• 제목/요약/키워드: drought year

검색결과 259건 처리시간 0.032초

Use of various drought indices to analysis drought characteristics under climate change in the Doam watershed

  • 사예드 사자한 사디키;홍은미;남원호
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.178-178
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    • 2023
  • Drought and flooding have historically coexisted in Korea, occurring at different times and with varying cycles and trends. The drought indicators measured were (PDSI), (SPI), and (SPEI) in order to statistically analyze the annual or periodic drought occurrence and objectively evaluate statistical characteristics such as the periodicity, tendency, and frequency of occurrence of droughts in the Doam watershed. To compute potential evapotranspiration (PET), both Thornthwaite (Thor) and Penman-Monteith (PM) parameterizations were considered, and the differences between the two PET estimators were analyzed. Hence, SPIs 3 and SPIs 6 revealed a tendency to worsen drought in the spring and winter and a tendency to alleviate drought in the summer in the study area. The seasonal variability trend did not occur in the SPIs 12 and PDSI, as it did in the drought index over a short period. As a result of the drought trend study, the drought from winter to spring gets more severe, in addition to the duration of the drought, although the periodicity of the recurrence of the drought ranged from 3 years to 6 years at the longest, indicating that SPIs 3 showed a brief time of around 1 year. SPIs 6 and SPIs 12 had a term of 4 to 6 years, and PDSI had a period of roughly 6 years. Based on the indicators of the PDSI, SPI, and SPEI, the drought severity increases under climate change conditions with the decrease in precipitation and increased water demand as a consequence of the temperature increase. Therefore, our findings show that national and practical measures are needed for both winter and spring droughts, which happen every year, as well as large-scale and extreme droughts, which happen every six years.

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빈도 분석법을 이용한 논벼의 한발 기준 10년 빈도 작물 증발산량 산정 (Estimating Paddy Rice Evapotranspiration of 10-Year Return Period Drought Using Frequency Analysis)

  • 유승환;최진용;장민원
    • 한국농공학회논문집
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    • 제49권3호
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    • pp.11-20
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    • 2007
  • Estimation of crop consumptive use is a key term of agricultural water resource systems design and operation. The 10-year return period drought has special aspects as a reference period in design process of irrigation systems in terms of agricultural water demand analysis so that crop evapotranspiration (ETc) about the return period also has to be analyzed to assist understanding of crop water requirement of paddy rice. In this study, The ETc of 10-year return period drought was computed using frequency analysis by 54 meteorological stations. To find an optimal probability distribution, 8 types of probability distribution function were tested by three the goodness of fit tests including ${\chi}^2$(Chi-Square), K-S (Kolmogorov-Smirnov) and PPCC (Probability Plot Correlation Coefficient). Optimal probability distribution function was selected the 2-parameter Log-Normal (LN2) distribution function among 8 distribution functions. Using the two selected distribution functions, the ETc of 10-year return period drought was estimated for 54 meteorological stations and compared with prior study results suggested by other researchers.

신경망을 이용한 우리나라의 시공간적 가뭄의 해석 (Spatial-Temporal Drought Analysis of South Korea Based On Neural Networks)

  • 신현석;박무종
    • 한국수자원학회논문집
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    • 제32권1호
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    • pp.15-29
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    • 1999
  • 본 연구에서는 공간적으로 분포되어 있는 연강우량 자료를 이용한 지역 기상학적인 가뭄을 정의하고 해석하는 모형을 제시하였다. 비선형. 비매개변수법에 기초한 공간 해석 신경망(Spatial Analysis Neural Network; SANN)모형을 이용하여, 각 년에 대하여 공간의 임의 점에서의 극심, 심 경심, 및 비 가뭄 확률을 전 대상 지역에 대하여 산출을 통하여 가뭄확률도를 작성하며, Bayesian 가뭄 심도 지수(BDSI)를 통하여 전 대상 지역을 가장 적적하게 극심, 심, 경심, 비 가뭄 지역으로 분류하는 방법을 제시하였다. 또한, 각 년의 대표적인 가뭄의 형태를 제시하여 줄 수 있는 지역 가뭄 확률과 지역 가뭄 확률 지수를 소개하였다. 이 모든 시공간적 가뭄 해석의 방법은 실제로 우리나라(남한) 전역에 대하여 실시하여, 과거 1967년부터 1996년 까지의 공간적이고 시간적인 가뭄의 발생 현황과 그 특징을 조사 하였다. 본 연구는 우리나라 장기 수자원 개발 및 유역 관리를 위한 공간적이고도 시간적인 가뭄 정보를 제공하였다는 데 그 의의가 있을 것이다.

