• 제목/요약/키워드: sewer overflow

검색결과 58건 처리시간 0.026초

하수저류시설 타당성 분석 연구 (Feasibility Study on Installing a Multi-functional Storage Facility)

  • 류재나;오재일;이경용
    • 상하수도학회지
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    • 제25권6호
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    • pp.935-947
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    • 2011
  • In the era of climate change, the feasibility of a 'multi-functional storage facility' was evaluated in terms of various key performance indices such as flooding prevention effects, urban pollution reduction effects, and rainwater harvesting effects. As a result, the Korea Ministry of Environment introduced a new concept of 'multi-functional storage facility' for sewer flooding prevention and urban non-point pollution reduction. Prior to introducing these infrastructure (a large underground storage facility), the more details were needed to be examined carefully in all of technical aspects of construction and management. It was also well known that the validity of installation of 'multi-functional storage facility' was sometimes weakened because of a low B/C ratio.

하수의 화학적 응집조건 및 응집제별 응집효율 분석 (Chemical Coagulation Conditions and Efficiency of Sewage with Al(III) and Fe(III) Coagulants)

  • 박준규;전동걸;박노백;전항배
    • 상하수도학회지
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    • 제24권4호
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    • pp.463-474
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    • 2010
  • In this study, chemical coagulation conditions for treating combined sewer overflow(CSO) occurred during rainy season were evaluated by jar tests with aluminum sulfate[$Al_2(SO_4)_3{\cdot}17H_2O$] and ferric chloride[$FeCl_3{\cdot}6H_2O$]. The raw domestic sewage sampled from the primary sedimentation tank at a local sewage treatment plant was filtered through $150{\mu}m$ sieve before using. Point of zero charge(PZC) for various dose of aluminum sulfate occurred at pH 5.8-6.5, while for ferric chloride occurred at pH 5.3-6.0 in term of streaming current(SC) values. Charge neutralization ability of aluminum sulfate was bigger than that of ferric chloride. Optimum pH and dose of aluminum sulfate and ferric chloride were 6.2, 0.438mM and 5.8, 0.925mM, respectively. Removal efficiencies of TCOD, turbidity, SS and TP were 75, 97, 95, 96% with aluminum sulfate and 74, 96, 98, 99% with ferric chloride at their optimum coagulation conditions. More efficient removal of SS, TP and small particles was possible with ferric chloride at optimum coagulation conditions. Both SC values and COD removal started to increase where soluble phosphorus was completely removed.

하수관망의 간소화가 도시침수 모의에 미치는 영향 분석에 관한 연구 (Study on the influence of sewer network simplification on urban inundation modelling results)

  • 이승수;;정관수;김연수
    • 한국수자원학회논문집
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    • 제51권4호
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    • pp.347-354
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    • 2018
  • 도시유역에서 발생한 유출은 지표면뿐만 아니라 하수관망을 통해 배수되며, 도시침수 모의 수행시 하수관망을 수문학적 배수 시스템의 한 구성요로서 고려하는 것은 매우 중요하다. 그러나 도시 침수 모의를 수행하는 대부분의 연구자들이 적절한 기준에 준하지 않고 직관적으로 하수관망을 단순화시켜 모의를 수행하는 실정이다. 따라서 본 연구에서는 1D-2D 결합 도시침수 해석 모형을 이용하여 수지상 구조에 구분법에 기반하여 단순화된 하수관망의 도시침수 해석 결과에 미치는 영향을 분석하였다. 하수관망 해석을 위한 1차원 모델은 Lee et al. (2017)에 의해 소개된 모형으로서 지표면과 하수관망 사이의 유입과 역류를 동시에 모의할 수 있고, 2차원 지표면 모델은 불규칙 삼각망을 이용하여 지표수 흐름을 모의하며 1차원 하수관망 해석모형과 연계되어 도시침수를 모의할 수 있다. 하수관망은 수지상 구조 구분법에 기반하여 2차, 3차 그리고 단순화 하지 않은 경우로 구분할 수 있으며, 구분된 각 하수관망은 서울시 사당역 인근에 많은 침수 피해를 발생시킨 2011년 7월 27일 강우 사상에 적용하여 제안된 방법의 적용성을 평가하였다. 모든 케이스에 대하여 침수면적, 지표면에서 하수관망으로의 유입 유량, 하수관망에서 지표면으로의 역류 유량 등을 비교하였으며, 마지막으로 하수관망 단순화를 위한 적절한 기준 제시에 대한 논의를 수행하였다.

