• 제목/요약/키워드: Precipitation trend

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봄철 강수량 및 강수효율의 지역적 특성별 변화분석 (Analyzing the Variability of Spring Precipitation and Rainfall Effectiveness According to the Regional Characteristics)

  • 김광섭;김종필;이기춘
    • 한국농공학회논문집
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    • 제53권3호
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    • pp.1-11
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    • 2011
  • The temporal variability of spring (March, April, May) monthly precipitation, precipitation effectiveness, monthly maximum precipitation, monthly precipitation of different durations, and the precipitation days over several threshold (i.e. 0, 10, 20, 30, 40, and 50 mm/day) of 59 weather stations between 1973 and 2009 were analyzed. Also to analyze the regional characteristics of temporal variability, 59 weather stations were classified by elevations, latitudes, longitudes, river basins, inland or shore (east sea, south sea, west sea) area and the level of urbanization. Results demonstrated that trends of variables increase in April and decrease in May except precipitation day. Overall trend of precipitation amount and precipitation effectiveness is same but precipitation effectiveness of several sites decrease despite the trend of precipitation amount increases which may be caused by the air temperature increase. Therefore more effective water supply strategy is essential for Spring season. Regional characteristics of Spring precipitation variability can be summarized that increase trend during May become stronger with the increase of latitude and elevation which is similar to that of Summer season. The temporal variability of variables showed different behaviors according to river basins, inland or shore (east sea, south sea, west sea) area and the level of urbanization.

Impact of Trend Estimates on Predictive Performance in Model Evaluation for Spatial Downscaling of Satellite-based Precipitation Data

  • Kim, Yeseul;Park, No-Wook
    • 대한원격탐사학회지
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    • 제33권1호
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    • pp.25-35
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    • 2017
  • Spatial downscaling with fine resolution auxiliary variables has been widely applied to predict precipitation at fine resolution from coarse resolution satellite-based precipitation products. The spatial downscaling framework is usually based on the decomposition of precipitation values into trend and residual components. The fine resolution auxiliary variables contribute to the estimation of the trend components. The main focus of this study is on quantitative analysis of impacts of trend component estimates on predictive performance in spatial downscaling. Two regression models were considered to estimate the trend components: multiple linear regression (MLR) and geographically weighted regression (GWR). After estimating the trend components using the two models,residual components were predicted at fine resolution grids using area-to-point kriging. Finally, the sum of the trend and residual components were considered as downscaling results. From the downscaling experiments with time-series Tropical Rainfall Measuring Mission (TRMM) 3B43 precipitation data, MLR-based downscaling showed the similar or even better predictive performance, compared with GWR-based downscaling with very high explanatory power. Despite very high explanatory power of GWR, the relationships quantified from TRMM precipitation data with errors and the auxiliary variables at coarse resolution may exaggerate the errors in the trend components at fine resolution. As a result, the errors attached to the trend estimates greatly affected the predictive performance. These results indicate that any regression model with high explanatory power does not always improve predictive performance due to intrinsic errors of the input coarse resolution data. Thus, it is suggested that the explanatory power of trend estimation models alone cannot be always used for the selection of an optimal model in spatial downscaling with fine resolution auxiliary variables.

최근 30년간 한반도 일 강수강도의 지역적 특성 (The Regional Characteristics of Daily Precipitation Intensity in Korea for Recent 30 Years)

