지수방법이 있다. 비선형 물수지모형은 지표면과 대기의 수분이동을 고려한 물수지방법을 추계학적 변동에 의해 야기되는 건기와 습윤기 사이의 변환기간을 모의할 수가 있다. Palmer 가뭄심도지수는 강우량과 잠재증발산량을 바탕으로 기상학적으로 필요한 강우량과 실제강우량을 비교하여 가뭄의 정도를 나타내는 물수지방법이다. 본 연구에서는 한강유역에 대해 비선형 물수지모형과 Palmer 가뭄심도지수를 이용하여 가뭄의 지속기간을 산정하였다. 비선형 물수지모형을 사용하여 산정된 토양함수비에 따른 가뭄의 지속기관과 Palmer 가뭄심도지수를 이용하여 산정된 지수별 가뭄의 지속기간이 유사하게 나타났다. 연구 결과 한강유역에서의 극심한 가뭄상태에서 습윤기로 변환되는 지속기간이 약 3년으로 산정되었다.

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2017년 극심한 봄 가뭄의 기상학적 특성 및 통계학적 가뭄빈도해석 (Assessment of the Meteorological Characteristics and Statistical Drought Frequency for the Extreme 2017 Spring Drought Event Across South Korea)

  • 방나경;남원호;홍은미
    • 한국농공학회논문집
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    • 제60권4호
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    • pp.37-48
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    • 2018
  • The extreme 2017 spring drought affected a large portion of central and western South Korea, and was one of the most climatologically driest spring seasons over the 1961-2016 period of record. This drought was characterized by exceptionally low precipitation, with total precipitation from January to June being 50% lower than the mean normal precipitation (1981-2010) over most of western South Korea. In this study, for the quantitative drought impact analysis, the widely-used Standardized Precipitation Index (SPI) and the statistical drought frequency are compared with observed meteorological characteristics and anomalies. According to the drought frequency analysis of monthly cumulative precipitation during January and May in 2017, Gyeonggi-do, Chungcheong-do, and Jeollanam-do areas showed more than drought frequency over 100 years. Gyeongsangnam-do area showed more than drought frequency over 200 years based on annual precipitation in 2017. The South Korean government (Ministry of Agriculture, Food and Rural Affairs (MAFRA) and Korea Rural Community Corporation (KRC)) have been operating a government-level drought monitoring system since 2016. Results from this study can be used to improve the drought monitoring applications of future drought events, as well as drought planning and preparedness in South Korea.

가뭄사상 및 농업수리시설물이 쌀 생산량에 미치는 영향에 대한 상관 분석 (On the Linkage Between Irrigation Facilities and Rice Production Under Drought Events)

  • 우승범;남원호;전민기;윤동현;김태곤;성재훈;김한중
    • 한국농공학회논문집
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    • 제63권5호
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    • pp.95-105
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    • 2021
  • Drought is a disaster that causes prolonged and wide scale damage. Recently, the severity and frequency of drought occurrences, and drought damage have been increased significantly due to climate change. As a result, a quantitative study of drought factors is needed to better understand and prevent future droughts. In the case of agricultural drought, several existing studies examine the economic damage caused by droughts and their causes, but these studies are not well suited to estimating crop-oriented agricultural drought damage and the factors that absolutely affect agricultural drought. This study determines which factors most affect agricultural drought. It examines meteorological factors and those related to agricultural water supplied by irrigation facilities. Rice paddy production per unit area is lower than the average from the last two years where agricultural drought occurred. We compare the relative frequency of agricultural drought impacts with irrigation facilities, effective reservoir storage, the number of water supply facilities, and the meteorological drought index such as Standardized Precipitation Index (SPI). To identify factors that affect agricultural drought, we correlate rice paddy production anomalies with irrigation water supply for the past two years. There was a high positive correlation between rice paddy production and irrigation water usage, and there was a low or moderate negative correlation between rice paddy production anomalies compared to the average of the past two years and SPI. As a result, agricultural water supply by irrigation facilities was judged to be more influential than meteorological factors in rice paddy production. This study is expected to help local governments establish policies related to agricultural drought response.

Evaluating the impacts of extreme agricultural droughts under climate change in Hung-up watershed, South Korea

  • Sadiqi, Sayed Shajahan;Hong, Eun-Mi;Nam, Wan-Ho
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2021년도 학술발표회
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    • pp.143-143
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    • 2021
  • Climate change indicators, mainly frequent drought which has happened since the drought of 1994, 1995, and 2012 causing the devastating effect to the agricultural sector, and could be more disruptive given the context of climate change indicators by increasing the temperature and more variable and extreme precipitation. Changes in frequency, duration, and severity of droughts will have enormous impacts on agriculture production and water management. Since both the possibility of drought manifestation and substantial yield losses, we are propositioning an integrated method for evaluating past and future agriculture drought hazards that depend on models' simulations in the Hung-up watershed. to discuss the question of how climate change might influence the impact of extreme agriculture drought by assessing the potential changes in temporal trends of agriculture drought. we will calculate the temporal trends of future drought through drought indices Standardized Precipitation Evapotranspiration Index, Standardized Precipitation Index, and Palmer drought severity index by using observed data of (1991-2020) from Wonju meteorological station and projected climate change scenarios (2021-2100) of the Representative Concentration Pathways models (RCPs). expected results confirmed the frequency of extreme agricultural drought in the future projected to increase under all studied RCPs. at present 100 years drought is anticipated to happen since the result showing under RCP2.6 will occur every 24 years, RCP4.5 every 17 years, and RCPs8.5 every 7 years, and it would be double in the largest warming scenarios. On another side, the result shows unsupportable water management, could cause devastating consequences in both food production and water supply in extreme events. Because significant increases in the drought magnitude and severity like to be initiate at different time scales for each drought indicator. Based on the expected result that the evaluating the impacts of extreme agricultural droughts and recession could be used for the development of proactive drought risk management, policies for future water balance, prioritize sustainable strengthening and mitigation strategies.

