Simulation of Flow Change and Level of Groundwater using MODFLOW Due to Large-size Building Construction in Metropolitan Area

MODFLOW를 이용한 도심지역 대형 건축물 신축에 따른 지하수 흐름 및 지하수위 변화예측에 관한 연구

  • Park, Sun Hwan (Department of Environmental Engineering, Kwangwoon University) ;
  • Chang, Yoon Young (Department of Environmental Engineering, Kwangwoon University) ;
  • Rim, Hyoung Gyu (Department of Environmental Engineering, Kwangwoon University)
  • Received : 2007.04.09
  • Accepted : 2007.07.30
  • Published : 2007.08.30

Abstract

In this study, the influence of the construction of a large sized building on the flow and level of groundwater in a metropolitan area was investigated with simulation model MODFLOW for a selected area located in Gangseo-gu, Seoul, where a large business center was scheduled to be built. It was simulated that the groundwater level in the study area was suddenly lowered by the construction of a large building and groundwater in the surrounding area fast flowed into the study area. And even after the construction finished, the falling down of groundwater level consistently continued in some degree. The flow state of groundwater appeared to be the same in both cases where a soil cement wall is applied and where it is not during the construction. But for the case of application of a soil cement wall as the amount of groundwater flowing into the study site became reduced, it was estimated that the time for underground watershed getting far away from the site was also reduced and the influence of a building construction on the surrounding groundwater became reduced. Thus, it is deemed necessary that recharging the spilled ground water and rainfall into the construction area to lessen the abrupt change in flow and level of ground water should be considered in design of construction of a large sized building in a metropolitan area.

Keywords

References

  1. 건설교통부, 2004, 지하수개발 . 이용 실태조사
  2. 김윤영, 이강근, 성익환, 1998, 서울지역 지하수 시스템 조사: 수리적 특성 분석, 지질공학회지, 8(1), 73-58
  3. 서울특별시, 2006, 서울시 통계연보
  4. 서울특별시, 2005, 건축물 환경영향평가 항목 및 심의기준(건축물 환경영향평가서 초안 작성 지침)고시
  5. 서울대 기초과학연구소, 2002, 서울특별시 지하수 관측망 설치 및 운영
  6. 조항문, 심우배, 2003, 서울시 도시하천의 비홍수기 수리 . 수문특성 기초조사연구: 정릉천 사례로, 서울시정개발연구원
  7. (주)하나디앤아이, 2005, 염창동 비즈니스센타 신축 사업 토질조사보고서
  8. 홍승호, 이병주, 황상기, 1982, 한국지질도, 서울도폭, 1:50,000, 한국동력자원연구소
  9. 한정상, 1999, 3차원 지하수모델과 응용, 1390p
  10. 환경부, 2003, 지하수 수질측정망 운영결과
  11. 환경부, 2004, 지하수 수질측정망 운영결과
  12. Anderson, M. P. and Woessner, W. W., 1992, Applied Groundwater Modeling: Simulation of Flow and Advective Transport, Academic Press Inc., UK, 381p
  13. Domenico, P. A. and Schwartz, F. W., 1990, Physical and Chemical Hydrogeology, John Wiley and Sons Ltd., NY, 824p
  14. http://www.kma.go.kr/intro.html