• Title/Summary/Keyword: intensity of rainfall

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Flood Simulation by using High Quality Geo-spatial Information (고품질 지형공간정보를 이용한 홍수 시뮬레이션)

  • Lee, Hyun-Jik;Hong, Sung-Hwan
    • Journal of Korean Society for Geospatial Information Science
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    • v.18 no.3
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    • pp.97-104
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    • 2010
  • The important factors in a flood simulation are hydrologic data (such as the rainfall and intensity), a threedimensional terrain model, and the hydrologic inundation calculation matrix. Should any of these factors lack accuracy, flood prediction data becomes unreliable and imprecise. The three-dimensional terrain model is constructed based on existing digital maps, current map updates, and airborne LiDAR data. This research analyzes and offers ways to improve the model's accuracy by comparing flood weakness areas selected according to the existing data on flood locations and design frequency.

Application of Distributed Rainfall-Runoff Model based Intensity-Duration-Quantity Curve for Unagaged Basin Flood warning (미계측 유역 홍수예보를 위한 분포형 강우-유출 모형 기반의 강우강도-지속시간-홍수량(IDQ) 곡선의 활용)

  • Kim, Jingyeom;Kang, Boosik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.645-645
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    • 2015
  • 기존 홍수예보에 사용되는 일반적인 절차는 관측되는 강우를 이용하여 유역의 유출량을 계산하고 댐 저수량과 현 상황에서 발생할 수 있는 하천의 수위와 유량을 판단한 뒤 홍수예보 및 경보를 발령한다. 이러한 방법은 모형의 구동에 걸리는 시간으로 인한 의사결정 시간의 단축, 모형의 성능에 의존하는 홍수예측 결과 등의 단점이 존재하며, 관련 전문가가 상주하며 홍수 유무를 판단하고 상황을 전파해야하는 인적 재원이 필요하다. 본 연구에서는 분포형 강우-유출모형 기반의 강우강도-지속시간-홍수량(IDQ) 곡선을 활용하여 미계측 유역 홍수예보에 활용하는 기법을 평가하였다. 계측된 유역의 자료를 이용하여 분포형 모형의 검보정을 실시하고 하천의 예경보 홍수량에 준하는 한계강우량을 산정하였다. 이때. 다양한 지속시간의 강우를 적용하였으며 토양함수상태에 따른 IDQ 곡선을 산정하여 발생 가능한 여러 시나리오에 대비할 수 있는 홍수예보 기법을 제시하였다. 주요 홍수예경보지점에 적절한 IDQ 곡선을 보유하게 된다면 비전문가도 신속한 홍수예경보 의사결정이 가능하여 각 지자체와 유관기관에서 손쉽게 활용할 수 있으리라 판단된다.

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Applicability Evaluation of Bivariate Frequency Analysis using Rainfall Intensity Formula (강우강도식을 이용한 Copula 모형의 이변량 빈도해석 적정성 검토)

  • Cho, Eunsaem;Song, Sung-uk;Yoo, Chulsang
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.420-420
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    • 2015
  • 일반적으로 호우사상의 특성은 강우강도, 지속기간, 총 강우량으로 정량화된다. 주어진 호우 사상에 대한 재현기간은 보통 위 세 개 변량 중 두 개의 변량에 대한 이변량 빈도해석을 통해 결정된다. 따라서 3 가지의 다른 빈도해석이 가능하며, 원칙적으로 이 세 가지 빈도해석 결과는 같아야 한다. 그러나, 문제는 어떤 변량을 선택하느냐에 따라 빈도해석 결과가 달라진다는 점이다. 본 연구에서는 이 문제를 해결하고자 다음과 같은 연구를 수행하였다. 첫 번째로 1961-2010년에 관측된 서울지점 연최대치 호우사상에 대한 이변량 빈도해석을 수행하였다. 이변량 빈도해석은 Frank, Gumbel-Hougaard, Clayton, ali-Mikhail-Haq copula 모형을 이용하여 수행하였으며, 모형의 매개변수는 두 변량의 상관관계를 나타내는 Kendall's tau를 이용하여 추정하였다. 호우사상에 대한 이변량 빈도해석을 수행한 결과, 결과가 일관되지 않고 고려한 두 가지 강우변량에 따라 다르게 나타난 것을 확인하였다. 두 번째로 보편적인 강우강도식을 이용하여 호우사상을 이루는 세변량의 특성을 분석하였다. 본 연구에서 고려한 강우강도식은 Talbot 형, Sherman 형, Japanese 형, Grunsky 형이다. 일반적인 강우강도식에서 지속기간과 강우강도의 관계는 I~t^a와 같이 나타나며, 이 때 a의 범위는 -0.5부터 -1까지 값으로 정해진다. 마지막으로, 호우사상을 이루는 세 변량의 상관관계를 이용하여 가장 적절한 이변량 빈도해석결과를 도출하는 강우 변량의 조합을 결정하였다. 결론적으로, 본 연구에서는 지속기간과 강우강도를 copula 모형을 이용한 이변량 빈도 해석의 가장 적절한 것으로 판단되었다.