오염부하 물질수지 분석을 통한 합류식 하수관거 적정 차집용량 결정(I) -오염부하 물질수지 분석- (Determination of Interception Flow by Pollution Load Budget Analysis in Combined Sewer Watershed - Analysis of Pollution Load Budget in Watershed -)

  • 이두진;김주환;우형민;안효원
    • 상하수도학회지
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    • 제19권5호
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    • pp.547-556
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    • 2005
  • The objective of this study is to obtain adequate intercepting flow during wet weather conditions in combined sewer system. Two study sites are selected under considering different population density, one is developed area with heavy urbanization. Another is recently developing area. In the analysis of field investigation, SS was most significant in initial flushing effects compared with other factors and showed the result with the order of COD, TP, TN. As compared with event mean concentration(EMC) of runoff, BOD, TN and TP showed high concentrations in wide area with relatively large population density. It is by the reason that much pollution load was discharged to receiving water from urbanized area during wet period. According to results of storm-water modeling, 53% of total COD and 52% of total SS pollution load were discharged to receiving water by overflow than intercepting capacity in middle population density site. Also, in the urbanized area, pollution load was discharged to receiving water by 49% of total COD and 77% of total SS. These results can be applied to setup for pollution load flow(budget) generation, collection, treatment and discharging in order to obtain adequate intercepting flow.

합류식하수도 월류수 관리를 위한 초기우수 저류조 설계방안 연구 (A Study on First Flush Storage Tank Design for Combined Sewer Overflows (CSOs) Control)

  • 손봉호;어성욱
    • 한국물환경학회지
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    • 제27권5호
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    • pp.654-660
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    • 2011
  • One of the best way to control Combined Sewer Overflow (CSO) is proposed to construct first flush storage tank. But there is little known parameters for optimum design of these facilities. This study was conducted to get optimum design parameters for a first flush storage tank construction. The optimization of the tank is generally based upon some measure of SS(Suspended Solid) mass holding efficiency. Water quality deterioration of receiving water body happened right after first time occurring rainfall in dry weather seasons. So, design rainfall intensity is used at 2 mm/hr for peak of monthly average intensities of dry seasons. The capacities for each evaluated catchment are designed from 14.4 min to 16.1 min HRT of CSOs flow at design rainfall intensity. Owing to all storage tanks are connected to interception sewer having a redundancy, the suggested volume could be cut down.

합류식 하수관거 월류수 처리를 위한 와류형 분리장치의 최적 운전조건 (Optimal Operating Condition of Vortex Separator for Combined Sewer Overflows Treatment)

  • 한정균;주재영;이범준;나지훈;박철휘
    • 상하수도학회지
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    • 제23권5호
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    • pp.557-564
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    • 2009
  • A combined sewer system can quickly drain both storm water and sewage, improve the living environment and resolve flood measures. A combined sewer system is much superior to separate sewer system in reduction of the non-point source pollutant load. However, during rainfall. it is impossible in time, space and economic terms to cope with the entire volume of storm water. A sewage system that exceeds the capacity of the sewer facilities drain into the river mixed with storm-water. In addition, high concentration of CSOs by first-flush increase pollution load and reduce treatment efficiency in sewage treatment plant. The aim of this study was to develope a processing unit for the removal of high CSOs concentrations in relation to water quality during rainfall events in a combined sewer. The most suitable operational design for processing facilities under various conditions was also determined. With a designed discharge of 19.89 m/min, the removal efficiency was good, without excessive overflow, but it was less effective in relation to underflow, and decreased with decreasing particle size and specific gravity. It was necessary to lessen radius of vortex separator for increasing inlet velocity in optimum range for efficient performance, and removal efficiency was considered to high because of rotation increases through enlargement of comparing height of vortex separator in diameter. By distribution of influent particle size, the actual turbulent flow and experimental results was a little different from the theoretical removal efficiency due to turbulent effect in device.

청천시 오수량을 고려한 합류식 하수도 소류력 설계법과 이를 활용한 하수관거 개보수방안 (A combined sewer design method using tractive force considering wastewater flow on non-rainy days and its application for improvement methods of sewer)

