• 제목/요약/키워드: effective rainfall

검색결과 487건 처리시간 0.033초

인공강우기 기반 확률강우재현을 통한 식생유니트형 LID시스템의 우수유출지연 효과분석 (Analysis of Rainfall Runoff Delay Effect of Vegetation Unit-type LID System through Rainfall Simulator-based Probable Rainfall Recreation)

  • 김태한;박정현;최부헌
    • 한국환경복원기술학회지
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    • 제22권6호
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    • pp.115-124
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    • 2019
  • In a climate change environment where heat damage and drought occur during a rainy season such as in 2018, a vegetation-based LID system that enables disaster prevention as well as environment improvement is suggested in lieu of an installation-type LID system that is limited to the prevention of floods. However, the quantification of its performance as against construction cost is limited. This study aims to present an experiment environment and evaluation method on quantitative performance, which is required in order to disseminate the vegetation-based LID system. To this end, a 3rd quartile huff time distribution mass curve was generated for 20-year frequency, 60-minute probable rainfall of 68mm/hr in Cheonan, and effluent was analyzed by recreating artificial rainfall. In order to assess the reliability of the rainfall event simulator, 10 repeat tests were conducted at one-minute intervals for 20 minutes with minimum rainfall intensity of 22.29mm/hr and the maximum rainfall intensity of 140.69mm/hr from the calculated probable rainfall. Effective rainfall as against influent flow was 21.83mm/hr (sd=0.17~1.36, n=20) on average at the minimum rainfall intensity and 142.27mm/hr (sd=1.02~3.25, n=20) on average at the maximum rainfall intensity. In artificial rainfall recreation experiments repeated for three times, the most frequent quartile was found to be the third quartile, which is around 40 minutes after beginning the experiment. The peak flow was observed 70 minutes after beginning the experiment in the experiment zone and after 50 minutes in the control zone. While the control zone recorded the maximum runoff intensity of 2.26mm/min(sd=0.25) 50 minutes after beginning the experiment, the experiment zone recorded the maximum runoff intensity of 0.77mm/min (sd=0.15) 70 minutes after beginning the experiment, which is 20 minutes later than the control zone. Also, the maximum runoff intensity of the experiment zone was 79.6% lower than that of the control zone, which confirmed that vegetation unit-type LID system had rainfall runoff reduction and delay effects. Based on the above findings, the reliability of a lab-level rainfall simulator for monitoring the vegetation-based LID system was reviewed, and maximum runoff intensity reduction and runoff time delay were confirmed. As a result, the study presented a performance evaluation method that can be applied to the pre-design of the vegetation-based LID system for rainfall events on a location before construction.

Huff 강우시간분포방법의 개선방안 연구 : II. Huff 방법의 개선방안 (A Study on the Improvement of Huff's Method for Applying in Korea : II. Improvement of Huff's Method)

  • 장수형;윤재영;윤용남
    • 한국수자원학회논문집
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    • 제39권9호
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    • pp.779-786
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    • 2006
  • 본 연구에서는 Huff(1967) 방법의 국내유역 적용을 위한 개선방안으로서 유역내 외 관측소의 강우사상별로 점우량 25.4mm이상과 면적평균우량 12.7mm이상의 자료를 사용하는 방법을 제시하였다. 본 연구의 분석결과 강우지속기간 등급별 최빈분위의 대부분이 면적평균우량과 같은 분위가 선택되어 유역의 대표성을 갖는 것으로 분석되었다. 건설교통부(2000) Huff 방법과 본 연구의 방법으로 시간분포 시킨 결과 지속기간별 첨두강우강도의 크기는 본 연구의 방법으로 산정된 값이 컸으나, 지속기간에 따라 일관된 경향을 나타내지는 않았다. 전술한 두 방법에 의해 시간분포 시킨 지속기간별 확률강우량을 입력으로 하여 유입수문곡선을 모의하였다. 첨두강우강도의 경우와는 달리 지속기간별 첨두홍수량의 값은 지속기간 12시간을 기준으로 지속기간이 증가됨에 따라 두 방법에 의한 값의 차이가 커졌다. 특히, 임계지속기간을 고려한 첨두홍수량에서 큰 차이를 보였으며, 이는 지속기간별 첨두홍수량 차이에서도 유사한 특성으로 나타났다. 따라서 본 연구에서 제시한 방법은 지속기간에 관계없이 하나의 누가곡선을 이용해왔던 기존방법에서 탈피해 지속기간별로 누가곡선을 구분함으로써 지속기간별 강우의 시간분포 특성과 유역의 대표성을 갖는 무차원 누가곡선 작성방법으로 효과적일 것으로 기대되었다.