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Estimation of Short-Duration Rainfall Quantile Intensity-Duration-Frequency curve using down-scaling in North Korea (하향 스케일링을 이용한 북한 지역의 단기 IDF곡선 추정)

  • Jung, Younghun;Joo, Kyungwon;Kim, Sunghun;Heo, Jun-Haeng
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.249-249
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    • 2020
  • 수공구조물을 설계하기 위해서는 다양한 지속기간에 대한 설계수문량을 추정해야 한다. 국내의 경우도 기후변화로 인한 이상기후의 발생으로 1~2시간 동안 강우강도가 큰 집중호우가 발생하여 도시홍수를 발생시키며 직접 또는 간접적으로 피해를 주고 있다. 특히 북한 지역은 강우관측소가 존재하지 않은 지역이 많아 수공구조물 설계에 필요한 설계수문량을 추정하기에 많은 어려움이 있다. 본 연구에서는 하향스케일링(down-scaling)을 이용하여 북한 지역의 24시간 이내의 확률강우량을 추정하고자 한다. 이를 위하여 미계측 유역인 화천댐 상류유역의 지역빈도해석과 군집분석을 수행하여 수문학적 동질성을 확보하였고, 한강유역을 4개의 동질지역으로 구분하였다. 스케일 성질은 동일한 분포형을 가정하므로 수문학적 동질성이 확보된 기준 지속기간의 자료로부터 임의이 지속기간에 대한 확률강우량 추정이 가능하다. 따라서 북한지역의 짧은 지속기간에 대한 확률 강우량 추정을 위하여 동일한 지역 내의 지역 스케일 지수와 스케일 인자를 이용하여 하향스케일링을 적용할 수 있으며, 단기 혹은 장기에 해당하는 지속기간에 대한 확률강우량을 추정할 수 있다.

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A Study on Feasibility of Cloud Seeding in Korea (한반도에서의 인공증우 가능성에 대한 연구)

  • Chung, Kwan-Young;Eom, Won-Geun;Kim, Min-Jeong;Jung, Young-Sun
    • Journal of Korea Water Resources Association
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    • v.31 no.5
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    • pp.621-635
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    • 1998
  • The feasibility of cloud seeding in Korea is presented from analyses of precipitation, cloud amount, satellite data, and upper air data. The daily mean precipitation over Dae-Kwan-Ryong is the largest(~4.5 mm/day), while the intensity of precipitation (amount of yearly rainfall divided by the frequency of rain days) over Southern area is above 14 mm/day, which shows the largest in Korea. Both the daily mean and the intensity of precipitation over Andong area are the smallest with values of ~2.7 mm/day and ~11 mm/day, respectively. In the meanwhile, the occurrence frequency of appropriate cloud top temperature (-10'~-30') for cloud seeding over the region has a large value (~130 days/year). The precipitation patterns of the region vary with wind direction and intensity calculated from 43 AWSs(Automatic Weather Station) and the additional 7 rain guages which were installed along Northern and Southern part of the Sobaek mountain. The Sc(Stratocumulus) cloud type over Andong is frequently observed, and Cirrus and Altostratus next. From the results, it is estimated that the feasibility of cloud seeding over the area would be high if a proper strategy of cloud seeding is set up. LCL (Lifting Condensation Level) and CCL (Convective Condensation Level) have the most frequency in 1000-950 hPa being occupied 4/9 of total analysis period and in 400-500 hPa, respectively, with both small variations from season to season. The correlation between vapor mixing ratio and CCL is the highest in Summer and the lowest in Winter. It means that the height of cumulus in Summer is high with an abundant water vapor but vice versa in Winter, and that the strategy of cloud seeding should be different with seasons.

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Change in Fluorescence Characteristics of Dissolved Organic Matter at Inflow Stream per Catchment of Different Land Use (토지이용도가 다른 소유역별 유입하천에서 용존유기물 형광특성 변화)

