Effective Thermal Conductivity of a Wet Porous Medium—Presence of Hysteresis When Modeling the Spatial Water Distribution for the Pendular Regime

Author:

Canot Édouard1,Delannay Renaud2,Mansour Salwa3,Muhieddine Mohamad4,March Ramiro5

Affiliation:

1. IRISA, Campus de Beaulieu, Rennes 35000, France e-mail:

2. IPR, Campus de Beaulieu, Rennes 35000, France e-mail:

3. INRIA, Campus de Beaulieu, Rennes 35000, France e-mail:

4. Nabatieh Campus Section V, Nabatieh, Lebanon e-mail:

5. CreAAH, Campus de Beaulieu, Rennes 35000, France e-mail:

Abstract

This paper deals with the heat transfer between two spherical grains separated by a small gap; dry air is located around the grains and a liquid water meniscus is supposed to be present between them. This problem can be seen as a microscale cell of an assembly of solid grains, for which we are looking for the effective thermal conductivity. For a fixed contact angle and according to the volume of the liquid meniscus, two different shapes are possible for the meniscus, giving a “contacting” state (when the liquid makes a true bridge between the two spheres) and a “noncontacting” one (when the liquid is split in two different drops, separated by a thin air layer); the transition between these two states occurs at different times when increasing or decreasing the liquid volume, thus leading to a hysteresis behavior when computing the thermal flux across the domain.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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