Survey on sewerage operation/management planning for flooding (II)

하수관거시설의 침수대응 운영·관리 실태 연구 (II)

  • 류재나 (중앙대학교 건설환경공학과) ;
  • 차영주 (단국대학교 토목환경공학과) ;
  • 오재일 (중앙대학교 건설환경공학과) ;
  • 현인환 (단국대학교 토목환경공학과) ;
  • 김영란 (서울시정개발연구원) ;
  • 장대환 (환경관리공단)
  • Published : 2009.06.15

Abstract

Under current design standard, sewers are designed to drain stormwater generated up to 10 year return period of storms. This implies sewer flooding could occur from rainfall exceeding a 10 year return period. 5, 10, 20 and 30 year return period of storm intensities were calculated for 22 locations (cities) of meterological stations over the nation and compared to the recorded rainfall intensities for the last 30 years. The comparison resulted in the numbers of year maximum rainfall intensities exceeded each return period. Using the questionnaire survey for "the incidences of flooding since 1980" of the previous paper (Survey on sewerage operation/management planning for flooding (I)), the actual rainfall records on the date of flooding events were analyzed to demonstrate the number of flooding events caused by the exceedance of sewer capacity. For the last 30 years, more than 6 years of year maximum rainfall intensity (20%) were larger than the 10 year return period of storm in 4 cities of the 22 used for the first analysis. The number of rainfall records that exceeded the 10 year return period was 50 of the 260 actual flooding events investigated from the survey.

Keywords

References

  1. 건설교통부 (2000) 1999년도 수자원관리기법개발연구조사 보고서, 제1권 한국확률강우량도 작성. pp. 94-105
  2. 건설교통부 (2007) 특정도시하천유역 침수피해방지대책법률(안) 제정 추진. pp. 1
  3. 서울시 (2008) 서울특별시 하수도정비기본계획(변경) 보고서 (안). pp. 5-76-5-88
  4. 소방방재청 국립방재연구소(2005) 상습수해지구 사례집. pp.16
  5. 윤용남 (2007) 수문학. 청문각. pp. 98-104
  6. 허준행, 김경덕, 한정훈 (1999) 지속기간별 강우자료의 적정분포형 선정을 통한 확률강우강도식의 유도, 한국수자원학회논문집, 제32권, 제3호, pp. 247-254
  7. 환경부 (2005) 하수도시설기준. pp. 27-42
  8. 환경부 (2009) 하수관거의 집중강우 대응지침 및 관리방안 마련 연구(안). pp. 3-47-3-49