Fluid Flow and Solute Transport in a Discrete Fracture Network Model with Nonlinear Hydromechanical Effect

비선형 hydromechanic 효과를 고려한 이산 균열망 모형에서의 유체흐름과 오염물질 이송에 관한 수치모의 실험

  • Published : 1998.06.01

Abstract

Numerical simulations for fluid flow and solute transport in a fracture rock masses are performed by using a transient flow model, which is based on the three-dimensional stochastic and discrete fracture network model (DFN model) and is coupled hydraulic model with mechanical model. In the numerical simulations of the solute transport, we used to the particle following algorithm which is similar to an advective biased random walk. The purpose of this study is to predict the response of the tracer test between two deep bore holes (GPK1 and GPK2) implanted at Soultz sous Foret in France, in the context of the geothermal researches.l The data sets used are obtained from in situcirculating experiments during 1995. As the result of the transport simulation, the mean transit time for the non reactive particles is about 5 days between two bore holes.

균열 암반 매질에서의 지하수 흐름과 오염물질 이송에 대한 수치모의 실험이 hydromechanic 모형과 추계적 그리고 이산적 3차원 균열망 모형에 바탕을 둔 비정상상태 흐름 수치 모형을 이용하여 수행되었다. 오염물질 이송에 대한 수치모의 실험에서 random walk의 일종인 particle following 알고리즘이 사용되었다. 이 연구의 목적은 지하 깊은 곳에 위치한 Hot dry rock에서의 지열 개발을 위해 프랑스 Soultz sous Foret 지역에 설치된 두개의 깊은 착정인 GPK1과 GPK2 사이에서의 tracer test 반응을 1995년에 실행된 유체순환 현장 실험으로 부터 얻어진 자료를 이용하여 예측하는 것이다. 모의 실험 결과 비반응입자(nonreactive particles)에 대한 평균 이송시간은 두 착정 사이에서 약 5일이었다.

Keywords

References

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