• 제목/요약/키워드: Separated Sewer System

검색결과 14건 처리시간 0.035초

건기와 우기시 낙동강 유역 분류식 하수관거의 유입수/침입수의 분석 (Analysis of Infiltration/Inflow at Dry and Rainfall Periods in Separated Sewer System of Nakdong River Basin)

  • 구정은;이홍신;손건태;이성억;이승환
    • 상하수도학회지
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    • 제25권1호
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    • pp.75-84
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    • 2011
  • This study was conducted to provide a basic information for the establishment of operation and treatment processes in sewer system of Nakdong river basin to minimize the overall pollutants loading to water body. Sewage flowrates were regularly measured and monitored at various sampling points of newly-built separated sewer system located in G City GA sites. To assess the inflow sewage flowrate, various calculating methods such as water-use evaluation, average-minimum daily flow quality evaluation, minimum daily flow evaluation, night water-use evaluation were used. Average I/Is were calculated except water-use evaluation. Average I/Is were found to be 6.5 $m^{3}/d$, 3.5 $m^{3}/d$, 7.7 $m^{3}/d$ at GA-1, GA-2, GA-3 points respectively. I/I ratios of three areas were found to be 4.8 %, 2.0 % and 2.7 % respectively and were obviously lower than those of the other separated sewer systems as shown in the previous studies.

분류식 하수관로에서 유입수 표준매뉴얼 산정방법의 보수적 수정 결과 (Conservative Adjustment of the Standard Calculation Method of Inflow Water Into a Separated Sewer System)

  • 추민경;배효관
    • 한국물환경학회지
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    • 제36권5호
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    • pp.423-430
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    • 2020
  • To improve the low treatment efficiency of sewage treatment plants, the separated sewer system must be maintained to provide an adequate flow rate and quality of the sewage under the effect of inflow. In this study, data from five locations of Namsuk, Dukgok1, Dukgok2, Kanggu, and Opo were used to conservatively calculate the inflow water volume. The sewer flow and rainfall data were collected in 2017. The factors in the standard method used to calculate the inflow of the combined sewer pipes including "rainy days", "rainfall impact period", and "period for basal sewer" were defined as 3 mm/day, continuous rain for two days, and two weeks prior to the inflow generation, respectively. "Rainy days", "rainfall impact period", and "period for basal sewer" were conservatively adjusted to 5 mm/day, continuous rain for five days, and three weeks prior to the inflow generation, respectively. As a results of the adjustment, the linearity (r2) was improved except for in Dukgok1. This implies that the conservative adjustment made in this study could improve the management quality of sewer pipes. Also, the linear correlation coefficient (ai) between inflow and rainfall showed a large difference between the target locations, which can be another monitoring factor affecting the quality of sewer pipes. To improve the correlation based on the individual characteristics of the locations in Korea, the automatic algorithm for the inflow calculation should be developed by innovative intellectual technologies for application to the entire national area.

대규모 아파트 단지주변 하수관로의 악취 발생과 대책 II: 주거지역 하수관로의 악취원인과 대책 (The Foul Smelling from Sewer Pipe near Large Apartment Complexes and its Countermeasures II: The Cause for Foul Odors of Sewer Pipes in Residential Areas)

  • 이장훈;강선홍
    • 상하수도학회지
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    • 제21권5호
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    • pp.631-639
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    • 2007
  • This study investigated the construction and operation status of sewer pipes and water-purifier tanks near densely populated areas like large apartment complexes, in order to find out cause for offensive orders. The study results revealed that the main cause arose from the water-purifier tank and public sewer pipes near ordinary residential areas. First, in case of independent water-purifier tanks, the air is forced into the rotten part of large tanks nearby which should be operated in an anaerobic state, so that the tank changes into an aerobic state, or dirty water, which is returned during the sludge return process, falls on the top of the rotten tank, preventing scum from forming within the tank. Such problems cause incompletely purified water in the purifier tank to be discharged, which in turn results in filthy water. Second, in case of public sewer pipes, deteriorated or aging pipes, or the mixture of rain water and dirty water by mixing up combined and separated sewers system can cause foul odors in residential areas. Therefore, offensive odors in residential areas can be radically reduced through the appropriate construction and management of facilities including water-purifier tanks. As well, if more separate sewers are installed as part of an improvement project for public sewer pipes, complaints about foul smell can be minimized.