금강유역(錦江流域) 주요지점(主要地点)의 제(諸) 수문량(水文量)에 관(關)한 연구(硏究)(I) (Studies on the Some Hydrological Quantities of Principal Locations in the Basin of Geum River(I))

  • 안병기;조성섭
    • 농업과학연구
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    • 제2권1호
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    • pp.281-300
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    • 1975
  • 1. 금강유역(錦江流域)의 평균년강수량(平均年降水量)은 1203.0mm이고, 면적강수량(面積降水量)을 산출(算出)할 때 많이 사용(使用)하는 Thiessen법(法)의 Areal weight는 표(表)-과 같다. 2. 최대연강수량(最大年降水量)은 1501~2000mm인 곳이 24개관측소중(個觀測所中)며 17개소(個所)나 되어 가장 많은 71%이고, 나머지는 1500mm이하(以下)인 곳이 3개소(個所)이며, 2001mm이상(以上)인 곳은 4개소(個所)이다. 3. 최대일강우량(最大日降雨量)은 201~300mm인 곳이 15개소(個所)로 가장 많은 63%의 분포(分布)이다. 4. 최대(最大)2일간연속강우량(日間連續降雨量)은 300mm를 중심(中心)으로 전후(前後) 각각 50%씩 분포(分布)된다. 5. 최대(最大)3일간연속강우량(日間連續降雨量)은 301~400mm인 곳이 15개소(個所)로 63%의 분포(分布)이며 이는 최대일강우량(最大日降雨量)보다 100mm가 더 많은 강우량(降雨量)이다. 6. 최대연속강우량(最大連續降雨量)은 401~600mm인 곳이 14개소(個所)로 가장 많은 58%의 분포(分布)이며 이는 최대일강우량(最大日降雨量)보다 200mm가 더 많은 강우량(降雨量)이다. 7. 확률일강우량(確率日降雨量)은 표(表)-5와 같고, 무주(茂朱)를 중심(中心)으로한 대청(大淸)댐유역(流域)의 확률일강우량(確率日降雨量)이 가장 많으며, 다음으로는 강경(江景) 공주(公州) 및 부여(扶餘)를 연결(連結)하는 지방(地方)이 다우(多雨)인 편(便)이다. 8. 6월(月)1일(日)부터 9월(月)10일(日)까지 100일간(日間)의 논벼 관개기간중(灌漑期間中)의 강우량(降雨量)은 601~800mm 인 곳이 16개소(開所)로 76%의 분포(分布)이며 이는 표(表)-6과 같다. 9. 유효우량(有效雨量)은 501~600mm인 곳이 15개소(個所) 71%의 분포(分布)이며, 유효율(有效率)은 66~75%인 곳이 13개소(個所)로 62%의 비율(比率)이고, 다음으로는 76~85%인 곳이 7개소(個所)로 33%의 비율(比率)이다. 10. 확률유효우량(確率有效雨量)은 각 지방(地方)의 연평균유효우량(年平均有效雨量)은 보다 100mm정도(程度)씩 적고, 301~500mm인 곳이 14개소(個所)로 67%의 분포(分布)이다. 11. 갈수년도(渴水年度)는 유역내(流域內)를 총괄적(總括的) 동일(同一)하게 지정(指定)할수 없다고 여겨진다. 12. 금강유역(錦江流域)의 s/S는 0.53~0.74로 되어 수자원면(水資源面)에서 비교적(比較的) 안정(安定) 편(便)이다.

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하천유역의 홍수관리 시스템 모델 (Flood-Flow Managenent System Model of River Basin)

  • Lee, Soon-Tak
    • 물과 미래
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    • 제26권4호
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    • pp.117-125
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    • 1993
  • A flood -flow management system model of river basin has been developed in this study. The system model consists of the observation and telemetering system, the rainfall forecasting and data-bank system, the flood runoff simulation system, the dam operation simulation system, the flood forecasting simulation system and the flood warning system. The Multivariate model(MV) and Meterological-factor regression model(FR) for rainfall forecasting and the Streamflow synthesis and reservoir regulation(SSARR) model for flood runoff simulation have been adopted for the development of a new system model for flood-flow management. These models are calibrated to determine the optimal parameters on the basis of observed rainfall, streamflow and other hydrological data during the past flood periods. The flood-flow management system model with SSARR model(FFMM-SR,FFMM-SR(FR) and FFMM-SR(MV)), in which the integrated operation of dams and rainfall forecasting in the basin are considered, is then suggested and applied for flood-flow management and forecasting. The results of the simulations done at the base stations are analysed and were found to be more accurate and effective in the FFMM-SR and FFMM0-SR(MV).