  • 김은희;김맹기;이우섭
    • 한국지구과학회지
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    • 제26권5호
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    • pp.404-416
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    • 2005
  • 이 연구는 최근 30년 동안 21개 지상관측소 일강수량 자료를 사용하여 한반도의 강수일수 및 강수강도의 지역성 및 계절성을 조사하였다. 일강수량 80 mm를 기준으로 다우와 소우로 나누어 그 특성을 조사하였으며, 강수일수 및 강도의 일차 선형경향도 함께 연구하였다. 호남 지방에서 소우에 의한 강수일수는 모든 계절에서 다른 지역에 비해 많으며, 특히 가을과 겨울철의 기여도가 상대적으로 컸다. 그러나 다우에 의한 강수일수는 대구를 중심으로 한 영남 지역에서 매우 적은 것으로 나타났다. 남해안 지방에서 강수량은 많고 강수일수가 적어 강수강도가 모든 계절에서 가장 크게 나타났으며, 연강수량에 대한 기여도는 다우와 소우 모두 다른 지역에 비해 크게 나타났다. 최근 30년간 대부분 지역에서 연강수량은 증가하는 선형경향을 보였는데, 대부분 다우에 의한 영향으로 나타났다. 한반도의 연 강수일수는 전반적으로 감소하는 선형경향을 보이지만, 다우에 의한 연 강수일수는 증가하는 선형경향을 보였다. 특히 충청과 경기지방에서 강수강도의 선형경향이 유의한 지역이 다수 발견되었는데, 이는 이 지역이 집중호우에 대한 위험도가 적지 않은 지역임을 말해주는 것이다.

Assessment of GCM and Scenario Uncertainties under Future Climate Change Conditions

  • Jang, S.;Hwang, M.;Park, J.;Lim, K.
    • 국제학술발표논문집
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    • The 6th International Conference on Construction Engineering and Project Management
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    • pp.658-659
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    • 2015
  • GCM and scenario uncertainties are first investigated for 5 major watersheds (Han River, Paldang dam, Namhan River, Bukhan River and Imjin River watersheds). As a result of this study, it is found that CCSM3-based annual precipitation increases linearly with respect to the 10-year moving average values while CSIRO-based precipitation does not show much of trend. The results from annual DJF mean precipitation show a similar trend with respect to their 10-year moving average values. Both CCSM3- and CSIRO-based annual JJA mean precipitation do not show much of trend toward 21st century. In general, CCSM3-based precipitation values are slightly higher than CSIRO-based values with respect to their annual and annual JJA mean precipitation values, but CSIRO-based annual DJF mean precipitation values are slightly higher than CCSM3-based values. In case of mean air temperature between CCSM3 and CSIRO during 21st century, all of results show a clear trend in warming with the passage of time for 5 watersheds. However the upward trends from CCSM3-based values slow down toward end of 21stcentury while CSRIO-based values increases almost linearly.

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우리나라 월 및 연강수량의 경년변동 분석 (Analysis of the Secular Trend of the Annual and Monthly Precipitation Amount of South Korea)

  • 김광섭;임태경;박찬희
    • 한국방재학회 논문집
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    • 제9권6호
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    • pp.17-30
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    • 2009
  • 본 연구에서는 강수량, 월 최대강수량, 강수일수, 일강수량 20 mm, 30 mm 및 80 mm 이상인 일수의 장기추세의 통계적 유의성을 비모수 검정법인 Mann-Kendall 검정기법과 62개 지점의 1905년부터 2004년 기간 사이의 자료를 이용하여 분석하였다. 한반도 강수특성은 연강수량과 월 최대강수량의 증가, 강수일수 감소 그리고 20 mm, 30 mm, 80 mm 이상의 일강수를 가진 강수일수 증가로 요약될 수 있다. 또한 자료의 월별 추세분석 결과는 1, 5, 6, 7, 8, 9월 강수량과 월 최대강수량은 증가추세를 보이고 3, 4, 10, 11, 12월에는 감소추세를 보인다. 또한 6, 7, 8, 9월의 일강수량 20 mm와 30 mm 이상인 강수일수는 증가추세를 보였다. 그러나 Mann-Kendall 검정결과 90%와 95% 유의수준에 대하여 유의한 증감추세를 가지는 지점의 비율은 매우 낮았다. 이러한 결과는 각 변수의 선형 증감에 따른 장기 변동보다 자료들이 가지고 있는 분산형태의 불확실성이 매우 우세함을 의미하므로 수자원 계획 등에 반영하여야 할 것이다.