  • 지현욱;유성수;송호면;강정희
    • 상하수도학회지
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    • 제34권3호
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    • pp.211-220
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    • 2020
  • When domestic sewage and rainwater runoff are discharged into a single sewer pipe, it is called a "combined sewer system." The sewage design standards in Korea specify the flow velocity based only on the volume of rainfall; therefore, sedimentation occurs on non-rainy days owing to the reduced flow rate and velocity. This sedimentation reduces the discharge capacity, causes unpleasant odors, and exacerbates the problem of combined sewer overflow concentration. To address this problem, the amount of sewage on non-rainy days, not just the volume of rainfall, should also be considered. There are various theories on sedimentation in sewer movement. This study introduces a self-cleansing velocity based on tractive force theory. By applying a self-cleansing velocity equivalent to the critical shear stress of a sand particle, sedimentation can be reduced on non-rainy days. The amount of sewage changes according to the water use pattern of citizens. The design hourly maximum wastewater flow was considered as a representative value, and the velocity of this flow should be more than the self-cleansing velocity. This design method requires a steeper gradient than existing design criteria. Therefore, the existing sewer pipelines need to be improved and repaired accordingly. In this study, five types of improvement and repair methods that can maximize the use of existing pipelines and minimize the depth of excavation are proposed. The key technologies utilized are trenchless sewer rehabilitation and complex cross-section pipes. Trenchless sewer rehabilitation is a popular sewage repair method. However, it is complex because the cross-section pipes do not have a universal design and require continuous research and development. In an old metropolis with a combined sewer system, it is difficult to carry out excavation work; hence, the methods presented in this study may be useful in the future.

합류식 하수관거 월류수의 지표미생물 배출 특성 (Discharge Characteristics of the Indicator Microorganisms of Combined Sewer Overflows)

  • 김건하
    • 상하수도학회지
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    • 제20권4호
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    • pp.627-635
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    • 2006
  • Combined sewer overflow (CSOs) is a primary diffuse source degrading water quality of urban streams. In this study, CSOs caused by 5 different rainfall events at an urban watershed located in Daejeon city were monitored for the indicator microorganism concentrations. Event mean concentration (EMC) of the indicator microorganisms were: total coliform = $2.46{\times}10^6CFU/100mL$; fecal coliform = $1.01{\times}10^6CFU/100mL$; E.coli = $5.20{\times}10^5CFU/100mL$; and Fecal Streptococci = $6.08{\times}10^5CFU/100mL$. In addition, coliform concentrations were well correlated with suspended solid concentrations and the first flush effects were identified. Settling tests were carried out to estimate removal rate of indicator organisms by sedimentation from CSOs. As microorganisms are discharged in association with suspended solid, ten minutes of settlement can lower 44% of indicator microorganism leading.

우수토실에 설치된 월류수 제어를 위한 유입유량조절장치의 개선효과 (Improvements of Inflow Controller Installed in Storm Overflow Diverging Tank for CSOs Control)

  • 임봉수;박윤해;김태응
    • 한국물환경학회지
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    • 제31권4호
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    • pp.428-435
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    • 2015
  • This study was carried out to evaluate the performance of a inflow controller for the control of combined sewer overflows (CSOs). Because of the inflow controller could be adjusted manually by predicting the maximum amount of peak flow, the mechanical adjustment of this controller was higher than the existing fixed-type controller in field application. Standardizing the relationship between the flow and the clearance and angle of an inlet cover plate on the inflow conditions can selected to the optimum conditions for the on-site. It was concluded that BOD pollutant loading at the region in which inflow controller was installed had shown the removal efficiency rate of 42%.

소독제 농도, pH, 온도, 암모니아 농도, 부유물질이 강우 월류수 염소 소독에 미치는 영향 (Effects of Disinfectant Concentration, pH, Temperature, Ammonia, and Suspended Solids on the Chlorine Disinfection of Combined Sewer Overflow)

  • 김상현
    • 대한환경공학회지
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    • 제36권10호
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    • pp.685-690
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    • 2014
  • 하수처리시설 초과유량에 대한 처리 규제 입법 예고로 인해 강우 월류수 처리에 대한 관심이 증가하고 있다. 본 연구에서는 강우 월류수 염소(차아염소산나트륨) 소독 시 소독제 농도(0.11-4.0 mg $Cl_2/L$), pH (6.5-8.0), 온도($15-25^{\circ}C$), 암모니아 농도(10-41 mg N/L), 부유물질(91-271 mg SS/L)이 대장균군수 감소 속도에 미치는 영향을 고찰하였다. 차아염소산나트륨 농도 효과는 반속도 상수가 1.212mg $Cl_2/L$인 saturation-type model로 잘 모사되었다. 소독 반응 속도는 SS와 pH 증가에 따라 감소되는 반면, 온도에 따라서는 증가하였고, 암모니아 농도에는 영향을 받지 않았다. 월류수 유입 조건을 $1{\times}10^5MPN/mL$, 271 mg SS/L, $15^{\circ}C$, pH 8.0로 가정할 때, 염소 주입 농도 1 mg/L, 수리학적 체류시간 1.25 분인 염소 소독조를 통해 입법예고 된 수질 기준의 1/3 수준인 대장균군수 1,000개/mL를 달성할 수 있을 것으로 계산되어, 염소 소독이 강우 월류수 소독에 유효하게 사용될 수 있을 것으로 판단된다.