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통계학적 가뭄빈도분석 기법을 통한 2015년 가뭄사상에 대한 분석 (Analyzing the drought event in 2015 through statistical drought frequency analysis)

  • 이태삼;손찬영
    • 한국수자원학회논문집
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    • 제49권3호
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    • pp.177-186
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    • 2016
  • 가뭄은 시공간적으로 점차적인 수분부족이 나타나는 자연재해로 비교적 간단하게 설명될 수 있다. 그러나 가뭄이 가지는 특징을 보다 명확하게 정의하기는 매우 어려우며 또한 가뭄에 대한 대비 및 정부의 대응이 미흡한 실정이다. 따라서, 본 연구에서는 가뭄재해의 대응책 마련 및 수공구조물 설계 운영기준에 활용하고자 이론적인 가뭄 재현기간 산정기법과 더불어 3가지 시계열 모델(autoregressive (AR), Gamma AR, Copula AR)을 통해 장기간의 자료를 모의하여 가뭄사상에 대한 빈도를 산정하고자 하였다. 분석결과, 시계열 모델을 활용하여 모의된 가뭄의 빈도 결과가 이론적인 기법을 통해 산정된 것보다 합리적인 결과가 도출되었으며, 모든 시계열 모델에서 유사한 결과가 도출되었다. 또한 남한지역에 발생하고 있는 현재의 가뭄사상 분석에 대해 총 4개의 대권역으로 분류하여 분석을 수행하였으며 분석결과 국내의 남부지방은 상대적으로 약한 가뭄이 발생하는 반면에 북부 및 중부지방은 현재 3년의 가뭄 지속기간을 가지는 가뭄이 발생하고 있으며 약 40년 빈도의 가뭄으로 분석되었다.

경북지방(慶北地方)의 강수(降水) 및 무강수(無降水) 현상(現象) 조사(調査) 분석(分析) (A Studay on the Rainfall and Drought Days in Kyupgpook Area)

  • 서승덕;전국진
    • Current Research on Agriculture and Life Sciences
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    • 제5권
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    • pp.143-157
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    • 1987
  • In order to determine the design precipitation, the most probable daily precipitation and annual precipitation at every spot are calculated and iso - precipitation line are drawn. Probability of precipitation and drought phenomena of each gage station are analyzied by the method of frequency analysis from the statistical conceptions. The results summarized in this study are as the follows. 1. Annual mean precipitation in kyungpook area are 1044 mm, about 115 mm less than annual mean precipitation of Korea amounts to l1S9mm, and found to regionally unequal. 2. Monthly mean rainfall of July is 242.2mm, 23.2%, August 174.2mm, 16.7%, June 115mm, 11% and September 114.2mm, 10.9% and Rainfall depth of July-August are more than 40% of annual precipition. This shows notable summer rainy weather by typoon and low pressure storm and seasonal unbalance of water supply. 3. The relation among the maximum precipi.tation per day, per two continuous days and per three contnous days are caculated and the latter is found 31.0% increased rate of the first and the last 48.2% increased rate of first. 4. Probability precipitation in Kyungpook area are shown as 9.0%(5 year), 13.3%(10 year), 17.7%(20 year), 23.1%(50 year), 27.0%(100 year) and 31.1%(200 year) increased rate of each recurrence year compared with observed average annual precipitation. 5. From annual precipitation and maximum daily rainfall data probability of precipitation and precipitation isohyetal line are derived which shown as Table 11 and Fig. 8. 6. Drought days are divided 6 class and analysed results are shown on table 12. Average occurrence time of 10-14 continuous drought days are 2.3 time per year, 15-19 days are 0.9 time per year, 20-24 days are one per six years, 30-34 days are once per nine years and over than 35days are once per 25 years.