충청지역 극한강우지수의 시공간적 경향과 변동성 분석 (Analysis of Spatial-temporal Variability and Trends of Extreme Precipitation Indices over Chungcheong Province, South Korea)

  • Bashir, Adelodun;Golden, Odey;Seulgi, Lee;Kyung Sook, Choi
    • 한국농공학회논문집
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    • 제64권6호
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    • pp.101-112
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    • 2022
  • Extreme precipitation events have recently become a leading cause of disasters. Thus, investigating the variability and trends of extreme precipitation is crucial to mitigate the increasing impact of such events. Spatial distribution and temporal trends in annual precipitation and four extreme precipitation indices of duration (CWD), frequency (R10 mm), intensity (Rx1day), and percentile-based threshold (R95pTOT) were analyzed using the daily precipitation data of 10 observation stations in Chungcheong province during 1974-2020. The precipitation at all observation stations, except the Boryeong station, showed nonsignificant increasing trends at 95% confidence level (CL) and increasing magnitudes from the west to east regions. The high variability in mean annual precipitation was more pronounced around the northeast and northwest regions. Similarly, there were moderate to high patterns in extreme precipitation indices around the northeast region. However, the precipitation indices of duration and frequency consistently increased from the west to east regions, while those of intensity and percentile-based threshold increased from the south to east regions. Nonsignificant increasing trends dominated in CWD, R10 mm, and Rx1day at all stations, except for R10 mm at Boeun station and Rx1day at Cheongju and Jecheon stations, which showed a significantly increasing trend. The spatial distribution of trend magnitude shows that R10 mm increased from the west to east regions. Furthermore, variations in precipitation were very strongly correlated (99% CL) with R10 mm, Rx1day, and R95pTOT at all stations, except with wR10 mm at Cheongju station, which was strongly correlated with a 95% CL.

CMIP5 MME와 Best 모델의 비교를 통해 살펴본 미래전망: II. 동아시아 단·장기 미래기후전망에 대한 열역학적 및 역학적 분석 (Future Change Using the CMIP5 MME and Best Models: II. The Thermodynamic and Dynamic Analysis on Near and Long-Term Future Climate Change over East Asia)

  • 김병희;문혜진;하경자
    • 대기
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    • 제25권2호
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    • pp.249-260
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    • 2015
  • The changes in thermodynamic and dynamic aspects on near (2025~2049) and long-term (2075~2099) future climate changes between the historical run (1979~2005) and the Representative Concentration Pathway (RCP) 4.5 run with 20 coupled models which employed in the phase five of Coupled Model Inter-comparison Project (CMIP5) over East Asia (EA) and the Korean Peninsula are investigated as an extended study for Moon et al. (2014) study noted that the 20 models' multi-model ensemble (MME) and best five models' multi-model ensemble (B5MME) have a different increasing trend of precipitation during the boreal winter and summer, in spite of a similar increasing trend of surface air temperature, especially over the Korean Peninsula. Comparing the MME and B5MME, the dynamic factor (the convergence of mean moisture by anomalous wind) and the thermodynamic factor (the convergence of anomalous moisture by mean wind) in terms of moisture flux convergence are analyzed. As a result, the dynamic factor causes the lower increasing trend of precipitation in B5MME than the MME during the boreal winter and summer over EA. However, over the Korean Peninsula, the dynamic factor causes the lower increasing trend of precipitation in B5MME than the MME during the boreal winter, whereas the thermodynamic factor causes the higher increasing trend of precipitation in B5MME than the MME during the boreal summer. Therefore, it can be noted that the difference between MME and B5MME on the change in precipitation is affected by dynamic (thermodynamic) factor during the boreal winter (summer) over the Korean Peninsula.

서울지역 강수 산성도의 장기적인 경향분석 (An Analysis of Long-term Trends in Precipitation Acidity of Seoul, Korea)

