• Title/Summary/Keyword: probable precipitation

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

  • Suh, Seung Duk;Jeon, Kuk Jin
    • Current Research on Agriculture and Life Sciences
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    • v.5
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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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The Characteristics of Probable Maximum Flood on Wi Stream Watersheds (위천유역(渭川流域)의 가능최대홍수량(可能最大洪水量) 특성(特性))

  • Choi, Kyung-Sook;Suh, Seung-Duk
    • Current Research on Agriculture and Life Sciences
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    • v.16
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    • pp.37-44
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    • 1998
  • The estimation of PMP (Probable Maximum Precipitation) and the analysis of characteristics of PMF (Probable Maximum Flood) according to the types of time distribution of rainfall and variations of base flow for the determination of design flood of major hydraulic structures in the watershed area of Wi stream were analysed. The PMP was estimated by the hydro-meteorological method suggested by the guideline of the World Meteorological Organization(WMO). The Blocking method was cited to transpose from PMP to PMS (Probable Maximum Storm) with time distribution. The unit hydrograph, applied for the estimation of PMF was derived by Clark's method. The summaryzed results : (1) The 72 hrs duration PMP in the area is 477.3mm which is 80mm less than the PMP map in Korea and 134 mm lager than the maximum precipitation of 342.9mm in Taegu, near the Wi stream watershed. (2) According to the types of time distribution and variations of base flow, the ranges of PMF for advanced type, central type and delayed type are 3,145.3~3,348.3cms, 3,774.6~3,977.7cms and 3,814.6~4,017.3cms, respectively. Those mean that peak discharge of advanced type is 600cms less than the central type and delayed type. (3) Delayed type among three types by Blocking method has been estimated the largest PMF of 4,017.3cms, and the advanced type has been estimated the smallest PMF of 3,145.3cms. The mean value of the peak PMF of 3,653.6cms may probably be resonable PMF in the Wi stream watershed. The mean PMF could probably be 1.7 times lager than the result of Gajiyama's equation. It is equivalent to the flood of return period 1,000 to 10,000 yrs.

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Safety Analysis of the Flood Control of Urban River in Flash Flood (돌발홍수 발생시 도시하천의 치수안전도 분석)

  • Park, Ho-Sang;Sim, Ou-Bae;Song, Jai-Woo
    • Journal of the Korean Society of Hazard Mitigation
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    • v.3 no.3 s.10
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    • pp.125-132
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    • 2003
  • In this study, safety analysis of river in flash flood due to local extraordinary rainfall was conducted for the Hong-Je river, which was selected as a representative sample basin because it is one of the most urbanized rivers in Seoul. The rainfall data of precipitation 310.1 mm and probable maximum precipitation (PMP) 740.0 mm in July $14{\sim}15$, 2001 was used to perform safety analysis. Resulting of safety analysis of the flood control in Hong-Je river, case of the 50 year of design frequency, safety section, management section, and danger section were represented to be 85%, 15%, and 0% respectively. For the 200 year of design frequency, safety section decreased by 6% and management section and danger section increment by 4% and 2%, respectively, The variation of management section was not observed with respect to 200 year of frequency. Little variation of safety value for management section for 300 and 500 of frequency increased by 8% and 12% relative to 50 year of frequency, respectively. management section and danger section for 1000 year of frequency increased by 19% and 13% relative to 50 year of frequency.

Reservoir Sedimentations of the Enclosure of Estuary Barraye in Gumgang Basin (하구언 설치에 따른 하천유사량 변화에 관한 연구)

  • 이중기
    • Water for future
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    • v.9 no.1
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    • pp.86-100
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    • 1976
  • To study influences on the downstream, and the Gunsan harbor by setting up estuary of the Gumgang, available data which were collected from the measuring stations which were established within the river basin of which results attained are as follows: 1. The discharge can be calculated as the relationship between the discharge and precipitation in the basin is $R=4{\times}10^{-4}p^2$ or R=P-600 2. The discharge flow in to small resevoirs in the basin can be estimated as $QR=QS\frac{PR-600}{PS-600}(\frac{AR}{AS})$ 3. This daily average discharge at Kongju is 31% less than the during maximum probable discharge and that in Okcheon is 48% less than the daily maximum probable flood. 4. The maximum probable flood from the small stream in the basin can be estimated by a $Q=82.45A^{0{\cdot}464}$ 5. Sediments can be computed with Qs (suspended load)=1.41 $Q^{1{\cdot}42}$ and Qb (bed load)=165.2 $Q^{0{\cdot}705}$. 6. By setting up the specific estuary the tidal movement will be reduced to 93.6% on the average and the sedimentation is reduced to 96.0%. Upon review of overall analysis, the dead wate level of estuary of Gumgang will completely sedimented in next 30 years, therefore, the dredging work at Gunsan harbor is reduced to 73.6%, it is considered that life length will be extended about 52years taking account the existing condition.

