Approaches to modeling coupled thermal, hydrological, and chemical processes in the drift scale heater test at Yucca Mountain

Author:

Sonnenthal E.,Ito A.,Spycher N.,Yui M.,Apps J.,Sugita Y.,Conrad M.,Kawakami S.

Publisher

Elsevier BV

Subject

Geotechnical Engineering and Engineering Geology

Reference32 articles.

1. Thermo–hydro–chemical predictive analysis for the Drift-Scale Heater Test. Level 4 milestone SPY289M4;Sonnenthal,1998

2. Modeling multiphase non-isothermal fluid flow and reactive geochemical transport in variably saturated fractured rocks: 2. Applications to supergene copper enrichment and hydrothermal flows;Xu;Amer J Sci,2001

3. Experimental and numerical simulation of dissolution and precipitation: implications for fracture sealing at Yucca Mountain, Nevada;Dobson;J Contam Hydrol,2003

4. Thermal testing measurements report,2004

5. Pretest analysis of the thermal–hydrological conditions of the ESF drift scale test. Yucca mountain project level 4 milestone SP9322M4;Birkholzer,1997

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