• 제목/요약/키워드: Drought Magnitude

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표준강수지수와 강수 부족량을 이용한 이변량 가뭄빈도해석: 한강유역을 중심으로 (Drought assessment by bivariate frequency analysis using standardized precipitation index and precipitation deficit: focused on Han river basin)

  • 권민성;성장현;김태웅;안재현
    • 한국수자원학회논문집
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    • 제51권10호
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    • pp.875-886
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    • 2018
  • 본 연구에서는 표준강수지수를 이용하여 가뭄사상을 정의하고, 가뭄심도와 부족 강수량을 대상으로 이변량 가뭄빈도해석을 수행하였다. 부족강수량은 표준강수지수의 가뭄기준인 -1에 해당하는 강수량을 기준으로 산정하였다. 지금까지 연구에서 가뭄지수의 심도와 지속기간 이용한 빈도해석을 통한 가뭄의 평가가 주를 이루었다. 하지만 이 두 변량은 선형적인 관계가 매우 높아 각 변량에 대한 단변량 빈도해석과 비교하여 정보의 확장성은 크지 않다. 2015년 가뭄의 경우, 서울, 양평, 충주지점의 '가뭄심도-부족 강수량'량의 재현기간은 모두 300년 이상의 극심한 가뭄을 나타내고 있지만, '가뭄심도-지속기간'에서는 재현기간을 약 10년, 50년, 50년으로 평가하여 큰 차이를 나타냈다. 우기를 포함한 가뭄은 강수량 부족이 심각할지라도 가뭄심도는 가뭄을 상대적으로 낮게 평가할 수 있어 실제 가뭄의 심각성을 나타내는데 한계가 있었다. '가뭄심도-부족 강수량' 빈도해석 결과는 강수량의 절대적인 부족량 정보를 함께 포함하고 있어, 가뭄에 대응하기 위한 지표로 활용성이 높을 것으로 판단된다.

춘천지역의 기상학적 가뭄 평가 (Meteorological Drought Evaluation in Chuncheon Region)

  • 이주헌;박서연;이정우;정일문
    • 한국환경과학회지
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    • 제29권5호
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    • pp.541-549
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    • 2020
  • In this study, standard precipitation index- based analysis associated with run theory was performed using 53 years' (1967-2019) precipitation data to investigate the meteorological drought in Chuncheon. The duration of the meteorological drought in Chuncheon was 8.06 months, magnitude of the drought was -8.21, and average drought depth was -1.08. The drought in May 2014 lasted 21 months until January 2016; the drought scale and average depth was -34.06 and -1.62, respectively. This was the most severe drought in Chuncheon. As a result of drought frequency analysis, the drought scale of May to December in 2014 was estimated to be -16.16, and the return period was estimated to be 300 years. These results are expected to further increase the magnitude and frequency of weather droughts caused by climate change. Therefore, it is critical to prepare appropriate structural measures.

다년간 계속되는 갈수의 크기 및 심도에 관한 빈도분석 방안 (An Approach for Frequency Analysis of Multiyear Drought Magnitude and Severity)

  • 이길성
    • 대한토목학회논문집
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    • 제7권1호
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    • pp.111-120
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    • 1987
  • 부족량의 지속기간에 따른 성질을 관측하여, 다년간 계속되는 가뭄의 크기와 심도에 관한 빈도분석 방안을 개발하였다. 평균 부족량의 변화를 식별하기 위하여, 월 부족량의 통계치에 의한 표준화와 자료의 통합과정이 시행되었다. 가뭄의 크기와 심도에 관한 매개변수를 추정하기 위하여, Gamma 분포함수의 재생산성이 부족량에 대하여 적용되었다. 이들 분포와 지속기간 분포와의 복합화 맞 연구 결과가 실시간 예측에 관하여 의미하는 바를 논의하였다.

