Alt-Epping, Peter

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2015

Mazurek, Martin; Oyama, Takahiro; Wersin, Paul; Alt-Epping, Peter (2015). Pore-water squeezing from indurated shales. Chemical geology, 400, pp. 106-121. Elsevier 10.1016/j.chemgeo.2015.02.008

Wanner, Christoph; Druhan, Jennifer L.; Amos, Richard T.; Alt-Epping, Peter; Steefel, Carl I. (2015). Benchmarking the simulation of Cr isotope fractionation. Computational geosciences, 19(3), pp. 497-521. Baltzer Science Publishers 10.1007/s10596-014-9436-9

Mayer, K. Ulrich; Alt-Epping, Peter; Jacques, Diederik; Arora, Bhavna; Steefel, Carl I. (2015). Benchmark problems for reactive transport modeling of the generation and attenuation of acid rock drainage. Computational geosciences, 19(3), pp. 599-611. Baltzer Science Publishers 10.1007/s10596-015-9476-9

Xie, Mingliang; Mayer, K.U.; Claret, F.; Alt-Epping, Peter; Jacques, D.; Steefel, C.I.; Chiaberge, C.; Simunek, J. (2015). Implementation and evaluation of permeability-porosity and tortuosity-porosity relationships linked to mineral dissolution-precipitation. Computational geosciences, 19(3), pp. 655-671. Baltzer Science Publishers 10.1007/s10596-014-9458-3

Hu, L.; Bayer, P.; Alt-Epping, Peter; Tatomir, A.; Sauter, M.; Brauchler, R. (2015). Time-lapse pressure tomography for characterizing CO2 plume evolution in a deep saline aquifer. Journal of Greenhouse Gas Control, 39, pp. 91-106. Elsevier 10.1016/j.ijggc.2015.04.013

2014

Zhao, Chongbin; Hobbs, Bruce; Alt-Epping, Peter (2014). Modeling of ore-forming and geoenvironmental systems: Roles of fluid flow and chemical reaction processes. Journal of Geochemical Exploration, 144, pp. 3-11. Elsevier 10.1016/j.gexplo.2014.03.003

Diamond, Larryn William; Alt-Epping, Peter (2014). Predictive modelling of mineral scaling, corrosion and the performance of solute geothermometers in a granitoid-hosted, enhanced geothermal system. Applied geochemistry, 51, pp. 216-228. Pergamon 10.1016/j.apgeochem.2014.09.017

Alt-Epping, Peter; Tournassat, C.; Rasouli, P.; Steefel, C. I.; Mayer, K. U.; Jenni, Andreas; Mäder, Urs; Sengor, S. S.; Fernández, R. (2014). Benchmark reactive transport simulations of a column experiment in compacted bentonite with multispecies diffusion and explicit treatment of electrostatic effects. Computational geosciences, 19(3), pp. 535-550. Baltzer Science Publishers 10.1007/s10596-014-9451-x

2013

Alt-Epping, P.; Waber, Niklaus; Diamond, L. W.; Eichinger, L. (2013). Reactive transport modeling of the geothermal system at Bad Blumau, Austria: Implications of the combined extraction of heat and CO2. Geothermics, 45, pp. 18-30. Pisa: Pergamon 10.1016/j.geothermics.2012.08.002

Alt-Epping, Peter; Diamond, Larryn William; Häring, M.O.; Ladner, F.; Meier, Daniela (2013). Prediction of water–rock interaction and porosity evolution in a granitoid-hosted enhanced geothermal system, using constraints from the 5 km Basel-1 well. Applied geochemistry, 38, pp. 121-133. Pergamon 10.1016/j.apgeochem.2013.09.006

2011

Koroleva, M.; Alt-Epping, P.; Mazurek, M. (2011). Large-scale tracer profiles in a deep claystone formation (Opalinus Clay at Mont Russelin, Switzerland): implications for solute transport processes and transport properties of the rock. Chemical geology, 280(3-4), pp. 284-296. Amsterdam: Elsevier 10.1016/j.chemgeo.2010.11.016

Mazurek, Martin; Alt-Epping, Peter; Bath, Adrian; Gimmi, Thomas; Waber, Niklaus; Buschaert, Stéphane; De Cannière, Pierre; De Craen, Mieke; Gautschi, Andreas; Savoye, Sébastien; Vinsot, Agnès; Wemaere, Isabelle; Wouters, Laurent (2011). Natural tracer profiles across argillaceous formations. Applied geochemistry, 26(7), pp. 1035-1064. Oxford: Pergamon 10.1016/j.apgeochem.2011.03.124

Tournassat, Christophe; Alt-Epping, Peter; Gaucher, Eric C.; Gimmi, Thomas; Leupin, Olivier X.; Wersin, Paul (2011). Biogeochemical processes in a clay formation in situ experiment: Part F - Reactive transport modelling. Applied geochemistry, 26(6), pp. 1009-1022. Oxford: Pergamon 10.1016/j.apgeochem.2011.03.009

2010

Alt-Epping, Peter; Zhao, Chongbin (2010). Reactive mass transport modelling of a three-dimensional vertical fault zone with a finger-like convective flow regime. Journal of Geochemical Exploration, 106(1-3), pp. 8-23. Elsevier 10.1016/j.gexplo.2009.12.007

Alt-Epping, Peter; Diamond, Larryn William; Waber, Niklaus (2010). Implications of rock composition and conditions in deep geothermal reservoirs for chemical processes during fluid circulation. In: Birkle, P.; Torres-Alvarado, I.S. (eds.) 13th Internat. Symp. on Water-Rock Interaction (pp. 129-132). London: Taylor & Francis

2009

Pekala, Marek; Kramers, Jan Dirk; Waber, Niklaus; Gimmi, Thomas; Alt-Epping, Peter (2009). Transport of 234U in the Opalinus Clay on centimetre to decimetre scales. Applied geochemistry, 24(1), pp. 138-152. Pergamon 10.1016/j.apgeochem.2008.09.013

Mazurek, Martin; Alt-Epping, Peter; Bath, Adrian; Gimmi, Thomas; Waber, Niklaus (2009). Natural tracer profiles across argillaceous formations: The CLAYTRAC project. OECD/NEA Report: Vol. 6253. Paris, France: OECD Nuclear Energy Agency

2008

Berger, Alfons; Burri, Thomas; Alt-Epping, Peter; Engi, Martin (2008). Tectonically controlled fluid flow and water-assisted melting in the middle crust: An example from the Central Alps. Lithos, 102(3-4), pp. 598-615. Amsterdam: Elsevier 10.1016/j.lithos.2007.07.027

2007

Mazurek, M.; Alt-Epping, P.; Gimmi, T.; Waber, H.N.; Bath, A.; Buschaert, S.; Gautschi, A. (2007). Tracer profiles across argillaceous formations: A tool to constrain transport processes. In: Bullen, T.D.; Wang, Y. (eds.) 12th Internat. Symp. on Water-Rock Interaction WRI-12 1 (pp. 767-771). London: Taylor & Francis Group

2003

Alt-Epping, Peter; Smith, Leslie (2003). Transient convective circulation in a sedimented ridge setting: Implications for applying geochemical data to estimate permeability. Journal of Geophysical Research: Solid Earth, 108(B5), pp. 1-15. American Geophysical Union 10.1029/2002JB001930

2001

Alt-Epping, P.; Smith, L. (2001). Computing geochemical mass transfer and water/rock ratios in submarine hydrothermal systems: implications for estimating the vigour of convection. Geofluids, 1(3), pp. 163-181. Wiley 10.1046/j.1468-8123.2001.00014.x

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