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Dual-permeability Fractal Model of Groundwater Flow in Fissured Aquifers
함세영,Bidaux, Pascal,Hamm, Se-Yeong 대한자원환경지질학회 1997 자원환경지질 Vol.30 No.5
균열암반 이중대수층 (1대수층과 2대수층)내 지하수흐름을 모식화한 프락탈모델이 개발되었다 이때 양수정내 지하수유입은 1대수층에서만 유래한다. 본 모델은 우물저장과 우물손실을 고려할 수 있어서 양수초기의 지하수위 변화를 정확하게 파악할 수 있는 잇점이 있다. 여러 가지 유동차원에 대해서, 1대수층의 수리전도도가 2대수층보다 더 크고, 비저유율이 2대수층보다 더 낮은 경우 (case 1)와 1대수층의 수리전도도가 2대수층보다 더 작고, 비저유율이 2대수층보다 더 큰 경우 (case 1)에 대해서 표준곡선을 작성하였으며, 이들 곡선의 특성을 분석하였다. 본 모델은 양수정과 관측정의 수위하강이 서로 다른 거동을 보여주는 양수시험자료를 해석하는데 유용하게 쓰일 수 있을 것이다. A dual-permeability fractal model of fluid flow is proposed. The model simulates groundwater flow in fissured dual aquifer system composed of Aquifer 1 and Aquifer 2. For this model. groundwater flow originates only from Aquifer 1 on the pumping well. The model considers wellbore storage and skin effects at the pumping well and then shows exact drawdown at the early time of pumping. Type curves for different flow dimensions and for two cases are presented and analyzed. The case 1 represents the aquifer system which consists of Aquifer 1 with low permeability and high specific storage and Aquifer 2 with high permeability and low specific storage. The case 2 is inverse to the case 1. Dimensionless drawdown curves in Aquifer 1 and Aquifer 2 shows characteristic trend each other. Consequently, the model will be useful to analyze pumping test data of different draw down patterns on the pumping well and observation wells.
Three-dimensional Printing of Shape Memory Alloys
Carreno-Morelli E.,Martinerie S.,Bidaux J.E. 한국분말야금학회 2006 한국분말야금학회 학술대회논문집 Vol.2006 No.1
3D printing of NiTi alloys has been successfully achieved. A novel printing process has been developed and used, which consists in selective deposition of a solvent on a granule bed. The granules are composed of metal powders and thermoplastic binder, which are mixed and sieved by conventional methods. A sound green strength is obtained after solvent evaporation. Sintered parts exhibit good density, proper phase composition and shape memory behaviour.