• Title/Summary/Keyword: 영천댐 도수터널

Search Result 9, Processing Time 0.027 seconds

Effect of the Yeongcheon Dam Waterway Tunnel, Korea, on Local Groundwater Levels (영천댐 도수터널 주변지역 지하수위 영향 분석)

  • Gyu-Han Kim;Seong-Woo Moon;Yong-Seok Seo
    • The Journal of Engineering Geology
    • /
    • v.33 no.3
    • /
    • pp.461-474
    • /
    • 2023
  • The study area is located in Hyeonseo-myeon and Andeok-myeon of Cheongsong-gun, Korea around the Yeongcheon dam waterway tunnel, and in this paper, it is analyzed whether the groundwater level is recovered or not compared to groundwater level before waterway tunnel construction by measuring the groundwater level of 156 wells which were installed in areas near and away from the waterway tunnel. From September 2017 to August 2018, the groundwater level of the well was measured at least once a month, and as a result of groundwater level observation survey, the groundwater level of wells distributed in the directly affected zone by the waterway tunnel is relatively lower than that of the indirectly affected zone apart from the waterway tunnel. These results are estimated to be predominantly affected by the effect of waterway tunnel acting on geologic discontinuities rather than by terrain conditions, i.e. groundwater flows being leaked to the waterway tunnel through direct or indirect channels. Continuous monitoring and further investigation will be required to maintain groundwater facilities and preserve groundwater environments in the future.

Relation between Groundwater Inflow into the Waterway Tunnel and Hydrogeological Characteristics in Hyeonseo-myeon, Cheongsong-gun, Korea (청송군 현서면 일대 도수로터널내 지하수 유입량과 수리지질 특성의 관련성)

  • 박재현;함세영;성익환;이병대;정재열
    • The Journal of Engineering Geology
    • /
    • v.11 no.2
    • /
    • pp.141-152
    • /
    • 2001
  • The waterway tunnel zone (length 1,484m) in the Hyeonseo-myeon area that is a part of Yeongcheon dam waterway tunnel has been studied to characterize the relationship between groundwater inflow into the waterway tunnel and hydrogeologic characteristics. The effects of sandstone thickness in the tunnel section. fracture density, fracture aperture and spacing, fault zone width and hydraulic conductivity on the early inflow (inflow prior to the lining and grouting) are investigated. The relationship between fracture density and hydraulic conductivity is also considered. The result of the study suggests that fault zone width has the greatest effect on groundwater inflow into the tunnel, and sandstone thickness, hydraulic conductivity and fracture density in order shows an influence on the inflow.

  • PDF

Discontinuous Fracture Characteristics and Fractal Dimensions of Groundwater Flow Section in Youngchun Waterway Tunnel (영천댐 도수로터널내 지하수 유출구간의 불연속성 단열 특성 및 단열 프랙탈 차원)

  • 이병대;추창오;이인호;정교철;함세영;조병욱
    • The Journal of Engineering Geology
    • /
    • v.12 no.3
    • /
    • pp.333-344
    • /
    • 2002
  • To clarify the relationship between groundwater flow tate and statistical distribution of fractures in Youngchun waterway tunnel, the fracture characteristics and fractal dimensions of groundwater flow section were evaluated. The flow rate of 84,465m$^3$/day was identified in fault, accounting for about 70 percent of the total How rate. The flow rate of 36,525m$^3$/day was identified in joint, accounting for about 30 percent of the total flow rate. The flow late in the NATM section of sedimentary rocks increased with the fractal dimensions. The fractal dimensions determined in fault or fracture zones show more positive relation with the flow rate than those in joint developed zones.

