• Title/Summary/Keyword: 부산 강우특성

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Development of probability distribution for simulation of monthly characteristics of torrential rainfall events (집중호우사상의 월별 발생특성 모의를 위한 확률분포 개발)

  • Kim, Sang Ug;Kim, Hyeong Bae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.246-246
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    • 2016
  • 본 연구에서는 최근 기후변화로 인한 집중호우의 발생횟수의 경향을 확률적으로 분석함에 있어 1개월 동안 80 mm/day 이상의 강우사상을 집중호우로 정의하여, 대구 및 부산 강우관측소로부터 수집된 384개월 동안의 집중호우를 분석하였다. 집중호우 월별 발생횟수와 같은 형식의 자료의 확률적 분석은 대개 Poisson 분포 (POI)가 사용되나 자료에 포함된 0자료의 과잉은 확률분포를 왜곡시키는 문제를 발생시킨다. 본 연구에서는 이 문제를 개선하기 위하여 개발된 일반화 Poisson 확률분포 (GPD), 0-과잉 Poisson 확률분포 (ZIP), 0-과잉 일반화 Poisson 확률분포 (ZIGP), Bayesian 0-과잉 일반화 Poisson 확률분포 (Bayesian ZIGP)를 집중호우 자료에 적용하고, 5개 모형의 특성을 비교분석하였으며, Bayesian ZIGP 모형의 구축에 있어서는 정보적 사전분포를 사용함으로써 모형의 정확도를 개선하였다. 분석결과 분석하고자 하는 자료에 0이 과다하게 포함되어 있는 경우 POI 및 GPD 분포는 관측결과와는 다른 결과를 제시하여 적절한 모형으로 고려되지 못함을 알 수 있었다. 5가지 모형 중 정보적 사전분포를 탑재한 Bayesian ZIGP 모형이 가장 관측 자료와 유사한 결과를 도출하였으나 모형의 구축에 수반되는 실용적인 측면을 고려하면 ZIP 모형도 충분히 사용될 수 있는 모형으로 추천되었다.

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Development of Integrated Flood Analysis Platform in the EDC Smart City (EDC 스마트시티 홍수분석 통합플랫폼 개발)

  • Lee, Sung Hack;Koo, Bohn Hyun;Shim, Kyu Cheoul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.354-354
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    • 2020
  • 최근 기후변화로 인하여 극한 강우사상이 증가하고 있으며, 이에 대한 재해 위험도도 커지고 있는 추세이다. 서낙동강 지역에서는 부산 에코델타 스마트시티 조성사업이 2023년 완공을 목표로 개발을 진행 중이다. 부산 에코델타 스마트시티는 대저수문과 녹산수문이 각각 상/하류에 위치하고 있으며, 스마트시티가 위치한 좌안에는 평강천이 유입하고 우안에는 대감천, 예안천, 주중천, 신어천, 금천천, 조만강 및 지사천이 유입하고 있다. 스마트시티의 대저수문과 녹산수문 구간은 4월-10월 기간 동안 주변지역 농업용수 공급을 위하여 하계의 일시적인 방류를 제외하면 연중 담수가 이루어지는 전형적인 하천형 저수지의 특성을 가지고 있다. 낙동강의 홍수예보는 낙동강의 본류 구간만을 대상으로 수행하고 있으며, 스마트시티 구간은 주로 수질에 관한 연구가 수행되어 왔다. 그러나 스마트시티의 조성과 함께 서낙동강 구간의 홍수 영향 분석의 필요성이 제기되고 있으나 스마트시티 하천구간을 대상으로 한 홍수분석은 거의 수행된 바가 없다. 본 연구에서는 부산에코델타 스마트시티 구간을 대상으로 시나리오 기반의 홍수분석을 수행할 수 있는 웹기반 통합플랫폼을 개발하였다. 홍수분석에 필요한 자료는 에코델타 스마트시티 개발계획을 기반으로 단기유출모의, 하천흐름모의 및 도시유출모의를 연계하여 분석을 실시할 수 있도록 하였다. 홍수분석을 실시함에 있어 대상 하천구간의 농업용수이용, 수문조작 기준을 고려하였다. 단기유출모의는 홍수통제소의 유출분석을 위하여 사용되는 저류함수법을 적용하였으며, 하천흐름 모의는 미국 공병단에서 개발한 HEC-RAS모형을 적용하였으며, 하천흐름모형의 결과를 미국 환경청(EPA) 도시유출모형인 SWMM과 연계할 수 있도록 하였다. 대상 구간의 하천 취수량을 산정하기 위하여 일별 담수심추적법을 활용한 논 농업용수 수요량을 산정하여 반영하고, 농업용수 수요량에 따른 저수량과 수문운영 룰을 고려하였다. 또한 부산에코델타 스마트시티의 개발에 따른 상태 변화를 반영할 수 있도록 웹기반으로 사용자가 시나리오를 설정하고 각 모형의 입력자료와 매개변수를 조정할 수 있도록 하였다. 본 연구의 결과는 부산에코델타 스마트시티의 개발에 있어 홍수위험을 분석 및 평가하는데 활용될 수 있을 것으로 판단되며, 이를 활용하여 홍수에 안전한 부산에코델타 스마트시티를 만들 수 있을 것으로 기대된다.