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고랭지 밭 유역에서 융설과 강우유출로 발생하는 비점오염원의 특성 비교 (Comparison of NPS Pollution Characteristics between Snowmelt and Rainfall Runoff from a Highland Agricultural Watershed)

  • 최용훈;원철희;박운지;신민환;신재영;이수인;최중대
    • 한국물환경학회지
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    • 제28권4호
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    • pp.523-530
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    • 2012
  • Runoff, NPS pollution load and flow-weighted mean concentration (FWMC) occurred by snowmelt and rainfall runoff were compared by a variance analysis. Snowmelt runoff ranged between 1,449 and $19,921m^3$. The peak snowmelt runoff was similar to the runoff that occurred by about 40mm/day rainfall. And average snowmelt runoff was not significantly different from the runoff that occurred by 25.5 mm/day rainfall. Average values of SS loads and FWMCs were 5,438 kg/day and 954.9 mg/L, respectively. SS loads and FWMCs were in the similar range with those that occurred by 39.0 mm/day and 53.0 mm/day rainfall, respectively. Daily SS and COD loads and FWMCs occurred by snowmelt and rainfall were analyzed not to be significantly different. Overall assessment led that the NPS pollution loads by snowmelt runoff had a similar characteristics with the loads by about 40 mm/day rainfall runoff. It was recommended that the agricultural fields in snowy region needs to managed not only for rainfall runoff but also snowmelt runoff for an effective water quality management.

강우시 합류식 하수관거의 월류수 차집용량 산정을 위한 유출특성 분석 (Analysis of Storm Water Run-off Characteristics to Evaluate the Intercepted Volume of CSOs during Wet Weather)

  • 최성현;최승철;김병욱;임재명
    • 상하수도학회지
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    • 제18권3호
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    • pp.320-330
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    • 2004
  • Most of domestic city is served combined sewer system among various sewer system like as separate sanitary, combined sewer system and storm sewers. During the wet weather, sewer and rainfall have been overflowed because it is over capacity of the combined sewer system; that is called combined sewer overflows(CSOs) This research was carried out to investigate runoff characteristics of combined sewer and to evaluate the effective CSOs volume in Hong-Chun gun. During wet weather, SS load of first rainfall at H-1, H-2, and H-3 were 600kg/event, 370kg/event, and 289kg/event, respectively. 55 load of second rainfall were 216kg/event, 113kg/event, and 37.2kg/event. When the first rainfall, event mean concentrations(EMCs) at each site were 702mg/L, 816mgjL and 861.5mg/L. The second rainfall's event mean concentrations(EMCs) were 99.9gm/L, 161.9mg/L, 103.6mg/L. Rrst flush coefficient b at each site were 0.237,0.166, and 0.151. When the first rainfall, the flow containing 80% of pollutant mass of CSOs at each site were 0.55, 0.23, 0.48 in first rainfall, respectively. The case of second rainfall were 0.79, 0.83, 0.81. Most of all, characteristics of rainfall like as analysis of first-flush, CSOs volume, pollutant loadings is investigated to decide intercepted volume for control of CSOs.

강우레이더의 3차원 가시화를 위한 데이터 변환 및 표출기법 (Data Transformation and Display Technique for 3D Visualization of Rainfall Radar)

  • 김형훈;박현철;최영철;김태수;정윤재
    • 한국멀티미디어학회논문지
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    • 제20권2호
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    • pp.352-362
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    • 2017
  • This paper proposes an algorithm for automatically converting and displaying rainfall radar data on a 3D GIS platform. The weather information displayed like rainfall radar data is updated frequently and large-scale. Thus, in order to efficiently display the data, an algorithm to convert and output the data automatically, rather than manually, is required. In addition, since rainfall data is extracted from the space, the use of the display image fused with the 3D GIS data representing the space enhances the visibility of the user. To meet these requirements, this study developed the Auto Data Converter application that analyzes the raw data of the rainfall radar and convert them into a universal format. In addition, Unity 3D, which has good development accessibility, was used for dynamic 3D implementation of the converted rainfall radar data. The software applications developed in this study could automatically convert a large volume of rainfall data into a universal format in a short time and perform 3D modeling effectively according to the data conversion on the 3D platform. Furthermore, the rainfall radar data could be merged with other GIS data for effective visualization.