  • 강공언;임재현;김희강
    • 한국대기환경학회지
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    • 제13권1호
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    • pp.9-18
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    • 1997
  • Precipitation samples were collected by the wet- only event sampling method from Seoul during September 1991 to April 1995. These samples were analyzed for the concentrations of the major ionic components (N $O_3$$^{[-10]}$ , N $O_2$$^{[-10]}$ , S $O_4$$^{2-}$, C $l^{[-10]}$ , $F^{[-10]}$ , N $a^{+}$, $K^{+}$, $Ca^{2+}$, $Mg^{2+}$, and N $H_4$$^{+}$), pH, and electric conductivity. During the study period, a total of 182 samples were collected, but only 163 samples were used for the data analysis via quality assurance of precipitation chemistry data. The volume-weighted pH was found to be 4.7. The major acidifying species from our precipitation studies were identified to be non-seasalt sulfate (84$\pm$9 $\mu$eq/L) and nitrate (24$\pm$2 $\mu$eq/L) except for chloride. Because the Cl/Na ratio in the precipitation was close to the ratio in seawater. If all of the non-seasalt sulfate and nitrate were in the form of sulfuric and nitric acids, the mean pH in the precipitation could have been as low as 3.7 lower than the computed value. Consequently, the difference between two pH values indicate that the acidity of precipitation was neutralized by alkaline species. The equivalent concentration ratio of sulfate to nitrate was 3.5, indicating that sulfuric and nitric acids can comprise 78% and 22% of the precipitation acidity, respectively. Analysis of temporal trend in the measured acidity and ionic components were also performed using the linear regression method. The precipitation acidity generally showed a significantly decreasing trend, which was compatible with the pattern of the ratio (N $H_4$$^{+}$+C $a^{2+}$)/ (nss-S $O_4$$^{2-}$+N $O_3$$^{[-10]}$ ).).

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기후변화에 따른 우리나라 강수효율 및 유출량의 변화특성 분석 (The Impact of Climate Change on the Trends of Precipitation Effectiveness Ratio and Runoff Data in South Korea)

  • 김종필;김광섭
    • 한국수자원학회논문집
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    • 제44권8호
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    • pp.683-694
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    • 2011
  • 기후변화에 따른 지역적 영향인 기온 상승과 강수량 변화로 인한 수자원 변화 특성을 파악하기 위하여 기상청(KMA)으로부터 전국 59개 관측지점에 대해서 1973년부터 2009년까지 강수량 및 기온자료를 이용하여 산정한 강수효율자료와 국가수자원관리종합시스템(WAMIS)으로부터 1966년부터 2007년까지 PRMS 모의 유출량 자료를 수집, 분석하였다. 분석결과, 전반적으로 강수효율의 거동은 강수량의 변화 특성을 따르나 지역적으로 강수량이 증가함에도 불구하고 기온 상승에 따라 강수효율이 감소하는 거동을 보였으며, 이는 유출량의 변화 특성과 유사하였다. 또한 유출량의 평균대비 변화율은 강수량 변화보다 상당히 크게 나타나, 기후변화의 영향에 민감한 것으로 나타났다. 강수량이 증가하는 5월~9월을 제외한 전체 기간에 대하여 강수효율은 강수량보다 더 유의한 감소 경향을 나타내고 있어 해당기간의 가용 수자원량이 줄어들 것으로 판단되며, 이러한 특성은 봄, 가을 및 겨울철 수자원 관리에 반영되어야 할 것이다.

갈수기 경향성 분석을 활용한 상류 유역의 가뭄위험 변동성 분석 (Analysis of Drought Risk in the Upper River Basins based on Trend Analysis Results)

  • 정일원;김동영;박지연
    • 한국농공학회논문집
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    • 제61권1호
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    • pp.21-29
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    • 2019
  • This study analyzed the variability of drought risk based on trend analysis of dry-seasonal dam inflow located in upper river basins. To this, we used areal averaged precipitation and dam inflow of three upper river dams such as Soyang dam, Chungju dam, and Andong dam. We employed Mann-Kendall trend analysis and change point detection method to identify the significant trends and changing point in time series. Our results showed that significant decreasing trends (95% confidence interval) in dry-seasonal runoff rates (= dam inflow/precipitation) in three-dam basins. We investigated potential causes of decreasing runoff rates trends using changes in potential evapotranspiration (PET) and precipitation indices. However, there were no clear relation among changes in runoff rates, PET, and precipitation indices. Runoff rate reduction in the three dams may increase the risk of dam operational management and long-term water resource planning. Therefore, it will be necessary to perform a multilateral analysis to better understand decreasing runoff rates.