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A study on the rainfall-runoff reduction efficiency on each design rainfall for the green infrastructure-baesd stormwater management (그린인프라 기반 빗물 관리를 위한 설계강우량별 강우-유출저감 효율성 분석 연구)

  • Kim, Byungsung;Kim, Jaemoon;Lee, Sangjin
    • Journal of Korea Water Resources Association
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    • v.55 no.8
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    • pp.613-621
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    • 2022
  • Due to the global climate change, the rainfall volume and frequency on the Korean Peninsula are predicted to increase at the end of the 21st century. In addition, impervious surface areas have increased due to rapid urbanization which has caused the urban water cycle to deteriorate. Green Infrastructure (GI) researches have been conducted to improve the water cycle soundness; the efficiency of this technique has been verified through various studies. However, there are still no suitable GI design guidelines for this aspect. Therefore, the rainfall scenarios are set up for each percentile (60, 70, 80, 90) based on the volume and frequency analysis using 10-year rainfall data (Busan Meteorological Station). After determining the GI areas for each scenario, the runoff reduction characteristics are analyzed based on Storm Water Management Model (SWMM) 10-year rainfall-runoff-simulations. The total runoff reduction efficiency for each GI areas are computed to have a range of 13.1~52.1%. As a results of the quantitative analysis, the design rainfall for GI is classified into the 80~85 percentile in the study site.

Analysis of outflow reduction effect of bioretention in small watersheds during short-term rainfall (단기강우 시 소유역내 식생저류지의 유출량 저감성능 분석)

  • Kim, Jaemoon;Baek, Jongseok;Kim, Byungsung;Kwon, Soonchul
    • Journal of Korea Water Resources Association
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    • v.56 no.12
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    • pp.855-869
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    • 2023
  • Low Impact Development (LID) technology has been attracting attention as a countermeasure to solve frequent flood damage in urban areas. LID involves recovery of the natural circulation system based on infiltration and storage capacity at the site of rainfall runoff, to protect the aquatic ecosystem from the effects of urbanization. Bioretention as an element of LID technology reduces outflow through storage and infiltration of storm water runoff, and minimizes the effects of non-point pollutants. Although LIDs are being studied extensively, the amount of quantitative research on small watersheds with bioretention has been inadequate. In this study, a bioretention model was constructed in a small watershed using Korea-Low Impact Development Model (K-LIDM), which was conducted quantitative hydrologic analysis. We anticipate that the results of the analysis will be used as reference data for future bioretention research related to watershed characteristics, vegetation type, and soil condition.

Analysis of runoff speed depending on the structure of stormwater pipe networks (우수관망 구조에 따른 유출 속도 분석)

