Impact of spatially correlated pore-scale heterogeneity on drying porous media

Author:

Borgman Oshri1ORCID,Fantinel Paolo2,Lühder Wieland2,Goehring Lucas23ORCID,Holtzman Ran1ORCID

Affiliation:

1. Department of Soil and Water Sciences; Hebrew University of Jerusalem; Rehovot Israel

2. Max Planck Institute for Dynamics and Self-Organization; Göttingen Germany

3. School of Science and Technology; Nottingham Trent University; Nottingham UK

Funder

State of Lower Saxony and the Volkswagen Foundation

Israel Science Foundation

Israel Ministry of Agriculture and Rural Development

Publisher

American Geophysical Union (AGU)

Subject

Water Science and Technology

Reference40 articles.

1. 3M 2016 Heat Transfer Applications Using 3M Novec Engineered Fluids http://multimedia.3m.com/mws/media/1091997O/3m-novec-engineered-fluids-for-heat-transfer-line-card.pdf

2. Analysis of the impact of surface layer properties on evaporation from porous systems using column experiments and modified definition of characteristic length;Assouline;Water Resour. Res.,2014

3. Imaging and image-based fluid transport modeling at the pore scale in geological materials: A practical introduction to the current state-of-the-art;Bultreys;Earth Sci. Rev.,2016

4. Three periods of drying of a single square capillary tube;Chauvet;Phys. Rev. Lett.,2009

5. Strongly accelerated and humidity-independent drying of nanochannels induced by sharp corners;Eijkel;Phys. Rev. Lett.,2005

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