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우리나라 과거 가뭄사상의 정량적 특성 분석 -5대강 유역의 가뭄빈도분석을 중심으로- (Quantitative Characterization of Historical Drought Events in Korea - Focusing on Drought Frequency Analysis in the Five Major Basins -)

  • 이주헌;장호원;김종석;김태웅
    • 한국수자원학회논문집
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    • 제48권12호
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    • pp.1011-1021
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    • 2015
  • 본 연구에서는 표준강수지수(SPI)를 이용하여 우리나라의 과거 가뭄사상을 규모적 관점에서 정량적 평가를 실시하였다. 이를 위하여, 5대강 권역에 대한 가뭄사상의 지속기간, 규모, 평균심도를 연속이론을 바탕으로 산정하였다. 또한 과거 가뭄사상의 재현기간을 추정하고 가뭄 평균심도-지속기간-빈도 곡선을 작성하기 위하여 가뭄빈도분석을 실시하였다. 분석결과, 우리나라에 발생했던 심한 가뭄의 재현기간은 대부분 30~50년으로 분석되었으며, 가뭄규모로 평가할 때 가장 가뭄이 심했던 해는 1988년과 1994년으로 나타났다. 특히, 1994년과 1995년에서는 2년 연속 가뭄이 발생하여 가장 극심했던 장기가뭄으로 분석되었다. 또한 2014년의 가뭄은 한강 권역을 중심으로 발생하였으며 가뭄의 규모와 평균심도 면에서 볼 때 우리나라 역사상 가장 극심했던 가뭄으로 평가되었다.

지리정보시스템과 토양수분모형을 이용한 농업가뭄분석 (Agricultural Drought Analysis using Soil Water Balance Model and Geographic Information System)

  • 배승종
    • 한국농공학회지
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    • 제41권6호
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    • pp.33-43
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    • 1999
  • Drought is a serious diaster in agriculutre, especially to upland crops. Hence, the Agricultural Drought Analysis Model (ADAM) that is integratable with GIS was applied to analyae agriculture drought in upland. ADAM is composed of two sub-models , one is a Soil Water Balance Model (SWBM) and the other is a Drougth Analysis Model (DAM) that is based on the Runs theory. The ADAM needs weather data, rainfall data and soil physical characteristics data as input and calculates daily soil moisture contents. GIS was integrated to the ADAM for the calculation of regional soil moisture using digitized landuse map, detaile dsoil map, thiessen network and district boundary . For the agriculutral drought analysis, the ADAM adapt the Runs theory for analyzing drought duration, severity and magnitude . Log-Pearson Type-III probability distribution function and Kolmogorov-Smirnov test were used to test the fitness of good of the model. The integration of ADAM with GIS was successfully implemented and would be operated effectively for the regional drought analysis.

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토양수분지수를 이용한 유역단위 가뭄 평가 (Watershed Scale Drought Assessment using Soil Moisture Index)

  • 김옥경;최진용;장민원;유승환;남원호;이주헌;노재경
    • 한국농공학회논문집
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    • 제48권6호
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    • pp.3-13
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    • 2006
  • Although the drought impacts are comparably not catastrophic, the results from the drought are fatal in various social and economical aspects. Different from other natural hazards including floods, drought advances slowly and spreads widely, so that the preparedness is quite important and effective to mitigate the impacts from drought. Soil moisture depletion directly resulted from rainfall shortage is highly related with drought, especially for crops and vegetations, therefore a drought can be evaluated using soil moisture conditions. In this study, SMI (Soil Moisture Index) was developed to measure a drought condition using soil moisture model and frequency analysis for return periods. Runs theory was applied to quantify the soil moisture depletions for the drought condition in terms of severity, magnitude and duration. In 1994, 1995, 2000, and 2001, Korea had experienced several severe droughts, so the SMI developed was applied to evaluate applicability in the mid-range hydrologic unit watershed scale. From the results, SMI demonstrated the drought conditions with a quite sensitive manner and can be used as an indicator to measure a drought condition.

북한지역에 대한 기상학적 가뭄지수의 적용 (Application of Meteorological Drought Indices for North Korea)

