• 제목/요약/키워드: storm sewer

검색결과 122건 처리시간 0.017초

토사 적체에 따른 우수관의 성능불능확률 (Probability of performance failure of storm sewer according to accumulation of debris)

  • 권혁재
    • 상하수도학회지
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    • 제24권5호
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    • pp.509-517
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    • 2010
  • Statistical distribution of annual maximum rainfall intensity of 18 cities in Korea was analyzed and applied to the reliability model which can calculate the probability of performance failure of storm sewer. After the analysis, it was found that distribution of annual maximum rainfall intensity of 18 cities in Korea is well matched with Gumbel distribution. Rational equation was used to estimate the load and Manning's equation was used to estimate the capacity in reliability function to calculate the probability of performance failure of storm sewer. Reliability analysis was performed by developed model applying to the real storm sewer. It was found that probability of performance failure is abruptly increased if the diameter is smaller than certain size. Therefore, cleaning the inside of storm sewer to maintain the original diameter can be one of the best ways to reduce the probability of performance failure. In the present study, probability of performance failure according to accumulation of debris in storm sewer was calculated. It was found that increasing the amount of debris seriously decrease the capacity of storm sewer and significantly increase the probability of performance failure.

토사적체에 따른 우수관의 조도계수 변화와 성능불능확률 (Probability of Performance Failure and Change of Roughness Coefficient According to Accumulation of Debris in Storm Sewer)

  • 권혁재
    • 한국방재학회 논문집
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    • 제10권5호
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    • pp.135-141
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    • 2010
  • 본 연구에서는 우수관의 조도계수의 변화에 따른 성능불능확률을 산정할 수 있는 신뢰성 모형이 개발되었다. 조도계수는 우수관의 토사의 적체에 따라 다시 산정되었으며 새로운 조도계수를 이용하여 신뢰성 해석이 수행되었다. 해석결과, 우수관에 적체되는 토사의 깊이가 증가함에 따라 우수관의 용량은 크게 감소하고 성능불능확률은 크게 증가함을 알 수 있었다. 본 연구에서는 우수관에 적체되는 토사의 깊이에 따라 산정된 조도계수를 사용한 신뢰성 모형을 대구와 전주에 적용하였다. 원형 우수관에 적체된 토사의 깊이가 증가할수록 우수관의 조도계수는 커지고 성능불능확률도 역시 크게 증가 하는 것을 알 수 있었다.

도시지역의 최적 배수관망 설계를 위한 Risk Safety Factor 관계의 설정 (Derivation of the Risk-Safety Factor Relation for Optimal Storm Sewer Design in Urban Area)

  • 김문모;이원환;조원철
    • 대한토목학회논문집
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    • 제12권4호
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    • pp.129-134
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    • 1992
  • 본 논문은 도시유역의 최적 배수관망설계를 위한 위험도-안전도계수 관계를 설정하는 것이다. 배수관망의 신뢰도 분석을 위하여는 하수관의 용량과 하중을 결정하는 식을 구성하는 여러가지 매개변수들의 불확실성이 고려되어야 하며, 이에 따른 위험도를 결정하게 된다. 본 연구에서는 신뢰도 분석기법을 유역면적 $381,000m^2$인 성산 유수지 유역에 적용하였다. 하수관망의 용량을 결정하는 식으로는 Darcy-Weisbach식을, 하중을 결정하는 식으로는 합리식을 사용하였으며, 하수관의 용량과 설계유량과의 비로 나타나는 안전도계수를 구하여 이를 하수관망의 위험도와 상관시켰다. 이에 따라 재현기간별 위험도-안전도계수를 얻었으며, 이는 배수관망의 최적설계에 이용될 수 있다.

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줌카메라를 활용한 빗물받이 연결관의 도로함몰 리스크 분석 (Risk analysis of road cave-in of storm sewer lateral using zoom camera)

  • 한상종;황환국
    • 상하수도학회지
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    • 제28권6호
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    • pp.681-690
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    • 2014
  • It is known that sewer problems are the major causes of road cave-in. The objective of this study is to analyze the risk of road cave-in due to storm sewer laterals. We investigated 174 storm sewer laterals using a zoom camera at O-dong area in Seoul. The causes of road cave-in were classified into five cases: breakage of rigid pipe, deformation of flexible pipe, out of pipeline alignment, changing pipe material or changing pipe diameter, and a poor linkage between lateral and sewer. In addition, all defects were sorted into five grades based on the severity rating at storm sewer laterals. In this study, the most fragile pipe materials were found to be concrete pipe and polyethylene pipe, which recorded 2.3 and 1.69 defect rates. With regard to the causes of road cave-in, deformation of flexible pipe has a large influence on road cave-in at present. On a long-term basis, the two causes, out of pipeline alignment and a poor linkage between lateral and sewer, could have more influence on road cave-in.