Scenario Analysis of Flexible Water Supply Considering Water Quality in Gumho River Basin (금호강유역의 수질을 고려한 탄력적 유량공급 시나리오 분석)

  • Choi, Hyun Gu;Lee, Eul Rae;Kang, Sin Uk
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2015.05a
    • /
    • pp.545-545
    • /
    • 2015
  • 금호강은 포항시 북구 죽장면에서 발원하여 낙동강으로 합류하는 낙동강 제1지류로 유로연장은 114.6km이며, 영천과 경산지역의 생활 및 공업용수, 대구지역의 공업용수로 사용된다. 금호강의 평균 BOD는 1983년 191.2mg/L로 하수도나 산업폐수 처리 전 원수 정도의 수준이었으나, 2014년에는 3.6mg/L로 낮아져 수질개선율이 98.1%를 나타냈다. 이를 위해서 하 폐수 처리장 건설과 아울러 포항철강산업단지의 공업용수 공급을 위한 영천댐에 임하댐과 도수터널 52km를 연결하여 2001년부터 금호강에 하천유지용수로 $3.463m^3/s$를 공급하였다. 금호강 유역에서 오염총량제 목표수질은 금호B 지점이 BOD 3.8mg/L, TP 0.236mg/L이며, 금호C 지점은 BOD 4.0mg/L, TP 0.254mg/L이다. 분석기간인 2013년에서 2014년의 평균 수질은 모두 기준을 만족하고 있으나, 수질악화시에 금호B 지점에서 최대 BOD 8.6mg/L, TP 0.511mg/L, 금호C 지점에서 최대 BOD 8.5mg/L, TP 0.449mg/L을 나타내었다. 이에 영천댐의 탄력적인 유량방류로 수질악화시에 추가 방류를 수행하여 수질을 안정화시키고, 물공급의 안정화가 필요한 상황이다. 본 연구에서는 갈수기 및 이수기에 영천댐에서 하천유지용수보다 많은 유량을 탄력적으로 방류하는 가상조건을 설정하여, 하천유지유량과 목표수질을 만족하는 유량분석을 수행하였다. 이를 위해 QUALKO2 모형을 적용하였으며, 상류단 경계조건을 영천댐으로 설정하고 낙동강에 합류하기까지 약 86km 구간에 대해서 유량과 수질모의를 수행하였다. 모형적용을 위해서는 23개의 reach와 86개 element를 사용하였으며, 주요지류로는 신령천, 청통천, 부기천, 오목천, 남천, 동화천, 신천, 팔거천, 달서천, 이언천를 적용하고, 주요 하 폐수 처리시설을 점오염원으로 입력하였다. 실측자료는 2013년과 2014년의 월자료를 사용하였으며, 유량시나리오는 상류단 영천댐 방류량 조건을 반영하여, 실방류량 조건과 하천유지용수 방류조건, 유지용수 외 추가 25%, 50% 방류조건, 목표수질을 달성하는 방류조건으로 총 5가지의 시나리오를 수행하였다. 상류단 유량이 증가하면 금호강 전반적으로 수질이 개선되나 수질 악화시에는 과도한 방류량을 요구하게 되어, 수질 악화시를 위한 구조적 비구조적 대책도 필요한 상황으로 분석된다.

  • PDF

Field Experiments on the Cutoff Grouting Around Waterway Tunnel (도수터널의 차수 그라우팅 현장시험)

  • 김덕근;김교원
    • The Journal of Engineering Geology
    • /
    • v.11 no.1
    • /
    • pp.81-99
    • /
    • 2001
  • In order to clarify an effect of the cutoff grouting, a series of field experiments were performed during construction of the waterway tunnel from the River Gilancheon(Andong) to the Youngcheon dam. The experiments were conducted in three different ways based on the grouting time in the construction sequence, i.e., the pre-grouting, after-grouting and consolidation grouting tests. And those were also planned to compare the efficiency of grouting in relation to the material types of grout, base rock types and other geologic factors such as discontinuities, depth and direction of grouting holes, and number of grouting stages. Among the materials of grout employed in the experiments, such as a common Portland cement, a micro-cement, a micro-cement with sodium silicate, and a urethane, the urethane was the most effective as the cutoff grouting. And for the same grout material, the pre-grouting was more effective to cutoff the water inflow comparing to the after-grouting and the consolidation grouting. For the rock types, the grouting efficiency in the sedimentary rocks as a base rock was less than the other rocks such as granite and volcanic rocks, which is believed due to the smaller separation of joints and the abundance of infilling materials in the joints developed in the sedimentary rocks. There was no direct relationship between the total RMR value of the rock mass and the grouting efficiency, however, the joint separation which is one of the RMR criteria is believed to have positive relation to the grouting efficiency. And the direction of the grouting holes might not so much affect on the grouting efficiency while increasing the number of grouting stage showed the better results.

  • PDF