  • Kim, Sea-Won;Oh, Jong-Min;Lee, Bo-Mi;Choi, Kwang-Soon
    • Korean Journal of Ecology and Environment
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    • v.44 no.3
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    • pp.292-302
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    • 2011
  • The Lake Sihwa watershed includes industrial, urban, and rural areas simultaneously. In this study, we analyzed the characteristics of dissolved organic matter (DOM) in spatial-temporal runoff patterns at representative sites having different land use in the watershed of Lake Sihwa. The result of synchronous and 3D-EEMs(3-Dimensional Excitation Emission Matrix Spectroscopy) analysis in 4TG (industrial area), fluorescence distribution and variation clearly appeared in the Fulvic-like fluorescence (FLF) and Humic-like fluorescence (HLF) regions along with the Protein-like fluorescence (PLF) region. A characteristic that Peak A (HLF) region fluorescence intensity did not decrease and the HLF region of fluorescence intensity and spatial-temporal changes clearly appeared during rainfall in AS (urban area). The results of fluorescence analysis in MS did not show great changes in PLF and FLF while showing that fluorescence intensity changes over time in the Terrestrial-like fluorescence (THLF) region increased greatly. In conclusion, our results showed significant differences in the runoff characteristics of DOM particularly in industrial, urban and rural area, and these differences should be considered for the efficient controlling of DOM in the watershed.

Long-term (2002~2017) Eutropication Characteristics, Empirical Model Analysis in Hapcheon Reservoir, and the Spatio-temporal Variabilities Depending on the Intensity of the Monsoon (합천호의 장기간 (2002~2017) 부영양화 특성, 경험적 모델 분석 및 몬순강도에 따른 시공간적 이화학적 수질 변이)

  • Kang, Yu-Jin;Lee, Sang- Jae;An, Kwang-Guk
    • Korean Journal of Environment and Ecology
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    • v.33 no.5
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    • pp.605-619
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    • 2019
  • The objective of this study was to analyze eutrophication characteristics, empirical model analysis, and variation of water quality according to monsoon intensity in Hapcheon Reservoir for 16 years from 2002 to 2017. Long-term annual water quality analysis showed that Hapcheon Reservoir was in a meso-nutrition to eutrophic condition, and the eutrophic state intensified after the summer monsoon. Annual rainfall volume (high vs. low rainfall) and the seasonal intensity in each year were the key factors that regulate the long-term water quality variation provided that there is no significant change of the point- and non-point source in the watershed. Dry years and wet years showed significant differences in the concentrations of TP, TN, BOD, and conductivity, indicating that precipitation had the most direct influence on nutrients and organic matter dynamics. Nutrient indicators (TP, TN), organic pollution indicators (BOD, COD), total suspended solids, and chlorophyll-a (Chl-a), which was an estimator of primary productivity, had significant positive relations (p<0.05) with precipitation. The Chl-a concentration, which is an indicator of green algae, was highly correlated with TP, TN, and BOD, which differed from other lakes that showed the lower Chl-a concentration when nutrients increased excessively. Empirical model analysis of log-transformed TN, TP, and Chl-a indicated that the Chl-a concentration was linearly regulated by phosphorus concentration, but not by nitrogen concentration. Spatial regression analysis of the riverine, transition, and lacustrine zones of $log_{10}TN$, $log_{10}TP$, and $log_{10}CHL$ showed that TN and Chl-a had significant relations (p<0.005) while TN and Chl-a had p > 0.05, indicating that phosphorus had a key role in the algal growth. Moreover, the higher correlation of both $log_{10}TP$ and $log_{10}TN$ to $log_{10}CHL$ in the riverine zone than the lacustrine zone indicated that there was little impact of inorganic suspended solids on the light limitation in the riverine zone.

Characterization of Dissolved Organic Matter in Stream and Industrial Waste Waters of Lake Sihwa Watershed by Fluorescence 3D-EEMs Analysis (형광 3D-EEMs를 이용한 시화호유역 하천 및 공단폐수의 유기물 특성 분석)

  • Lee, Mi-Kyung;Choi, Kwang-Soon;Kim, Sea-Won;Kim, Dong-Sup
    • Journal of Korean Society of Environmental Engineers
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    • v.31 no.9
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    • pp.803-810
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    • 2009
  • This study is conducted to examine spatial variations of Dissolved Organic Matter (DOM) in stream and waste waters of the different watershed areas (agricultural, residential, and industrial complex area) by using fluorescence 3D-EEMs (3 Dimensional Excitation Emission Matrix Spectroscopy). Furthermore, the research investigates the changes of DOM characterization by synchronous and 3D-EEMs during a rainfall event. The characterizations of DOM obtained by 3D-EEMs show two noticeable peaks at humic and protein-like regions. Humic-like substances (HLS) are found in rural and urban areas, and humic and protein-like substances (PLS) are shown in industrial area. According to the fluorescence peak $T_1:C_1$ ratios, it is observed that high amount of HLS was discharged from Banweol Industrial Complex (3TG). Additionally, linear relationships (Regression rate, $r^2$=0.65, $r^2$=0.66) have been shown between PLS (peak $T_1,\;B_1$) and biochemical oxygen demand (BOD), which indicates the impact of sewage. For the rainfall event (30 mm), no remarkable difference of DOM was found at rural area except increment of fluorescence intensity comparing dry period. In contrast, HLS at urban area is highly discharged within 30 minutes from the beginning of rainfall. Also, there are high influences of HLS and PLS within 20 minutes at industrial complex (4TG). Fluorescence 3D-EEMs has not only verifies a watershed of DOM origination but also monitors diffuse and point source impacts.