파괴확률과 다중파괴유형을 이용한 우수관의 안전성 분석 (Safety Analysis of Storm Sewer Using Probability of Failure and Multiple Failure Mode)

  • 권혁재;이철응
    • 한국수자원학회논문집
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    • 제43권11호
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    • pp.967-976
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    • 2010
  • 우수관의 성능이 한계상태(performance limit state)에 도달할 확률을 정량적으로 산정할 수 있는 FORM(First-Order Reliability Model)의 AFDA(Approximate Full Distribution Approach) 신뢰성 모형을 개발하였다. 우수관망에서 각각의 관으로 유입하는 유량이 그 관의 허용 가능 배출량을 초과하여 성능한계상태에 도달할 때 이를 파괴상태(failure state)라 정의하여 신뢰함수를 수립하였다. 우수관거로의 유입량은 합리식, 유출량은 Manning의 공식을 적용하였다. 또한 신뢰성 해석을 위한 관련 확률변수들에 대한 통계적 특성과 분포함수에 대한 해석이 수행되었다. 강우자료의 불확실성 해석에서 우리나라 여러 중소도시에 대한 연 최대강우강도의 확률분포가 Gumbel 극치분포함수와 일치함을 확인하였다. 개발된 신뢰성 모형을 Y자형 우수관망에 적용하여 성능한계상태가 발생할 확률, 즉 파괴확률(probability of failure)을 정량적으로 산정하였다. Manning의 공식을 이용하여 우수관의 직경 변화에 따른 파괴확률의 거동특성을 분석하였다. 특히 문경과 대전의 50년 재현기간을 갖는 설계 강우강도에 대한 우수관의 파괴확률을 산정한 결과에 의하면, 관의 직경이 특정수치 이하일 경우 파괴확률이 급격히 커지는 것을 확인할 수 있었다. 이는 실제 우수관의 유효직경이 설계직경에 가깝도록 항상 관내 불순물을 제거하는 것이 파괴확률을 줄이는 최선의 방법임을 의미하는 것이다. 또한 우수관 시스템의 경우 여러 개의 관이 모여 하나의 관으로 흘러 들어가는 경우가 많으며 이 경우 다중파괴유형(multiple failure mode)을 적용하여 시스템이 파괴상태에 도달할 확률을 정량적으로 산정하였다. 본 연구에서 개발된 신뢰성 모형은 우수관의 운용, 관리, 감독은 물론 설계에 활용이 가능 할 것이다.

지표격자해상도 및 우수관망 간소화 수준에 따른 도시홍수 예측 성능검토 (Performance Analysis of Grid Resolution and Storm Sewage Network for Urban Flood Forecasting)

  • 심상보;김형준
    • 한국안전학회지
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    • 제39권1호
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    • pp.70-81
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    • 2024
  • With heavy rainfall due to extreme weather causing increasing damage, the importance of urban flood forecasting continues to grow. To forecast urban flooding accurately and promptly, a sewer network and surface grid with appropriate detail are necessary. However, for urban areas with complex storm sewer networks and terrain structures, high-resolution grids and detailed networks can significantly prolong the analysis. Therefore, determining an appropriate level of network simplification and a suitable surface grid resolution is essential to secure the golden time for urban flood forecasting. In this study, InfoWorks ICM, a software program capable of 1D-2D coupled simulation, was used to examine urban flood forecasting performance for storm sewer networks with various levels of simplification and different surface grid resolutions. The inundation depth, inundation area, and simulation time were analyzed for each simplification level. Based on the analysis, the simulation time was reduced by up to 65% upon simplifying the storm sewer networks and by up to 96% depending on the surface grid resolution; further, the inundation area was overestimated as the grid resolution increased. This study provides insights into optimizing the simplification level and surface grid resolution for storm sewer networks to ensure efficient and accurate urban flood forecasting.

기존 도시의 홍수저감을 위한 우수관거 배수용량 증대 및 지하 빗물저류조 설치효과 비교 분석 (Comparative Analysis of the Storm Sewer Expansion Methodology and Underground Rainwater Storage Tanks for Urban Flood Control)

  • 이호열;서규태;이택순
    • 한국물환경학회지
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    • 제29권6호
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    • pp.754-761
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    • 2013
  • Urban floods are usually caused by the lack of drainage capacity. Hence, sewer capacity expansion methodology by replacing small pipes with bigger ones is primarily applied as a flood control measure. However, this approach is often unreasonable because of the costs and time involved. Thus, the installation of underground rainwater storage tanks with the two advantages of flood control and water conservation is proposed. This study compared the effectiveness of flood control by both the sewer expansion methodology and rainwater storage tanks using the Storm Water Management Model. Three cases were simulated in this study. The first case analyzed flood reduction by the storm sewer expansion methodology. The simulation results indicate that the overflow volume from manholes was reduced by 49% with this methodology. The second case analyzed flood reduction by installation of rainwater storage tanks. The simulation results indicate that the overflow volume was reduced by 62%. However, these two cases could not prevent urban floods completely. Hence, the third case analyzed the joint application of the storm sewer expansion methodology and rainwater storage tanks. In this simulation, flooding did not occur. Consequently, the results of this study clearly show that underground rainwater storage tanks are more effective for flood control than capacity expansion of storm sewer. Furthermore, the joint application of these two flood control measures is more effective than their separate application.