오염부하 물질수지 분석을 통한 합류식 하수관거 적정 차집용량 결정(II) - 차집용량과 월류오염부하 삭감목표 설정 - (Determination of Interception Flow by Pollution Load Budget Analysis in Combined Sewer Watershed (II) - Establishment of Intercepting Capacity and Reduction Goal of Overflow Pollution Load -)

  • 이두진;신응배
    • 상하수도학회지
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    • 제19권5호
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    • pp.557-564
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    • 2005
  • The objective of this study is to evaluate a criteria of intercepting capacity and a reduction goal of overflow pollution load in combined sewer system. In the current criteria of intercepting capacity in the domestic sewage facility standard, it is known that three times of peak sewage (Q) in dry period or runoff flow by 2mm/hr is not appropriate since the intercepted flow is estimated by runoff and show different result even in the same watershed. Though a reduction goal of overflow pollution load can be determined from 1) same level of storm-water runoff pollution load in separated storm sewer, 2) less than 5% sewage load in dry weather period, by the domestic sewage facility standard, the simulated results from storm-water model show large differences between two criteria. While it is predicted that sewage pollution load standard three time larger than separated storm sewer standard in high population density and urbanized area, it is shown that separate storm sewer standard larger than sewage pollution load standard in middle population density and developing area. Accordingly, it is proposed that more reasonable intercepting flow and reduction goal of overflows pollution load should be established to minimize discharging pollution load in combined sewer systems. For the purpose, a resonable standard has to be amended by pollution load balance considering the characteristics of a watershed for generation, collection, treatment, and discharging flow.

주택단지내 하수관거의 매설심도 결정에 관한 연구 (Determination of the Depth of Sewers in Residental Complexes)

  • 임봉수;최의소;이윤석
    • 상하수도학회지
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    • 제8권3호
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    • pp.41-50
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    • 1994
  • The depth of sewers in residential complexes was determined to prevent the separated sewers from misconnection between storm sewer and sanitary sewer, and from the submersion of the basement by minimizing the phenomenon of backwater when it rains. In residential complexes, main causes of the submersion were the misconnection of sewers, rising of the backwater level at outfall in sewer system, poor maintenance of sewers, and lacking in their cross section. Minimum depth of sewers should be over 1.2~1.5m. According to the economic analysis, the depth of 1.5m~3.0m was appropriate for minimizing the submersion of basements and for making the disposal of domestic wastewater more easily.

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분류식 하수관거로의 전환시 유입하수의 성상 변화 및 선회와류식 SBR공법의 처리 특성 (Change in Influent Concentration of Domestic Wastewater from Separated Sewer and Biological Nitrogen and Phosphorus Removal of a Full Scale Air-vent SBR)

