• 제목/요약/키워드: fractured rocks

검색결과 85건 처리시간 0.032초

양수시험시 방사상흐름을 보이는 균열암반 대수층에서의 우물손실 (Well Loss in Fractured Rock Formation with Radial Flow during Pumping Test)

  • 이철우;이대하;정지곤;김구영;김용제
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제7권4호
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    • pp.17-23
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    • 2002
  • 균열암반내에 시추된 7개의 양수정에서 양수시험을 실시하였다, 여기에서 각 양수율에 따른 수위강하값을 구하였으며, 비평형상태하에서의 단계양수시험은 Cooper-Jacob의 방법에 의해 양수시간을 보정하였다 양수정에서의 대수층 손실상수, 우물손실상수 및 우물손실지수(n)의 산출은 최소제곱법(method of the least square)을 이용한 회귀분석 방법을 이용하였으며, n값의 범위는 1.65∼6.48로 산출되었다. 균열암반내에 시추된 양수정의 우물손실은 케이싱이나, 시추시 발생되는 공벽의 공극감소 등의 영향보다는 방사상흐름에 따른 양수정부근에서의 난류에 의한 영향이 대부분일 것으로 해석된다. 또한 이 난류는 레이놀즈의 수(Reynolds number)에 좌우되는데, 여기에서 암반대수층내의 균열 특성이 유체의 속도를 지배하므로 정확한 n값의 산출은 암반대수층을 이해하는데 중요한 인자가 될 것이다.

A numerical study on anisotropic strength of a rock containing fractures under uniaxial compression condition

  • Ohk Jin-Wook;Moon Hyun-Koo
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.150-155
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    • 2003
  • Fractures in the form of micro cracks are commonly found in natural rocks. A rock behaves in a complex way due to fracture; in particular, the anisotropic strength of a rock material is significantly influenced by the presence of these fractures. Therefore, it is essential to understand the failure mechanism of a fractured rock. In this study, a fractured rock is formulated in terms of fabric tensor based on geometric and mechanical simplifications. In this way, position, density and shape of fractures can be determined by the fabric tensor so that rocks containing multi-fractures can successfully be modeled. Also an index to evaluate the degree of anisotropy of a fractured rock is proposed. Hence, anisotropic strength of a rock containing fractures under uniaxial compression condition is estimated through a series of numerical analyses for the multi-fractured model. Numerical investigations are carried out by varying the fracture angle from $0^{\circ}\;to\;90^{\circ}$ and relationship between uniaxial compression strength and the degree of anisotropy is investigated. By comparing anisotropic strength of numerical analysis with analytic solution, this study attempts to understand the failure mechanism of rock containing fractures.

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단계양수시험으로부터 우물수두손실 항을 이용한 단열의 고.저 투수성 평가 (Evaluation of Low or High Permeability of Fractured Rock using Well Head Losses from Step-Drawdown Tests)

  • 김병우;김형수;김건영;고용권
    • 방사성폐기물학회지
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    • 제10권1호
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    • pp.1-11
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    • 2012
  • Rorabaugh(1953)에 의해 재정리된 단계양수시험 해석해 $s_w=BQ+CQ^p$는 단열암반대수층에서 비선형으로 증가하는 수위강하에 매우 적합하며, 현장에서 관측된 수위강하 값과 추정된 수위강하 사이의 제곱근 평균제곱오차(RMSE) 값이 매우 낮음을 보여주었다. 우물수두손실($CQ^p$)의 $C$ 값은 $3.689{\times}10^{-19}{\sim}5.825{\times}10^{-7}$, $P$ 값은 3.459~8.290의 범위로 산정되었으며, 지표로부터 하부심도로 내려 갈수록 양수율 증가에 따른 수위강하는 매우 크게 나타났다. 단열암반대수층에서의 우물수두손실은 다공질매질에서와 달리 단열특성(단열의 틈, 간격, 상호 연결성)에 의한 영향으로 나타나므로, 우물수두손실의 $C$$P$ 값은 단열암 반대수층의 난류구간과 고 저 투수성 단열암반의 특성을 해석하는데 매우 중요하다. 그 결과, 우물수두손실 항의 $C$$P$ 값에 대한 회귀분석 결과로부터 암반대수층의 난류구간과 수리특성의 관계가 파악되었으며, $C$$P$ 값의 관계가 단열암반대수층의 수리특성 해석에 있어 매우 유용함을 확인할 수 있었다.