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가뭄심도 분류기준의 개선방안 제시 (Development on Classification Standard of Drought Severity)

  • 권진주;안재현;김태웅
    • 한국수자원학회논문집
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    • 제46권2호
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    • pp.195-204
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    • 2013
  • 가뭄은 불가피성과 반복성을 가진 자연 현상이므로 가뭄 발생 전 사전대비계획과 가뭄발생시 가뭄관리체계 구축을 통해 그 피해를 최소화해야 한다. 본 연구에서는 대상지역의 가뭄심도를 평가하여 가뭄상황에 대처하고자 우리나라에 적합한 가뭄 분류기준을 제시하였다. 관측년수 30년 이상의 강우자료를 확보한 61개 지점에 대해 1973년부터 37년 기간의 월강우량 자료를 사용하였고, 현재 국가에서 사용하고 있는 가뭄상황단계를 그대로 적용하여 가뭄 구간을 총 4등급으로 구분하였다. 기존의 주요 가뭄발생현황을 참고하여 우리나라에 맞는 가뭄심도의 분류기준을 가뭄 발생의 누가확률 98~100%는 예외적인 가뭄, 94-98%는 극심 가뭄, 90~94%는 심한 가뭄, 86~90%는 보통 가뭄으로 구분하였다. 각 지점의 가뭄지수(SPI, PDSI)를 내림차순으로 작성하여 가뭄심도 분류기준에 맞는 가뭄지수의 정량적 값을 산정하였다. SPI와 PDSI의 가뭄심도 분류 결과와 실제 가뭄을 비교하기 위해 년 단위 비교와 월 단위 비교를 분석한 결과, 년 단위 비교와 SPI의 월 단위 비교는 각 지역의 가뭄지수 평가가 대부분 일치하게 나타났으나 같은 기간의 PDSI의 월 단위 비교는 일치하지 않는 기간도 나타났다. 이는 이들 지수의 상호보완에 대한 추후 연구의 필요성을 보여주는 것으로 판단되었다.

가뭄지수의 적용성 분석을 통한 가뭄의 정량적 표현기법 개발 (Development of Quantitative Drought Representation Methods by Drought Index Application)

  • 정상만;이주헌;김이형;김하용
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.1166-1171
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    • 2006
  • Drought is defined by differently for the several scientific and technical fields such as hydrological drought, agricultural drought, meteorological drought, climatological drought, atmospheric drought. A lot of drought indices have been developed to quantify drought severity levels. However these drought indices might be expressed differently as the drought conditions for specific period because the drought severity level is using different types of data on each condition. It is necessary for development of quantative drought representation methods by drought index application. In this research, the reaction to the historical droughts is analyzed after estimation of PDSI, SPI and MSWSI(Modified Surface Water Supply Index) in south korean territory. Lastly the drought representation methods were examiner combining the drought indices by drought indices. The arithmetic mean drought indices that include PDSI, SPI, in yearly basis from 1971 to 2001 and MSWSI in yearly basis from 1974 to 2001 were estimated through the whole nation. The applicability of drought indices are examined based on the observed drought data for national and regional droughts. The result shows that PDSI, SPI(3), SPI(6), and MSWSI have proven to be sensitive enough to the historical drought. The correlation analysis of each drought index was conducted whether they could show the long and short term drought equally. The analysis of how appropriately represent for the historical drought was used for determining for the combined drought index. Consequently, PDSI, SPI(3), SPI(6), and MSWSI have been appeared as suitable indices for the development of quantitative drought representation methods. For the decision of weight on combining PDSI, SPI(3), SPI(6), and MSWSI, drought map was made for eighteen alternative to decide weight. The results showed that PDSI(20%), SPI(3)(60%), SPI(6)(10%), and MSWSI(10%) have been the most well matched weights. Using selected weights of each drought indices and by reconstructing the national mean drought severity on yearly basis, the fact that the year of historical drought is in accordance with the verified one for drought representation. In short, the acquired technique using combined drought index can be used for useful and believable quantitative method of drought analysis.

