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Consortium of Swiss Academic Libraries

Evaporation from Wavy Porous Surfaces into Turbulent Airflows

Haghighi, Erfan ; Or, Dani

In: Transport in Porous Media, 2015, vol. 110, no. 2, p. 225-250

Université de Fribourg

Resolution limit of taylor dispersion: an exact theoretical study

Taladriz-Blanco, Patricia ; Rothen-Rutishauser, Barbara ; Petri-Fink, Alke ; Balog, Sandor

In: Analytical Chemistry, 2020, vol. 92, no. 1, p. 561–566

Taylor dispersion is a microfluidic analytical technique with a high dynamic range and therefore is suited well to measuring the hydrodynamic radius of small molecules, proteins, supramolecular complexes, macromolecules, nanoparticles and their self- assembly. Here we calculate an unaddressed yet fundamental property: the limit of resolution, which is defined as the smallest change in the...

Université de Fribourg

An analytical algorithm of porosity–permeability for porous and fractured media: extension to reactive transport conditions and fitting via flow-through experiments within limestone and dolomite

Erol, Selçuk ; Fowler, Sarah Jane ; Nehler, Mathias ; De Boever, Eva ; Harcouët-Menou, Virginie ; Laenen, Ben

In: Transport in Porous Media, 2019, vol. 129, no. 1, p. 343–383

Accurate prediction of permeability evolution is essential for forecasting the long-term performance and lifetime of hydrothermal reservoirs, an important goal in the geothermal, ore, and petroleum industries. Erol et al. (Transp Porous Media 120(2):327–358, 2017. https://doi.org/10.1007/s11242-017-0923-z) introduced a general (non-empirical) analytical Kozeny–Carman type equation for...

Consortium of Swiss Academic Libraries

Wall-Driven Versus Pressure Gradient-Driven Flows in Porous Media

Magyari, Eugen

In: Transport in Porous Media, 2014, vol. 103, no. 2, p. 181-190

Université de Fribourg

A dedicated target capture approach reveals variable genetic markers across micro- and macro-evolutionary time scales in palms

de La Harpe, Marylaure ; Hess, Jaqueline ; Loiseau, Oriane ; Salamin, Nicolas ; Lexer, Christian ; Paris, Margot

In: Molecular Ecology Resources, 2019, p. -

Understanding the genetics of biological diversification across micro‐ and macro‐ evolutionary time scales is a vibrant field of research for molecular ecologists as rapid advances in sequencing technologies promise to overcome former limitations. In palms, an emblematic, economically and ecologically important plant family with high diversity in the tropics, studies of diversification at...