불완전 분류식 하수처리구역의 강우에 의한 하수도시설의 침입수/유입수 영향 분석 (Effect of infiltration/inflow by rainfall for sewerage facilities in the area with partially separate sewer system)

  • 신정섭;한상원;육준수;이춘구;강선홍
    • 상하수도학회지
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    • 제33권3호
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    • pp.177-190
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    • 2019
  • The purpose of this study was to analyze the effects of sewerage facilities through I/I analysis by rainfall by selecting areas where storm overflow diverging chamber is remained due to the non-maintenance drainage equipment when the sewerage system was reconstructed as a separate sewer system. Research has shown that wet weather flow(WWF) increased from 106.2% to 154.8% compared to dry weather flow(DWF) in intercepting sewers, and that the WWF increased from 122.4% to 257.6% in comparison to DWF in storm overflow diverging chamber. As a result, owing to storm overflow diverging chamber of partially separate sewer system with untreated tributary of sewage treatment plant, rainfall-derived infiltration/inflow(RDII) has been analyzed 2.7 times higher than the areas without storm overflow diverging chamber. Meanwhile, infiltration quantity of this study area was relatively higher than that of other study areas. Therefore, it is necessary to reduce infiltration quantity through sewer pipe maintenance nearby river. Drainage equipment maintenance should be performed not to operate storm overflow diverging chamber in order to handle the appropriate sewage treatment plant capacity for rainfall because it is also expected that RDII due to rain will occur after maintenance. In conclusion, it is necessary to recognize aRDII(allowance of rainfall-derived infiltration/inflow) and to be reflected it on sewage treatment plant capacity because aRDII can occur even after maintenance to the complete separate sewer system.

우수관의 설계를 위한 신뢰성해석기법의 적용 (The application of reliability analysis for the design of storm sewer)

  • 권혁재;이경제
    • 한국수자원학회논문집
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    • 제51권10호
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    • pp.887-893
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    • 2018
  • 본 연구에서는 신뢰성해석기법을 이용하여 우수관에 대한 최적설계기법을 제시하였다. 최근 빈번히 일어나고 있는 국지성호우에 대해 기존의 결정론적 설계기법으로는 우수관의 용량을 초과하여 도시침수가 일어나기 쉽다. 이러한 문제를 해결하기 위해서는 우수관의 설계변수들을 확률변수로 인식하는 추계학적 기법이 필요하다. 이를 위해서 본 연구에서는 FORM (First Order Reliability Method)을 사용하여 우수관의 신뢰성해석모형을 개발하였다. 개발된 신뢰성해석기법은 5개 지역의 실제 구축된 우수관에 적용하여 안전도를 분석하고 공사비증가에 따른 안전도의 변화를 분석하였다. 다섯 개 지역의 빈도별 강우강도를 분석하고 신뢰성해석을 통해 우수관의 용량초과확률을 정량적으로 산정할 수 있었다.

강우 확률년수의 설정이 우수관거 설계에 미치는 영향 (Effect of Rainfall Design Frequency Determination on the Design of Storm Sewer System)

  • 이철규;현인환;독고석;김형준
    • 상하수도학회지
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    • 제19권5호
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    • pp.647-654
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    • 2005
  • Recently, the economic losses caused by inundation are increasing due to the urbanization and industrialization, i.e., intensive land utilization and concentration of population and properties. It is regarded that the role of the storm sewer systems in urban areas becomes more important as one of the effective countermeasures for reducing the inundation losses. In this study, the effects of rainfall design frequency enhancement on the construction cost of the storm sewer systems were analyzed by increasing the design frequency from the present design frequency of the sewer systems, which is 5~10 years, to 15 years, 20 years and 30 years. The change rate functions of the design discharge and construction cost based on the various design frequencies were derived by regression analysis. According to the analysis, change the rate of design discharge at 15, 20, 30 years rainfall design frequencies were increased by 10%, 17.1%, and 27.2%, respectively, when compared to that at 10 year frequency. Furthermore, it was found that by increasing the design frequency from 10 years to 15 years, 20 years and 30 years, the construction costs were increased by 5.0%, 8.0% and 12.4%, respectively. Finally, their reliabilities need to be tested by applying the rate functions to the real storm sewer districts.