  • 남원호;유승환;장민원;최진용
    • 한국농공학회논문집
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    • 제50권3호
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    • pp.3-15
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    • 2008
  • North Korea is one of the vulnerable countries facing the threat of a drought, so that it is unavoidable to experience fatal damage when drought is occurred, and it is necessary to improve the drought response capability of water resources systems. However, it is still difficult to find research efforts for drought characteristics and drought management in North Korea. This study is to quantify drought duration and magnitude and to analyze drought characteristics in North Korea. In order to quantitatively identify historical drought conditions and to evaluate their variability, drought indices are commonly used. In this study, drought indices including dry-day index, deciles of normal precipitation, Phillips drought index, standardized precipitation index and Palmer drought severity index are calculated and compared monthly using the weather data for the twenty one meteorological stations in North Korea. The indices compared with the drought damage records that have reported from 1990 to present to understand how the indices can explain the drought. A comparative study was also conducted to evaluate the relative severity of the significant droughts occurred during 2000 and 2001 which were reported as the worst drought in North Korea. Drought indices calculated from this study demonstrated that those can be the effective tools in quantitatively evaluating drought severity and measures of drought. Thus it is recommended the distributed trend of drought be considered when the plan or measures for drought in North Korea are established.

고기후 자료를 포함한 장기연속 강수자료에 의한 서울지역의 극한가뭄 시나리오 개발 (Developing Extreme Drought Scenarios for Seoul based on the Long Term Precipitation Including Paleoclimatic Data)

  • 장호원;조형원;김태웅;이주헌
    • 대한토목학회논문집
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    • 제37권4호
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    • pp.659-668
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    • 2017
  • 본 연구에서는 서울지역의 극한가뭄(Extreme Drought)에 대한 통계학적 특성을 분석하기 위해서 측우기 강수량 자료(1777~1907년)와 기상청에서 관측된 강수량(1908~2015년) 자료 및 기후변화시나리오를 반영한 강수량(2011~2099년) 자료를 활용한 300년 이상의 장기 강수량 자료를 이용하여 서울지역의 가뭄특성을 분석하였다. 경향성 분석결과, 장기간에 걸쳐 연평균 강우량이 증가하는 것으로 분석되었으며, 기상학적 가뭄지수인 SPI에 대한 Wavelet transform 분석결과 측우기와 기상청자료에서 공통적으로 64~80개월(5~6년), 기후변화자료에서는 96~128개월(8~10년) 주기로 가뭄발생 주기가 길어지는 것으로 나타났다. Dry spell 분석결과에서는 고대기간에서 가뭄발생 빈도가 높은 반면, 근 현대, 미래기간에서는 발생빈도가 점차 감소하는 것으로 나타났다. 또한, 가뭄규모 분석을 통해서 서울지역의 가장 극심한 가뭄사상으로 1901년이 극심한 가뭄연도로 분석되었고, 1899~1907년이 서울지역에서 발생한 가뭄사상 중 9년 연속의 가장 극심한 연속가뭄으로 나타났다.

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

  • 김광섭;노반콴
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2012년도 학술발표회
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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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계층화분석 및 엔트로피 가중치 산정 방법에 따른 농업가뭄재해 취약성 평가 (Evaluation of Agricultural Drought Disaster Vulnerability Using Analytic Hierarchy Process (AHP) and Entropy Weighting Method)

  • 문영식;남원호;양미혜;신지현;전민기;김태곤;이승용;이광야
    • 한국농공학회논문집
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    • 제63권3호
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    • pp.13-26
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    • 2021
  • Recent drought events in the South Korea and the magnitude of drought losses indicate the continuing vulnerability of the agricultural drought. Various studies have been performed on drought hazard assessment at the regional scales, but until recently, drought management has been response oriented with little attention to mitigation and preparedness. A vulnerability assessment is introduced in order to preemptively respond to agricultural drought and to predict the occurrence of drought. This paper presents a method for spatial, Geographic Information Systems-based assessment of agricultural drought vulnerability in South Korea. It was hypothesized that the key 14 items that define agricultural drought vulnerability were meteorological, agricultural reservoir, social, and adaptability factors. Also, this study is to analyze agricultural drought vulnerability by comparing vulnerability assessment according to weighting method. The weight of the evaluation elements is expressed through the Analytic Hierarchy Process (AHP), which includes subjective elements such as surveys, and the Entropy method using attribute information of the evaluation items. The agricultural drought vulnerability map was created through development of a numerical weighting scheme to evaluate the drought potential of the classes within each factor. This vulnerability assessment is calculated the vulnerability index based on the weight, and analyze the vulnerable map from 2015 to 2019. The identification of agricultural drought vulnerability is an essential step in addressing the issue of drought vulnerability in the South Korea and can lead to mitigation-oriented drought management and supports government policymaking.