  • Lee, Jinwoo;Chung, Gunhui
    • Journal of Korea Water Resources Association
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    • v.51 no.2
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    • pp.121-129
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    • 2018
  • Rainfall falling in the impervious area of the cities flows over the surface and into the stormwater pipe networks to be discharged from the catchment. Therefore, it is very important to determine the size of stormwater pipes based on the peak discharge to mitigate urban flood. Climate change causes the severe rainfall in the small area, then the peak rainfall can not be discharged due to the capacity of the stormwater pipes and causes the urban flood for the short time periods. To mitigate these type of flood, the large stormwater pipes have to be constructed. However, the economic factor is also very important to design the stormwater pipe networks. In this study, 4 urban catchments were selected from the frequently flooded cities. Rainfall data from Seoul and Busan weather stations were applied to calculate runoff from the catchments using SWMM model. The characteristics of the peak runoff were analyzed using linear regression model and the 95% confidence interval and the coefficient of variation was calculated. The drainage density was calculated and the runoff characteristics were analyzed. As a result, the drainage density were depended on the structure of stormwater pipe network whether the structures are dendritic or looped. As the drainage density become higher, the runoff could be predicted more accurately. it is because the possibility of flooding caused by the capacity of stormwater pipes is decreased when the drainage density is high. It would be very efficient if the structure of stormwater pipe network is considered when the network is designed.

Variability Analysis of Extreme Precipitation Events in Korea affected by Climate Change (기후변화에 따른 우리나라 강수 극치사상의 변동특성 분석)

  • Kim, Gwang-Seob;Kim, Jong-Pil
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.1610-1614
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    • 2010
  • 최근 기후변화로 인한 우리나라 호우일수(80mm이상/일)의 증가, 강우강도의 증가에 따른 개별 홍수에 의한 재해규모가 증가하고 있는 현실에서 전통적인 빈도해석기법을 이용한 설계 강우량 산정과 적용에는 한계가 있다. 그러나 우리나라에서는 아직도 비정상성을 고려한 빈도해석기법이 표준화되어 있지 않고 있으며, 전통적인 빈도해석기법에 의존하여 실무에 활용되고 있는 실정이다. 따라서 본 연구에서는 기후변화에 따른 우리나라 강수 극치사상의 변동특성을 분석하고자 하였다. 연구 대상지역으로 기상청에서 운영하는 기상관측소 중에서 90년 이상의 장기 강수자료가 구축되어 있는 서울, 부산, 인천, 대구, 강릉, 목포 등 여섯 곳을 선정하였다. 선정된 6개 기상관측소의 강수자료를 이용하여, 비모수적 선형추세분석기법인 Mann-Kendall 검정을 수행하였다. 본 연구를 통하여 얻어진 결과는 우리나라의 전통적인 설계 강우량 산정기법 개선에 대한 필요성 인식과 설계 강우량 산정에 대한 새로운 접근방향 제시와 이에 따른 제도적 개선 요구에 대한 기초자료로 활용될 수 있을 것으로 판단된다.

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The Study on the Development of Flood Prediction and Warning System at Ungaged Coastal Urban Area - On-Cheon Stream in Busan - (미계측 해안 도시 유역의 홍수예경보 시스템 구축 방법 검토 - 부산시 온천천 유역 대상 -)

  • Shin, Hyun-Suk;Park, Yong-Woon;Hong, Il-Pyo
    • Journal of Korea Water Resources Association
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    • v.40 no.6 s.179
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    • pp.447-458
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    • 2007
  • In this study, the coastal urban flood prediction and warning system based on HEC-RAS and SWMM were investigated to evaluate a watershed of On-Cheon stream in Busan which has characteristics of costal area cased by flooding of coastal urban areas. The basis of this study is a selection of various geological data from the numerical map that is a watershed of On-Cheon stream and computation of hydrologic GIS data. Thiessen method was used for analyzing of rainfall on the On-Cheon stream and 6th regression equation, which is Huff's Type II was time-distribution of rainfall. To evaluate the deployment of flood prediction and warning system, risk depth was used on the 3 selected areas. To find the threshold runoff for hydraulic analysis of stream, HEC-RAS was used and flood depth and threshold runoff was considered with the effect of tidal water level. To estimate urban flash flood trigger rainfall, PCSWMM 2002 was introduced for hydrologic analysis. Consequently, not only were the criteria of coastal urban flood prediction and warning system decided on the watershed of On-Cheon stream, but also the deployment flow charts of flood prediction and warning system and operation system was evaluated. This study indicates the criteria of flood prediction and warning system on the coastal areas and modeling methods with application of ArcView GIS, HEC-RAS and SWMM on the basin. For the future, flood prediction and warning system should be considered and developed to various basin cases to reduce natural flood disasters in coastal urban area.