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Suggestion of modification method of unit hydrograph for estimating probable maximum flood (가능최대홍수량 산정을 위한 단위도의 수정 방법 제안)

  • Lee, Jinwook;Kim, Soeun;Yoo, Chulsang
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.309-309
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    • 2021
  • 댐 설계 시 가능최대강수량(probable maximum precipitation, PMP)으로 인한 홍수량인 가능최대홍수량(probable maximum flood, PMF)이 고려되며, 이를 산정하기 위해서는 단위도가 필요하다. 즉, PMF는 PMP를 입력으로 하여 단위도를 이용한 강우-유출 해석을 통해 얻어진다. 따라서, 동일한 PMP가 고려되더라도 적용되는 단위도에 따라 산정되는 PMF는 달라진다. PMP가 발생하는 상황에서는 평균적인 상황에 비해 단위도의 반응이 보다 빠르고 강해진다(한국개발연구원, 2007; 한국수자원공사, 2008; Kjedsen et al., 2016). 국내의 경우, 아직까지 PMF 산정을 위한 단위도에 대한 명확한 지침은 존재하지 않는다. 댐설계기준해설(국토해양부, 2011)에서는 유역의 평균단위도로 PMF를 추정할 경우 실제보다 낮은 결과치가 도출되는 문제가 있을 수 있다는 점을 경고하는 수준에 그치고 있다. 이에 본 연구에서는 유속 정보를 기반으로 PMF 산정을 위한 단위도를 결정해 보고, 이를 통해 대표단위도로부터 PMF 산정을 위한 단위도를 결정하기 위한 수정 방법을 제안하였다. 추가적으로 이러한 수정단위도를 적용하여, 기존 국내 기준 적용 결과 및 확률 강우량을 통해 산정되는 빈도홍수량과의 비교를 수행하였다.

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A Study on the Estimation of Probable Maximum Precipitation Frequency Factor in Korea (우리나라의 최대하강수량 빈도계수 산정에 관한 연구)

  • No, Jae-Sik;Lee, Won-Hwan;Lee, Gil-Chun
    • Water for future
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    • v.19 no.3
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    • pp.249-258
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    • 1986
  • The purpose of this study is to estimate the PMP frequency factor for evaluation of the Probable Maximum Precipitation (PMP) in Korea. The value of PMP is the criterion of the determination of design rainfall in Planning and designing hydraulic structures, and water resources management. To obtain the object, 12 key stations were selected in which have the automatic rain0recording paper of 20 years, and the annual maximum rainfall values were calculated for each 7 durations(10 min., 1, 2, 4, 6, 12, 24 hr.). The statistics(mean, standard deviation)were estimated, and diagram which shows the relationship between mean annual maximum rainfall($$) and frequency factor for each durations were drawn. PMP was estimated by statistical method using the PMP frequency factor obtained from the diagram and statistics($$, Sn). The PMP-Duration Equation was derived from the envelope curve in order to obtain the PMP for an arbitrary duration. The isohyetal map of 24 hours PMP and PMP. DAD curve for the whole of Korea were drawn in accordance with the point PMP values.

