• Title/Summary/Keyword: Huff 분포

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The Estimations of A Conceptual Time Distribution of Rainfall and Design Flood (강우의 개념적 시간분포와 설계홍수량 산정에 관한 연구)

  • Lee Byung Woon;Jang Dae Won;Kim Hung Soo;Seoh Byung Ha
    • Proceedings of the Korea Water Resources Association Conference
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    • 2005.05b
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    • pp.937-942
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    • 2005
  • It is necessary to estimate the runoff hydrograph and peak flood discharge using law of probability for synthetic flood control policy and design of hydraulic structures. Rainfall analysis is needed in the process of peak flood discharge estimation and the time distribution of a design rainfall is a very important process in the analysis. In this study, we estimate design flood for a small urban basin and a rural basin of medium scale which have different travel times. The Huff method is widely used in Korea for the time distribution of design rainfall to estimate design flood. So, we use Huff method and a conceptual method which is suggested in this study for the comparative purpose. The 100-year frequency rainfall is used to estimate design flood for each basin and the design flood is compared with the existing design flood. As the result, the design flood is overestimated $14.6m^3/sec$ by Huff method and is underestimated $70.9m^3/sec$ by a conceptual method for the rural basin. For the small urban basin, the design flood is excessively overestimated $294.65m^3/sec$ by Huff method and is overestimated $173m^3/sec$ by a conceptual method. The reason of excessive overestimation by Huff method in the small urban basin is that the increased rate of rainfall intensity according to the decrease of duration is large and the duration exceeds the time of concentration when the increased rainfall intensity is concentrated in a quartile. Therefore, we suggested a conceptual method for the time distribution of design rainfall by considering the rainless period and duration. Especially, the conceptual method might be useful for the small urban basin with short concentration time which the design flood is overestimated by Huff method.

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Capacity Analysis of Civil Defense Shelter and Optimal Positioning Using Spatial-Database and Genetic Algorithm (공간데이터베이스와 유전자 알고리즘을 활용한 민방위대피소 수용 능력 분석 및 최적 위치 선정)

  • Yoo, Su Hong;Bae, Jun Su;Lee, Ji Sang;Sohn, Hong Gyoo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.39 no.6
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    • pp.955-963
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    • 2019
  • Currently, the establishment and management of civil defense shelters are under the initiative of the government and local governments to protect the lives of citizens. In the future, there is a need for efficient civil defense shelters operation through the expansion of general shelters, including designated dedicated shelters. Therefore, it is more efficient to consider the distribution of residents and the location of access to shelters, not the quantitative operation considering only the number of residents. This study uses genetic algorithms and Huff gravity model based on census output data, building data, and road network information to understand the distribution of inhabitants more precisely than existing administrative district data. In addition, the spatial- database was used for efficient data management and fast processing, and if this study is improved, it can be used as a basis for the selection and improvement of general shelters positioning for a wider area.

Rainfall analysis considering watershed characteristics and temporal-spatial characteristics of heavy rainfall (집중호우의 시·공간적 특성과 유역특성을 고려한 강우분석 연구)

  • Kim, Min-Seok;Choi, Ji-Hyeok;Moon, Young-Il
    • Journal of Korea Water Resources Association
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    • v.51 no.8
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    • pp.739-745
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    • 2018
  • Recently, the incidence of heavy rainfall is increasing. Therefore, a rainfall analysis should be performed considering increasing frequency. The current rainfall analysis for hydrologic design use the hourly rainfall data of ASOS with a density of 36 km on the Korean Peninsula. Therefore, medium and small scale watershed included Thiessen network at the same rainfall point are analyzed with the same design rainfall and time distribution. This causes problem that the watershed characteristics can not be considered. In addition, there is a problem that the temporal-spatial change of the heavy rainfall occurring in the range of 10~20 km can not be considered. In this study, Author estimated design rainfall considering heavy rainfall using minutely rainfall data of AWS, which are relatively dense than ASOS. Also, author analyzed the time distribution and runoff of each case to estimate the huff's method suitable for the watershed. The research result will contribute to the estimation of the design hydrologic data considering the heavy rainfall and watershed characteristics.

A Study on the Variation of the Critical Duration According to Hydrologic Characteristics in Urban Area (도시유역에서 수문학적 특성에 따른 임계지속기간의 변화 연구)

  • Lee, Jung-Sik;Shin, Chang-Dong
    • Journal of the Korean Society of Hazard Mitigation
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    • v.5 no.3 s.18
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    • pp.29-39
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    • 2005
  • The objective of this study is to analyze the relation of critical duration according to hydrologic characteristics in urban areas. RRL, ILLUDAS, SWMM, and SMADA urban runoff models were applied to the Seongnae and Banpo watershed and experiment area of the Dong-Eui University. Also, hydrologic characteristics such as temporal pattern of rainfall, rainfall intensity formula, antecedent moisture condition, return period, and urban runoff model were used to simulate the critical duration of the test areas. The results of this study are as follows; (1) The type of temporal pattern of rainfall which causes maximum peak discharge in urban area has resulted in Huff's 4th quartile distribution. (2) The critical duration in urban areas were not influenced by hydrological factors except urban runoff model. (3) Peak discharge and critical duration in urban areas were influenced by the urban runoff model, and the SWMM model using Huff's 4th quartile distribution shows maximum critical duration.