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증발산 기반 ESI와 EDDI를 활용한 2022년 남부지역의 농업 가뭄 분석 (Comparative Analysis of the 2022 Southern Agricultural Drought Using Evapotranspiration-Based ESI and EDDI)

  • 박광수;남원호;이희진;서찬양;하태현;조영준
    • 한국농공학회논문집
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    • 제66권3호
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    • pp.25-37
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    • 2024
  • Global warming-induced drought inflicts significant socio-economic and environmental damage. In Korea, the persistent drought in the southern region since 2022 has severely affected water supplies, agriculture, forests, and ecosystems due to uneven precipitation distribution. To effectively prepare for and mitigate such impacts, it is imperative to develop proactive measures supported by early monitoring systems. In this study, we analyzed the spatiotemporal changes of multiple evapotranspiration-based drought indices, focusing on the flash drought event in the southern region in 2022. The indices included the Evaporative Demand Drought Index (EDDI), Standardized Precipitation Evapotranspiration Index (SPEI) considering precipitation and temperature, and the Evaporative Stress Index (ESI) based on satellite images. The Standardized Precipitation Index (SPI) and SPEI indices utilized temperature and precipitation data from meteorological observation stations, while the ESI index was based on satellite image data provided by the MODIS sensor on the Terra satellite. Additionally, we utilized the Evaporative Demand Drought Index (EDDI) provided by the North Oceanic and Atmospheric Administration (NOAA) as a supplementary index to ESI, enabling us to perform more effective drought monitoring. We compared the degree and extent of drought in the southern region through four drought indices, and analyzed the causes and effects of drought from various perspectives. Findings indicate that the ESI is more sensitive in detecting the timing and scope of drought, aligning closely with observed drought trends.

L-모멘트법에 의한 가뭄우량의 지역빈도분석 (Regional Frequency Analysis of Drought Rainfall using L-Moments)

  • 이순혁;윤성수;맹승진;류경식;주호길
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.451-454
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    • 2003
  • This study was mainly conducted to derive the design drought rainfall by the consecutive duration using probability weighted moments with rainfall in the regional drought frequency analysis. Selecting the drought rainfall series by the consecutive durations of drought observed for the long period all over the regions in Korea, optimal regionalization of the drought rainfall was classified by the climatologically and geographically homogeneous regions. Using the L-moment ratio and Kolmogorov- Smimov test, resonable frequency distribution for the drought rainfall was selected by the regions and consecutive periods of drought. Design drought rainfalls by the regions and consecutive durations were derived and compared by at-site and regional drought frequency analysis using the method of L-moments.

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SPRING DROUGHT MONITORING USING NDVI-BASED VCI AND SVI

  • Park, Jung-Sool;Kim, Kyung-Tak
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2007년도 Proceedings of ISRS 2007
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    • pp.552-555
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    • 2007
  • In this study, the MODIS NDVI for the period of $2000{\sim}2007$ was collected and processed to obtain VCI and SVI which are the quantitative indexes of drought. The VCI and SVI based on NDVI can be used for understanding seasonal pattern of vegetation, drought identification and quantitative analysis of drought. VCI and SVI compared with monthly precipitation ratio to average, Standardized Precipitation Index(SPI), and etc., which are used to identify spring drought, to analyze drought region, similarity and difference in drought severity. In addition, frequency of Spring droughts were calculated for the period of $2000{\sim}2007$, and the usability of the MODIS images as a tool for establishing countermeasures against drought was presented by analyzing drought frequently areas.

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가뭄대책 행정지원을 위한 지역논가뭄평가모형 ADEM의 개발 (Development of An Agricultural Drought Evaluation Model for Administrative Decision Support)

  • 장민원;정하우;박기욱
    • 농촌계획
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    • 제9권2호
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    • pp.29-37
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    • 2003
  • The objectives of this study are to develop an agricultural drought evaluation model based on administrative boundaries and to assist the effective drought-related decision-making of local governments. The model which was named ADEM(Administrative Drought Evaluation Model for Paddies) is designed to simulate daily water balance between available water quantities from various agricultural water facilities such as reservoirs, wells, pump stations, etc. and water requirements in paddies. And in order to numerically describe the agricultural drought severity, two indices were defined; One is ADFP(Agricultural Drought Frequency for Paddies) which is calculated with a frequency analysis of monthly water deficit, and the other is ADIP(Agricultural Drought Index for Paddies) with a scale of $-4.2{\sim}+4.2$. The developed model was applied to Yeoju district and showed good correspondence with the historical records of drought.

Assessment of Water Quality Vulnerability to Extreme Drought in the Nakdong River Basin

  • Kim, Jong-Suk;Park, Seo-Yeon;Sur, Chanyang;Lee, Joo-Heon
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2018년도 학술발표회
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    • pp.50-50
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    • 2018
  • As the frequency of drought due to climate change is increasing and the severity of drought becomes severe, it is urgent to prepare measures against extreme drought. Despite the significant impacts of drought on the coupled human-environment system, we have not fully understood the consequences of extreme droughts affecting all parts of the environment and our communities, and there is no system to assess environmental droughts quantitatively. Even if a drought disaster occurs on the same scale, the severity of the drought depends on the vulnerability of the region. Therefore, this study proposes environmental drought assessment based on water quality vulnerability to extreme drought for the resilient proactive response.

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