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Future PMPs projection according to precipitation variation under RCP 8.5 climate change scenario (RCP 8.5 기후변화 시나리오의 강수량 변화에 따른 미래 PMPs의 전망)

  • Lee, Okjeong;Park, Myungwoo;Lee, Jeonghoon;Kim, Sangdan
    • Journal of Korea Water Resources Association
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    • v.49 no.2
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    • pp.107-119
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    • 2016
  • Since future climate scenarios indicate that extreme precipitation events will intensity, probable maximum precipitations (PMPs) without being taken climate change into account are very likely to be underestimated. In this study future PMPs in accordance with the variation of future rainfall are estimated. The hydro-meteorologic method is used to calculate PMPs. The orographic transposition factor is applied in place of the conventional terrain impact factor which has been used in previous PMPs estimation reports. Future DADs are indirectly obtained by using bias-correction and moving-averaged changing factor method based on daily precipitation projection under KMA RCM (HEDGEM3-RA) RCP 8.5 climate change scenario. As a result, future PMPs were found to increase and the spatially-averaged annual PMPs increase rate in 4-hour and $25km^2$ was projected to be 3 mm by 2045. In addition, the increased rate of future PMPs is growing increasingly in the future, but it is thought that the uncertainty of estimating PMPs caused by future precipitation projections is also increased in the distant future.

A Study on Characteristics of Rainfall Triggering Landslides and Geometry of Slopes in Chuncheon during 2006 (2006년 춘천지역 산사태 유발 강우와 사면의 기하 특성에 관한 연구)

  • Yoo, Nam-Jae;Lee, Yong-Won;Kim, Ho-Jin
    • Journal of Industrial Technology
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    • v.30 no.B
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    • pp.33-40
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    • 2010
  • This paper is results of analyzing the characteristics of rainfall triggering landslides and geometry of slopes, caused by the heavy rainfall and antecedent precipitation by Typhoons Ewiniar and Bilis at Chuncheon area in Gangwondo around July in 2006. As results of analyzing the characteristics of rainfall, landslides in 131 sites were found to happen due to the heavy rainfall having the maximum intensity of rainfall in an hour during July 15 and antecedent precipitation during July 12 to 14 causing the ground to be weak by increasing the degree of saturation previously. From results of analyzing the geometrical characteristics of 131 slopes where landslides occurred, the slope width were in the range of 6~10m. The average slope length and angle were 46m and $51.8^{\circ}$, which was relatively steep slope, respectively. Landlises occurred in the elevation of 400 - 500 m with the most probable frequency.

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Characteristics of Landslide Occurrence in Wonju during 2006 (2006년 원주지역 산사태 발생특성)

  • Yoo, Nam-Jae;Kim, Jong-Hwan;Choi, Joon-Sik
    • Journal of Industrial Technology
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    • v.31 no.A
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    • pp.87-94
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    • 2011
  • This paper is results of analyzing characteristics of landslides occurred in Wonju, Gangwondo, around July, 16 in 2006, caused by heavy rainfall and antecedent precipitation by two typhoons of Ewiniar and Bilis. The main causes of landslides were antecedent precipitation during July 8 to 15, resulting in weakening grounds by increasing the degree of saturation previously, and the heavy rainfall during July 15 to 16. Most of landslides in natural slopes were transitional failures occurred along the boundary between the residual weathered soil in shallow depth and the hard mother rock. From results of conclusive analyses regarding 28 sites in Wonju region where landslides occurred, the slope length of landslide, the slope width, and the slope area were less than 50m with 71% of frequency, 20m with 79% of frequency and $300m^2$ of 64% of frequency respectively. The average value of slope angle was $35^{\circ}$. The most probable direction of slope was found to be north because of topography and advancing direction of seasonal rain front.

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Study for Estimation of MP using RCM (RCM을 이용한 최대강수량 산정에 대한 국내적용가능성 연구)

  • Lee, Jeonghoon;Kim, Sangdan
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.598-598
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    • 2015
  • 본 논문에서는 물리적 기반의 지역 대기 모형(Regional Climate Model)을 이용하여 최대강수량(Maximum Precipitation, MP)을 산정하는 방안에 대한 국내 적용가능성을 알아보고자 한다. 물리적 기반의 지역 대기 모형을 이용한 최대강수량을 산정하는 방안은 Ohara et al.(2011)에 의해 제안된 방법으로 기존의 통계학적/수문기상학적 방법의 논리적 약점인 기후의 정상성 가정을 극복하고 비정상성을 그대로 반영할 수 있기 때문에 추후 가능최대강수량(Probable Maximum Precipitation, PMP) 산정 연구에도 좋은 대안이 될 것으로 기대된다. 이에 본 연구에서는 차세대 대기모델인 WRF를 이용하여 이러한 방법론을 국내에 적용하고 그 가능성을 평가해보았다.

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