확률강우량과 실강우에 의한 빈도홍수량 비교

  • Jo, Deok-Jun;Lee, Jung-Ho;Kim, Myoung-Su;Kim, Joong-Hoon
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.829-833
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    • 2004
  • 도시지역의 홍수량 산정은 대부분 유출량의 관측기록이 없어서 홍수빈도해석은 물론 강우-유출 모형의 매개변수 검증도 불가하다. 따라서 확률강우량을 Huff 법 등으로 시간분포 시켜 강우-유출모형에 의해 산정된 유출량을 검정절차 없이 설계홍수량으로 채택하고 있다. 본 연구에서는 1961년부터 2002년간의 서울 관측소의 시우량 자료를 각각 Huff 법에 의하여 시간분포 시킨후 강우-유출모형에 의하여 유출수문곡선을 모의하였으며, 모의된 42개년의 첨두 홍수량을 빈도 해석하여 빈도별 확률홍수량을 산정하였다. 유출량의 빈도해석으로 산정된 확률홍수량은 년 최대 강우량을 빈도해석 하여 강우-유출모형에 의하여 모의된 유출량과 비교, 분석하는 방법으로 국내 실무에서 적용하는 홍수량 산정법의 간접 검증법을 제시하였다. 적용결과 대상유역에서의 확률강우량에 의한 유출량은 모의 유출량을 유출 빈도해석 하여 결정된 확률유출량보다 전반적으로 크게 산정되어 서로 상이한 결과가 도출되었다.

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Evaluation of Urban Flood Area Considering by Condition Rainfall Analysis (강우 조건별 영향을 고려한 도시지역의 침수범위 평가)

  • Keum, Ho Jun;Lee, Kyeong Wook;Kim, Byung Hyun;Kim, Hyeon Il;Han, Kun Yeun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.49-49
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    • 2017
  • 최근 극한 홍수의 발생에 따른 내수배제 불량으로 인한 도시지역의 침수로 매년 많은 인명과 재산상의 손실이 크게 증가하고 있으며, 홍수피해 저감 및 복구대책으로 많은 국비가 지원되고 있으나 아직까지 예방보다는 복구비에 치중하고 있는 실정이다. 이에 본 연구에서는 도시지역에 시간 당 강우의 영향력에 대한 평가를 실시하여 상습적으로 일어나는 내수재해를 방지하고 자한다. 이를 위하여 서울시 저지대를 기준으로 상습침수 배수구역을 선택하여 1차원 SWMM모형을 구축하였다. 이때, 가장 중요한 인자 중 하나인 강우의 시간분포는 도시별 유역 규모 및 유출특성, 강우강도 특성 등에 따라 상이한 결과를 보일 여지가 다분하여 실제 침수를 일으킨 강우와 유사한 분포를 찾기 매우 어려운 실정이며, 이를 반영하기 위하여 Huff분포 모든 분위를 사용하여 SWMM 도시침수 해석을 실시하였다. 실시한 결과 맨홀의 월류량을 2차원 해석 입력자료로 사용하였으며, 2차원 해석 결과를 분위별 침수범위를 GIS를 이용하여 중첩시켜 상습 침수구역을 제시하였다. 본 연구 결과를 바탕으로 강우강도의 조건에 따라서 관로를 통하여 월류되는 시작 지점 및 그 지점을 통하여 맨홀에서의 월류량을 대략적 알 수 있었다. 또한, 능동적이며 준 실시간적인 대피지도와 우회도로설정 의사결정에 도움이 될 것으로 판단된다.

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Variation of design flood according to the temporal resolution and periods of rainfall (강우의 시간해상도와 자료기간에 따른 설계홍수량의 변동성)

  • Kim, Min-Seok;Lee, Jung-Hwan;Moon, Young-Il
    • Journal of Korea Water Resources Association
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    • v.51 no.7
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    • pp.599-606
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    • 2018
  • Most hydrological analysis such as probability rainfall and rainfall time distributions have typically carried out based on hourly rainfall and rainfall - runoff analysis have carried out by applying different periods of rainfall time distribution and probability rainfall. In this study, to quantify the change of design flood due to the data type (hourly and minutely rainfall data) and the probability rainfall and application of different data period to the rainfall time distribution, probability rainfall is calculated by point frequency analysis according to data type and period and rainfall time distribution was calculated by Huff's quartile distributions. In addition, the change analysis of design flood was carried out by rainfall - runoff analysis applying different data periods of design rainfall time distribution. and probability rainfall. As a result, rainfall analysis using minute rainfall data was more accurate and effective than using hourly rainfall data. And the design flood calculated by applying different data period of rainfall time distribution and probability rainfall made a large difference than by applying different data type. It is expected that this will contribute to the hydrological analysis using minutely rainfall.

