오수관 설계유량 산정법이 설계유속에 미치는 영향

Design Flow Velocity Changes According to the Design Flow Determination Methods in the Sanitary Sewer

  • 현인환 (단국대학교 공과대학 토목환경공학전공) ;
  • 원승현 (단국대학교 공과대학 토목환경공학전공) ;
  • 김형준 (단국대학교 공과대학 토목환경공학전공) ;
  • 이제인 (단국대학교 공과대학 토목환경공학전공)
  • 투고 : 2005.08.25
  • 심사 : 2005.10.18
  • 발행 : 2005.12.15

초록

The present study analyzed actual cases of designed flow estimation method and designed flow rate of sewage pipe lines. In order to examine the effects of peak-hour demand factor estimation with given daily highest peak loading, we analyzed its effects on designed flow rate with changing the peak-hour demand factor from 2.0 to 10.0. The results of this study are as follows. When reviewing the recent designs, we found that 59.4% of pipe line with 250mm and 300mm diameter, which fall under minimum allowable pipeline did not meet the minimum velocity which is specified as 0.6m/sec in design standards. The pipe line that have minimal access population or have very low slope did not satisfy the minimum velocity. In estimating the designed sewage flow, the applied daily highest peak loading and hourly highest peaking loading were the load factor for the entire population of the planned area, and for the peak loading of the initial pipes connected to a very small population, we applied the same factor as that applied to the entire area and, as a result, the hourly highest flow was underestimated. Because, in case of the initial pipes, the method of applying the same peak loading to all subject areas is highly possible to produce underestimated design flow, when estimating the designed flow of the initial pipes connected to a small population need to adopt a rational flow factor according to the size of population. For this, it is considered to investigate and analyze raw data on daily and hourly variation of sewage flow.

키워드

과제정보

연구 과제 주관 기관 : 단국대학교

참고문헌

  1. 광역상수도 용수배분 체계개선방안, 한국수자원공사, 2001, 3
  2. 현인환(1999), 일최대부하율의 합리적인 결정, 한국수도협회지
  3. 현인완, 이제인 (2004), '우리나라 상수도시설의 첨두부하 영향요소 분석', 상하수도학회지, 제18권 제1호, pp.49-58
  4. 환경부 (1998), 하수도시설기준
  5. 환경부 (1994), 상수도통계
  6. 建設省都市局下水道部(1983), 小規模に適した施設の開設に関する調査
  7. 給排水設備規準一周解設(1995), 空気調和. 給排水衛生設備の施工維持管理に関 HASS206
  8. 日本水道協會(2000), 水道施設設計指針
  9. 日本下水道協會誌(1984), 下水逗施設の設計指針と解說, 日本下水逗協會
  10. 日本下水道施設計劃 設計と解說 (2001)
  11. Babbitt, H.E. and Baumann, E.R. (1958) Seuerage and Sewagl Treatment, New York John Wiley
  12. Ismail I. Esen, Member (1993) Design of Sewers Based on Minimum Velocity, ASCE
  13. K.S.Li, Fellow (1994) Design of Sewers Based on Minimum Velocity, ASCE
  14. Metcalf & Eddy (1959) Wastewater Engineering, McGraw-Hill Book Company