Effect of Delayed Transplanting plus Water Stress on the Growth and Yield of the Rice Plants (한발로 인한 벼의 이앙지연 및 수분결핍장애가 생육 및 수량에 미치는 영향)

  • 권용운;소창호;권순국
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.28 no.3
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    • pp.79-88
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    • 1986
  • Drought occurs most frequently and severely around transplanting season of the rice plants in Korea. Shortage of water due to drought for the paddy fields often delays transplanting, and less often the rice plants are subjected to water stress after delayed transplanting. The present study aimed at quantification of the rice crop loss due to delayed transplanting, different inten3ity of water stress, and the combined effect of delay in transplanting followed by water stress for better use of limited water for irrigation under drought. The rice variety Chucheong, a japonica, and Nampung, an indica x japonica, were grown, transplanted to 1/200 a plastic pots, and subjected to different timing of transplanting and degree of water stress under a rainfall autosersing, sliding clear plastic roof facility with completely randomized arrangement of 5 replications. The results obtained are summarized as follows: 1.Twelve days or 22 days delay in transplanting without water stress reduced rice yield by 25% and 43% in the japonica variety, and by 15% and 60% in the indica x japonica variety. 2.The 10 days or 20 days water stress developed without irrigation after drainage in the rice plants transplanted at proper time lowered the water potential at the paddy soil 10cm deep to -4 bar, and -12 bar and caused rice yield reduction by 14%, and 45% in the japonica variety and by 8%, and 50% in the indica X japonica variety. 3.The 12 days delay in transplanting and 10 days or 20 days water stress reduced rice yield by 39% and 59% in the japonica variety, and by 38% and 52% in the indica x japonica variety. The 22 days delay in transplanting plus 10 days water stress caused yield reduction by 76%, i.e. meaningless yield, in both varieties. 4.The intermittent irrigation just to wet the soil body for 10 days after 10 days water stress without irrigation increased rece yield by 12 to 16% compared to the rice plants water stessed without irrigation continuously for 20 days in both varieties respectively. 5.The above results suggest strongly 1) to transplant the rice plants at proper .time even with some water stress rather than delay for sufficient water from later rainfall, and 2) to distribute insufficient irrigation water to broader area of transplanted rice with limited irrigation for better use of limited irrigation water. A greater sensitivity of japonica variety to a moderate water stress than the indica X japonica variety during initial rooting and tillering stage was noticed. To cope with frequent drought in rice culture, firstly the lasting time of transplanting without yield reduction should be clarified by region and variety, and secondly a scheme of rational distribution of limited water should be developed by region with better knowledge on the varietal distribution of limited water should be developed by region with better knowledge on the varietal responses to varying intensity of water stress.

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The Analysis of Suspended Sediment Load of Donghyang and Cheoncheon Basin using GIS-based SWAT Model (GIS 기반 SWAT 모델을 이용한 동향·천천유역의 부유사량 분석)

  • Lee, Geun-Sang;Kim, Yu-Ri;Ye, Lyeong;Lee, Eul-Rae
    • Journal of the Korean Association of Geographic Information Studies
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    • v.12 no.2
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    • pp.82-98
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    • 2009
  • This study applied SWAT model to analyze suspended sediment load that is influence on the high density turbid water in Donghyang and Cheoncheon basin, which are located in the upstream of Yongdam Dam. GIS data such as DEM, land cover map and soil map, and meteorological data were used as the input data of SWAT model. And the rating curve equation and Q-SS equation of Donghyang and Cheoncheon gauge station were applied as the measured values of them. As the result of flowout, the coefficient of determination ($R^2$) and the Nash-Sutcliffe coefficient of efficiency (EI) of model calibration showed high as 0.87 and 0.87 at Donghyang gauge station, and the $R^2$ and EI of model validation were high as 0.95 at Cheoncheon gauge station. Also, as the result of suspended sediment load, the $R^2$ and EI of model calibration were high as 0.77 and 0.76 at Donghyang gauge station, and the $R^2$ and EI of model validation marked high as 0.867 and 0.80 at Cheoncheon gauge station. It is considered that the suspended sediment load of 2003 showed the highest due to rainfall amounts and rainfall intensity in using SWAT model. The results of suspended sediment modeled in this study can be applied to the decision-making support data for the evaluation of soil erosion possibility and turbid water potential in the management of reservoir.

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