국가지하수 관측망의 양수시험 자료를 이용한 국내 대수층 특성의 통계적 분석 (Statistical Analysis of Aquifer Characteristics Using Pumping Test Data of National Groundwater Monitoring Wells for Korea)

  • 전선금;구민호;김용제;강인옥
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제10권6호
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    • pp.32-44
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    • 2005
  • 국가지하수 관측망의 314개 관정에 대한 양수시험 자료를 분석하여 국내 암반 및 충적대수층이 나타내는 수리전도도 분포, 투수량계수와 비양수량과의 관계, 양수 및 회복시험 유형에 관한 통계 자료를 제시하였다. 충적대수층의 평균 수리전도도는 1.26m/day로 암반대수층(0.076 In/day)보다 약 17배 크게 나타났다. 암반대수층 수리전도도의 평균과 분산도는 국외의 결정질 균열 암반과 거의 일치하였으며, 암종별 평균값은 퇴적암, 화성암, 변성암 순으로 뚜렷한 차이를 보였다. 투수량계수 분석 결과 국가지하수 관측망의 지하수는 암반을 통하여 $32\%$, 충적층을 통하여 $68\%$ 정도가 흐르는 것으로 나타났다. 회귀분석을 통하여 국가지하수 관측망의 대수층이 나타내는 비양수량과 투수량계수의 관계식을 제시하였다 양수 및 회복시험의 수위강하 양상에 따라 대수층의 유형을 $4\~5$개로 분류하여 각 유형이 나타내는 대수층의 특성을 분석하였다 국가지하수 관측망 대수층의 대부분$(83.7\%)$은 함양경계형을 보였으며, 관측소 인근의 하천, 암반 및 충적대수층의 수리적 연결에 의한 두 대수층간의 수직적인 지하수의 흐름, 자유면대수층에서 중력배수에 의해 발생하는 지연산출 등 다양한 공급원에 의하여 함양경계형이 나타난 것으로 분석되었다.

Relationship of box counting of fractured rock mass with Hoek-Brown parameters using particle flow simulation

  • Ning, Jianguo;Liu, Xuesheng;Tan, Yunliang;Wang, Jun;Tian, Chenglin
    • Geomechanics and Engineering
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    • 제9권5호
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    • pp.619-629
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    • 2015
  • Influenced by various mining activities, fractures in rock masses have different densities, set numbers and lengths, which induce different mechanical properties and failure modes of rock masses. Therefore, precisely expressing the failure criterion of the fractured rock influenced by coal mining is significant for the support design, safety assessment and disaster prevention of underground mining engineering subjected to multiple mining activities. By adopting PFC2D particle flow simulation software, this study investigated the propagation and fractal evolution laws of the micro cracks occurring in two typical kinds of rocks under uniaxial compressive condition. Furthermore, it calculated compressive strengths of the rocks with different confining pressures and box-counting dimensions. Moreover, the quantitative relation between the box-counting dimension of the rocks and the empirical parameters m and s in Hoek-Brown strength criterion was established. Results showed that with the increase of the strain, the box-counting dimension of the rocks first increased slowly at the beginning and then exhibited an exponential increase approximately. In the case of small strains of same value, the box-counting dimensions of hard rocks were smaller than those of weak rocks, while the former increased rapidly and were larger than the latter under large strain. The results also presented that there was a negative correlation between the parameters m and s in Hoek-Brown strength criterion and the box-counting dimension of the rocks suffering from variable mining activities. In other words, as the box-counting dimensions increased, the parameters m and s decreased linearly, and their relationship could be described using first order polynomial function.

복합사면의 사면안정해석에 관한 연구 (Slope Stability Analysis for Compound slope)

  • 신은철;김진수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.1279-1285
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    • 2010
  • Our country has a tendency to build many structures by cutting mountainous areas due to geographical features. Among these construction done in our country, road construction take the first spot in rank. As the construction is done, fractured inclining plane is created inevitability because of the natural properties of mountainous areas. The stability of the fractured inclining planes and slope formed in the opening, which are developed at the time of construction, need to be evaluated. Also, reinforcement plans for these matters are necessary. This paper is to go through an examination on the fractured inclining surface that is developed at the time of construction, especially the composite inclining plane that consists of soil and rocks. Furthermore, evaluating the stability by performing an analysis on stereographic projection and limit equilibrium, based on the examination results. using the stability evaluations, applications were explored for reinforcement methods of construction that fits the geological characters of this inclining surface.

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Experimental studies on mass transport in groundwater through fracture network using artificial fracture model

  • Tsuchihara Takeo;Yoshimura Masahito;Ishida Satoshi;Imaizumi Masayuki;Ohonishi Ryouichi
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.676-683
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    • 2003
  • A laboratory experiment using artificial fracture rocks was used to understand the 3-dimensional dispersion of a tracer and the mixing process in a fractured network. In this experiment, 12cm polystyrene foam cubes with two electrodes for monitoring electric conductivity (EC) were used as artificial fractured rocks. Distilled water with 0.5mS/m was used as a tracer in water with 35mS/m and the difference of EC between the tracer and the water was monitored by a multipoint simultaneous measurement system of electrical resistance. The results showed that even if the fracture arrangement pattern was not straight in the direction of the flow, the tracer did not diffuse along individual fractures and an oval tracer plume, which was the distribution of tracer concentrations, tended to be form in the direction of the flow. The vertical cross section of the tracer distribution showed small diffusivity in the vertical direction. The calculated total tracer volume passing through each measurement point in the horizontal cross section showed while that the solute passed through measurement points near the direction of hydraulic gradient and in other directions, the passed tracer volumes were small. Using Peclet number as a criterion, it was found that the mass distribution at the fracture intersection was controlled in the stage of transition between the complete mixing model and the streamline routing model.

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