장마전선상에서 하층제트 유입으로 인한 집중호우에 관한 연구 (A Study on the Heavy Rainfall Cases Associated with Low Level Jet Inflow along the Changma Front)

  • 최지영;신기창;류찬수
    • 통합자연과학논문집
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    • 제4권1호
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    • pp.44-57
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    • 2011
  • In general, heavy rainfall in Korea is mostly associated with inflow of 850hPa low-level jet. It transports abundant heat and moisture flux to the Changma front. In this study, synoptic characteristics of heavy rainfall in Korea from a case study is examined by classifying heavy rainfall cases with synoptic patterns, in particular distribution of upper- and low-level jets, western North Pacific high, and moisture flux. The surface and upper-level weather charts including auxiliary analysis chart and radar and satellite images obtained from the Korea Meteorological Administration, and 500hPa geopotential heights from NCEP/NCAR are used and then KLAPS is applied to understand the local atmospheric structure associated with heavy rainfall. Results show that maximum frequency in 60 heavy rainfall cases with more than 150mm/day appears in the Changma type of 43 cases (a proportion in relation to a whole is 52%) including the combined Changma types with typhoon and cyclone. As indicated in previous studies, most heavy rainfall cases are related to inflow of low-level jet. In addition, synoptic characteristics based on the analyses of weather charts, radar and satellite images, and KLAPS in heavy rainfall case of 12 July, 2009 reveal that the atmospheric vertical structure in particular equivalent potential temperature favorable for effective inflow of warm and moist southwesterly into the Changma front is linked to large potential instability and the strong convergence accompanied with low-level jet around Suwon contributes to atmospheric upsliding along the Changma front, producing heavy rainfall.

산불지역의 WEPP 매개변수 추정 (Estimation of WEPP's Parameters in Burnt Mountains)

  • 박상덕
    • 한국수자원학회논문집
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    • 제41권6호
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    • pp.565-574
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    • 2008
  • 산불에 따른 토양의 반발수력 증대로 산지의 유출량과 토양침식량이 가중된다. WEPP모형을 산불지역에 적용하기 위한 주요 매개변수들의 최적 추정기법에 대해 연구하였다. 산불지역에서 WEPP모형은 유출량이 적을 때 과대평가하고 많으면 과소평가하였으며 토양침식량이 적은 경우에도 과대 산정하는 경향이 있다. 산불지역에서 이 모형의 유출량 변화는 유효투수계수가 가장 큰 영향을 미치고 토사유출량 변화는 유효투수계수, 초기포화도, 세류침식계수, 세류간침식계수가 주로 영향을 미치는 것으로 나타났다. 산불지역에서 WEPP의 적용성을 향상시키기 위하여 유출량에 대해서는 유효투수조정계수를 도입하고, 토사유출량에 대해서는 세류침식조정계수와 세류간침식조정계수를 도입하였다. 유효투수조정계수는 강우사상의 최대강우강도와 식생인자에 따라 증가하는 경향을 나타내었다. 세류침식조정계수는 입도분포의 토양성분 특성과 강우사상의 총강우량에 좌우되었으며 세류간침식조정계수는 최대강우강도와 식생고지수의 증가에 따라 감소하였다. 본 연구결과는 산불지역 사면에서 WEPP모형의 적용에 활용될 수 있을 것으로 판단된다.

Hydrological Consequences of Converting Forestland to Coffee Plantations and Other Agriculture Crops on Sumber Jaya Watershed, West Lampung, Indonesia

  • Manik, Tumiar Katarina;Sidle, Roy Carl
    • Journal of Forest and Environmental Science
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    • 제34권4호
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    • pp.293-303
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    • 2018
  • Sumber Jaya (54,194 hectares) is a district in West Lampung, Indonesia, located at the upper part of Tulang Bawang watershed. This watershed is one major water resource for Lampung Province, but has become a focal point of discussion because of the widespread conversion of forestland to coffee plantations and human settlements which lead to environmental and hydrological problems. This research aimed to evaluate Sumber Jaya watershed affecting by rapid land use change using hydrological methods as a base for watershed management. Nested catchment structure consisted of eight sub-catchments was employed in this research to assess scaling issues of land use change impacts on rainfall-runoff connections. Six tipping bucket rain gages were installed on the hill slopes of each sub-catchment and Parshall flumes were installed at the outlets of each sub-catchment to monitor stream flow. First, unit hydrograph that expressed the relationship of rainfall and runoff was computed using IHACRES model. Second, unit hydrograph was also constructed from observations of input and response during several significant storms with approximately equal duration. The result showed that most of the storm flow from these catchments consisted of slow flow. A maximum of about 50% of the effective rainfall became quick flow, and only less than 10% of remaining effective rainfall which was routed as slow flow contributed to hydrograph peaks; the rest was stored. Also, comparing peak responses and recession rates on the hydrograph, storm flow discharge was generally increased slowly on the rising limb and decreased rapidly on the falling limb. These responses indicated the soils in these catchments were still able to hold and store rain water.