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Drought over Seoul and Its Association with Solar Cycles

  • Park, Jong-Hyeok;Chang, Heon-Young
    • Journal of Astronomy and Space Sciences
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    • 제30권4호
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    • pp.241-246
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    • 2013
  • We have investigated drought periodicities occurred in Seoul to find out any indication of relationship between drought in Korea and solar activities. It is motivated, in view of solar-terrestrial connection, to search for an example of extreme weather condition controlled by solar activity. The periodicity of drought in Seoul has been re-examined using the wavelet transform technique as the consensus is not achieved yet. The reason we have chosen Seoul is because daily precipitation was recorded for longer than 200 years, which meets our requirement that analyses of drought frequency demand long-term historical data to ensure reliable estimates. We have examined three types of time series of the Effective Drought Index (EDI). We have directly analyzed EDI time series in the first place. And we have constructed and analyzed time series of histogram in which the number of days whose EDI is less than -1.5 for a given month of the year is given as a function of time, and one in which the number of occasions where EDI values of three consecutive days are all less than -1.5 is given as a function of time. All the time series data sets we analyzed are periodic. Apart from the annual cycle due to seasonal variations, periodicities shorter than the 11 year sunspot cycle, ~ 3, ~ 4, ~ 6 years, have been confirmed. Periodicities to which theses short periodicities (shorter than Hale period) may be corresponding are not yet known. Longer periodicities possibly related to Gleissberg cycles, ~ 55, ~ 120 years, can be also seen. However, periodicity comparable to the 11 year solar cycle seems absent in both EDI and the constructed data sets.

기상 및 수문학적 가뭄지수와 위성 식생지수를 활용한 2012년 봄 가뭄 분석 (Analysis of 2012 Spring Drought Using Meteorological and Hydrological Drought Indices and Satellite-based Vegetation Indices)

  • 안소라;이준우;김성준
    • 한국관개배수논문집
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    • 제21권1호
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    • pp.78-88
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    • 2014
  • This study is to analyze the 2012 spring drought of Korea using drought index and satellite image. The severe spring drought recorded in May of 2012 showed 36.4% of normal rainfall(99.5mm). The areas of west part of Gyeonggi-do and Chungcheong-do were particularly serious. The drought indices both the SPI(Standardized Precipitation Index) and WADI(WAter supply Drought Index) represented the drought areas from the end of May and to the severe drought at the end of June. The drought by SPI completely ended at the middle of July, but the drought by WADI continued severe drought in the agricultural reservoir watersheds of whole country even to the end of the July. On the other hand, the results by spatial NDVI(Normalized Difference Vegetation Index) and EVI(Enhanced Vegetation Index) data from Terra MODIS, both indices showed relatively low values around the areas of Sinuiju, Pyongyang, and west coast of North Korea and Gyeonggi-do and Chungcheong-do of South Korea indicating drought condition. Especially, the values of NDVI and EVI at Chungcheong-do were critically low in June compared to the normal year value.

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Global Assessment of Climate Change-Associated Drought Risk

  • 김혜진;김연주
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.397-397
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    • 2019
  • With the consequences of climate change becoming more evident, research on climate-associated risks has become a basis for climate adaptation and mitigation. Amongst the different sectors and natural resources considered in assessing such risks, drought is one impact to our environment that experiences stress from climate change but is often overlooked and has the potential to bring severe consequences when drought occurs. For example, when temperatures are higher, water demand increases and water supply decreases; when precipitation patterns fluctuate immensely, floods and droughts occur more frequently at greater magnitudes, putting stress on ecosystems. Hence, it is important for us to evaluate drought risk to observe how different climate change and socioeconomic scenarios can affect this vital life resource. In this study, we review the context of drought risk on the basis of climate change impacts and socioeconomic indicators. As underlined in the IPCC AR5 report, the risks are identified by understanding the vulnerability, exposure, and hazards of drought. This study analyzed drought risk on a global scale with different RCP scenarios projected until the year 2099 with a focus on the variables population, precipitation, water resources, and temperature.

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