  • 이장희;강호
    • 한국물환경학회지
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    • 제28권1호
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    • pp.63-70
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    • 2012
  • This study was carried out to investigate change in influent concentration of domestic wastewater flowed from a newly constructed separate sewer system (SSS) and biological nutrients removal efficiency of a full scale Air-vent sequential batch reactor (SBR, $600m^3/d$). The average concentration of $BOD_5$, SS, T-N and T-P from SSS were 246.5 mg/L, 231.6 mg/L, 42.974 mg/L, 5.360 mg/L, respectively which corresponds to 2.2times, 1.2times, 1.8times and 2.1times higher than those from the conventional combined sewer system (CSS). The removal efficiency of $BOD_5$, SS, T-N, and T-P for the Air-vent SBR operated with influent from SSS averaged 99.1%, 99.0%, 91.2%, and 93.5%, respectively. Especially the respective nitrogen and phosphorus removal was 15% greater than that of the SBR operated with influent from CSS. Simultaneous nitrification and denitrification (SND) was observed in an aerobic reactor(II) as a result of DO concentration gradient developed along the depth by the Air-vent system. In order to achieve T-N removal greater than 90%, the C/N ratio should be over 6.0 and the difference between $BOD_5$ loading and nitrogen loading rate be over 100 kg/day (0.130 kg $T-N/m^3{\cdot}d$). Even with high influent T-P concentration of 5.360 mg/L from SSS (compared with 2.465 mg/L from CSS) T-P removal achieved 93.5% which was 15.5% higher than that of the SBR with influent from CSS. This is probably due to high influent $BOD_5$ concentration from SSS that could provide soluble carbon source to release phosphorus at anaerobic condition. In order to achieve T-P removal greater than 90%, the difference between $BOD_5$ loading and phosphorus loading rate should be over 100 kg /day (0.130 kg $T-N/m^3{\cdot}d$).

CMOS 이미지 센서를 이용한 원격지 화상 감시 및 제어 시스템 구현 (An Implementation of Remote Monitoring and Control System using CMOS Image sensor)

  • 최재우;노방현;이창근;황희융
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2003년도 학술회의 논문집 정보 및 제어부문 B
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    • pp.653-656
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    • 2003
  • We have designed embedded web sewer system and ported Linux operating system version 2.4.5 at our system. And then We implemented to control and monitor widely separated hardware and implemented to monitor widely separated image using CMOS image sensor HV7131B. Web server is the Boa web server with General Public License. We designed for this system using of Intel's SA1110 ARM core base processor and connecting input and output device at GPIO port of SA1110. Device driver of General purpose I/O for Embedded Linux OS is designed. And then the application program controlling driver is implemented to use of common gate interface C language. User is available to control and monitor at client PC. This method have benefit to reduce the Expenditure of hardware design and development time against PC base system and have various and capacious application against firmware base system.

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분류식 하수지역의 초기 유출수 오염저감을 위한 용도지구별 적지 분석 (Zoning Suitability Analysis to Reduce First-flush Runoff Contamination in a Separated Sewer System)

  • 박인혁;하성룡
    • 한국지리정보학회지
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    • 제11권2호
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    • pp.13-27
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    • 2008
  • 본 연구에서는 강우 시 발생하는 초기 유출수의 오염부하를 저감할 수 있는 용도지구별 최적지를 분석하여, 용도지구를 재구성하고, 이에 따라 배출되는 오염물의 저감효과를 도시수문모형을 이용하여 모의하였다. 이를 위해 지표에 축적되어 있는 비점오염원의 양을 조사하였으며 대상지역의 강우유출수를 조사하였다. 조사된 결과를 이용하여 초기 유출수 오염저감을 위한 입지조건을 설정하고 각 인자별 적지를 분석하였다. 각 인자별 가중치 설정을 위해 AHP 분석을 실시하였으며 산출된 가중치와 입지조건별 적지 점수를 연산하여 최종 적지를 분석하고 도시수문모형을 통해 저감효과를 모의하였다. 적지분석 결과, 단독주택지와 아파트 지역은 현재 용도지구와 흡사한 지역에 적지가 분석되었다. 학교지역은 현재의 상업지역의 중심지가 적지로 분석되었고 공원지역은 소규모 공원의 적지가 추가되었다. 상업지역은 대상지의 가장 안쪽의 지역이 적지로 분석되었다. 용도지구 변경에 따른 저감효과 모의 결과, 초기유출수의 BOD 농도가 최대 91.2%에서 최저 0.09% 감소하였다. SS의 농도는 최대 72.74%에서 최저 0.31% 감소하였다.