An Analysis on Hydrologic Characteristics of Design Rainfall for the Design of Hydraulic Structure (수공구조물 설계를 위한 설계강우의 수문학적 특성 분석)

  • Lee, Jeong-Sik;Lee, Jae-Jun;Park, Jong-Yeong
    • Journal of Korea Water Resources Association
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    • v.34 no.1
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    • pp.67-80
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    • 2001
  • This study is to propose temporal pattern of design rainfall which causes maximum peak discharge and to analyze the variation in peak discharge according to design rainfall durations. In this study, the Mononobe, the Yen and Chow triangular, the Huff's 4th quartiles and the Keifer and Chu methods are applied to estimate the proper temporal pattern of design rainfall and three rainfall-runoff models such as SCS, Nakayasu, and Clark methods are used to estimate the runoff hydrograph. And to examine the variability of peak discharge, the hydrologic characteristics from the rainfall-runoff models to which uniform rainfall intensity is applied are used as the standard values. The type of temporal pattern of design rainfall which causes maximum peak discharge in both of the watersheds and the rainfall-runoff models has resulted in Yen and Chow distribution method with the dimensionless vague of 0.75. On the basis of determined temporal pattern, the examination of the variability of peak discharge according to design rainfall durations shows that design rainfall duration varies greatly with the types of probable intensity formula, and the variation of peak discharge is more affected by the types of probable intensity formula and I-D-F currie than rainfall-runoff models.

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Analysis of the Influence Parameters for Flood Discharge Computation in Small to Medium Sized Watershed in Gyeonggi-Do (중.소하천 유역의 홍수량산정 영향 인자 분석 - 경기도 하천을 중심으로 -)

  • Park, Sun-Hee;Won, Jin-Young;Song, Ju-Il;Yoon, Sei-Eui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1401-1405
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    • 2009
  • 현재 하천기본계획은 10년 주기로 수립되고 있다. 일반적으로 실무에서는 과거에 계산된 홍수량과 최근에 계산된 홍수량을 비교하여 큰 값을 설계홍수량으로 채택하는 경향이 있다. 동일한 유역에 대해서는 도시화와 산업화로 인하여 과거에 계산된 홍수량보다 최근에 계산된 홍수량이 대부분 클 것으로 예측되었으나, 실제로는 증가뿐만 아니라 감소하는 결과도 발견되고 있다. 따라서 본 연구에서는 이 증감의 원인을 분석하여 합리적인 설계홍수량의 채택에 기초자료를 제공하고자 한다. 이를 위하여 경기도 중 소하천 6개 유역을 대상으로하여 수립된 하천기본계획 보고서를 기초자료로 강우자료의 채택방법(임의시간), 면적감소계수(ARF) 적용, 강우의 시간분포형 변화(Huff 4분위법), 유출곡선지수(CN) 변화, 도달시간공식의 변화, 임계지속시간의 적용에 따른 홍수량의 변화를 분석하였다. 분석 결과 홍수량 산정 시 임계지속시간 적용은 평균 60%, 유출곡선지수(CN)의 증가는 평균 10%, 강우자료 임의시간 채택은 평균 21%정도 홍수량을 증가시키는 것으로 나타났다. 반면에 홍수량을 감소시키는 인자는 강우의 시간분포형을 Huff의 4분위법으로 하였을 때 평균 62%, ARF를 적용 했을 경우 평균 5%정도 감소하는 것으로 분석되었다. 도달시간의 변화는 홍수량 증감에 큰 영향이 없는 것으로 나타났다. 홍수량 증가에 가장 크게 영향을 미치는 인자는 임계지속시간의 적용여부였고, 가장 큰 감소원인으로는 강우 시간분포형의 변화였다.

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The Analysis of Critical Duration of uncontrolled single detention facility in Small Catchment (소규모 유역에서 자연방류형 단일저류지의 임계지속기간 분석)

  • Park, Jong-Young;Shin, Chang-Dong;Lee, Jung-Sik
    • Journal of the Korean Society of Hazard Mitigation
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    • v.5 no.2 s.17
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    • pp.17-28
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    • 2005
  • The objective of this study is to evaluate the critical duration between detention facility and flood control facility of small size catchment. 4 small size catchments are applied for hydrological analysis and rainfall excess is computed by using the NRCS Runoff Curve Number method. The critical duration of detention facility and flood control facility is evaluated using the concept of allowable release rate. The conclusions studied in this study are as follows; (1) The type of temporal pattern of design rainfall which causes maximum storage ratio has resulted in Huff's 2 quartile in case of the use of the concept of allowable release rate. (2) Based on (1) of conclusion, the critical durations of flood control facility are similar to those of detention facility, which is used for uncontrolled single detention pond.