An analysis of storage and runoff reduction characteristics using planter box in architectural LID system (건축형 LID 시스템에서 Planter Box를 활용한 저류 및 유출저감 특성 분석)

  • Kim, Byung Sung;Kim, Jae Moon;Baek, Jong Seok;Shin, Hyun Suk
    • Journal of Korea Water Resources Association
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    • v.52 no.3
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    • pp.219-226
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    • 2019
  • Recently, research about Low-Impact Development (LID) techniques has been expanded due to problems with the effects of climate change and urbanization that have been increasing. LID technology is used to control flood damage environmentally to reduce runoff and is reduce runoff on city also restore into previous water circulation system from present developed city. However, studies about quantitative data of LID techniques are insufficient. Therefore in this study, the Curve Number (CN) was calculated with the Planter Box, which is storage type LID technology to conduct the water circulation (infiltration, runoff, overflow) analysis. Rainfall intensity scenario (60.4 mm/hr, 83.1 mm/hr, 97.4 mm/hr, 108.2 mm/hr) about water circulation analysis of Planter Box is selected on the basis of probable rainfall intensity table. According to the experimental results, the storage rate of rainwater in Building Planter Box and Street Planter Box was 43.5% to 52.9% and 33.4% to 39%, respectively. In addition, CN value is estimated to 83 at the Planter box and the runoff reduction effect by applying Horton's infiltration capacity curve showed on 51% to 98%.

A Study on the Risk Evaluation of Subway Flood Inundation in Urban Area (도심지역 지하철 침수 위험도 평가에 관한 연구)

  • Kun-Hak Chun;Jong-Cheol Seo ;Hyeon-Gu Choi;Ji-Min Kim
    • Journal of Wetlands Research
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    • v.25 no.2
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    • pp.83-90
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    • 2023
  • Due to climate change, the occurrence of abnormal rainfall is increasing, and the intensity and scale of damage caused by heavy rain are increasing every year. In addition, as the frequency of heavy rains becomes more frequent, heavy rains often occur continuously, resulting in large flooding damage that has never been seen before in urban area. When near rivers and coastal areas are impermeable areas, the maximum flow increases rapidly as the rainfall intensity increases, so a comprehensive flood risk evaluation is needed considering the characteristics of the basin. In this study, the flood inundation risk evaluation was analyzed by giving scores on evaluation factors as a measure to prevent inundation in subway stations. Through the flood inundation risk evaluation process considering the comprehensive evaluation index, the flood risk evaluation was conducted on five urban railway stations with a large amount of traffic and floating population that had been inundated in the past. It is judged that by comprehensively analyzing this and establishing a inundation risk grade (grade 1 to 4) to establish a flood measure suitable for the risk grade.

Determination of Optimum Design Capacity of Bio-retention for Improvement of Urban Water Cycle (도시 물 순환 개선을 위한 생태저류지의 최적설계용량 결정)

  • Lee, Okjeong;Choi, Jeonghyeon;Lee, Jeonghoon;Kim, Sangdan
    • Korean Chemical Engineering Research
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    • v.55 no.6
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    • pp.745-753
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    • 2017
  • In this study, a design strategy is proposed to restore the distorted urban water cycle to the natural water cycle through the LID facility. This is accomplished by determining the optimal LID facility design capacity through which flow duration curves remain the same before and after urban development. A part of the Noksan National Industrial Complex in Busan was selected as the study area and EPA SWMM was constructed to simulate long-term stormwater for various land use scenarios and LID facility design capacity. In the case that the study area was assumed to be a forest area or an agricultural area before urban development, it was found that it was necessary to allocate 7.3% or 5.5% of the impervious area to the area of the bio-retention in order for the flow duration curve to remain the same as before urban development. As a result of the sensitivity analysis of the bio-retention design capacity according to regional rainfall characteristics, the design capacity of 3.8~5.5% of impervious area is needed for the development of agriculture area. Therefore, it can be seen that the optimum capacity can be significantly different according to regional rainfall characteristics. On the other hand, as a result of analyzing the sensitivity of the design capacity according to the variation of the depth of each layer constituting the bio-retention and the size of contributing catchment area, the sensitivity of the optimal design capacity with respect to the design specifications of the bio-retention and the size of contributing catchment area was not significant.