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강우시 도시배수구역의 유출특성 지배인자 분석 (Identifying dominant parameters of storm-sewer-overflows in seperate sewer system)

  • 정시몬;박인혁;하성룡
    • 한국습지학회지
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    • 제10권2호
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    • pp.105-114
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    • 2008
  • 급격한 도시화에 따른 불투수 면적과 인구의 증가로 인하여 많은 양의 오염물이 배출되고 있고, 이로 인하여 지역 하천의 수질이 심각한 위협을 받고 있다. 특히 강우시 지표면의 쌓인 다량의 오염물질은 오수관으로 유입된 후 월류되어 하천으로 유입되기 때문에 이에 대한 연구와 관리시스템의 마련이 시급하다. 이에 본 연구에서는 청주시를 대상으로 도시배수구역의 유출특성을 분석하고 이에 영향을 미치는 인자를 추출 및 분석할 수 있는 통계적 분석방법을 제시 것에 목적이 있다. 선행된 연구를 참고하여 강우강도, 선행건기일수, 강우량과 5개의 수질분석항목(CODcr, BOD, SS, TN, TP)과의 관계를 통계적인 방법으로 분석하였으며, 강우시 도시유출특성을 지배하는 인자에 대한 규명을 시도하였다.

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수평흐름식 여과기술의 CSOs 적용을 위한 공정 최적화 연구 (A Study on Process Optimization for CSOs Application of Horizontal Flow Filtration Technology)

  • 김재학;양정하;이영신
    • 한국산학기술학회논문지
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    • 제19권2호
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    • pp.56-63
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    • 2018
  • 강우사상이 발생함에 따라 시설용량을 초과하여 미처리된 상태로 방류수계에 직접 배출되는 합류식 관거 월류수(Combimed Sewer Overflows, CSOs) 및 분류식 관거 월류수(Separated Sewer Overflows, SSOs)의 관리는 집중호우가 잦아지는 근래에 들어 그 관리가 더욱 중요해지고 있다. 밀집도가 높은 도심지에 적용성이 유리한 여과기술은 지속적인 개발이 이루어지고 있음에도 불구하고 CSOs에 적용된 사례가 거의 전무한 실정이다. 따라서 본 연구에서는 로프형 섬유여재가 적용된 Pilot 규모의 수평흐름식 여과장치를 CSOs에 적용하기 위해 공정최적화를 목적으로 수행되었다. 연구방법은 인공시료를 적용한 사전연구와 하수를 적용한 현장연구로 구분하여 수행하였다. 인공시료를 적용한 사전연구에서 여재 자체의 손실수두는 약 1.1cm정도로 분석되었고, 선속도 10m/hr 증가에 따라 약 0.1cm 정도의 손실수두 증가를 유발하는 것으로 나타났다. 또한, SS 제거효율은 81.4% 정도로 안정적이었고, 여과지속시간은 6시간 이상 유지되었으며, 공기역세척만으로도 98% 정도의 손실수두 평균 회복율을 보였다. 하수를 적용한 현장평가에서는 여재의 조기폐색을 방지하기 위한 전처리공정으로 벨트 형 미세스크린(450mesh 이상)를 적용했을 때 2시간 내외의 여과지속시간을 확보할 수 있었고, 평균 83.9%의 SS 제거효율을 나타내었다. CSOs 및 SSOs에 여과공정 적용을 위해서는 효율적 측면보다 여과지속시간의 안정적 유지를 위한 수리적 측면을 보완하기 위해서 전처리공정과의 조합이 중요하다는 결론을 얻을 수 있었다. 건기와 비교하여 우기의 유입하수 수질은 다소 낮은 보였으며, 이는 분류식 관거 비율이 높은 배수구역의 특성 때문인 것으로 추정된다. 또한, 우기와 건기의 유입수질에 따른 제거효율 차이는 미미하였다.