Advances in Laboratory Testing and Modelling of Soils and Shales
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In this paper, we analyze the effect of the soil on the induced current in a buried wire excited by an external field in the ultrahigh frequency range. We use an extended version of the Messier model, which provides the electromagnetic (EM) properties of d ...
Thermally induced group effects characterise closely spaced energy piles. It has been observed experimentally that the behaviour of energy piles subjected to mechanical and thermal loads, in which the piles are located sufficiently close to each other, is ...
Tall structures such as wind turbines and mobile phone base stations are often installed in remote and hilly locations to gain more power or to have line of sight to end users. Those locations are usually very rocky and characterized by a low-conductivity ...
Dans le cadre du projet Our Common Soils : the Swiss City-Territory as a renewable resource (FNS 2017-2021), le Laboratoire d’urbanisme (EPFL Lab U) propose un séminaire dont les différentes sessions thématiques ont pour objectif d’explorer les relations e ...
Le projet de doctorat « Our Common Soils : L’écosystème des sols infrastructurels dans la ville-territoire alpino-lémanique » envisage de nouvelles formes de (co)habitabilité des aires métropolitaines contemporaines au regard de l’évolution des sols fortem ...
Retaining structures often interact with soils in unsaturated conditions and their performance is influenced by environmental actions. Currently, geotechnical analysis and design approaches mainly consider the soils either totally dry or totally saturated. ...
Dans le cadre du projet Our Common Soils : the Swiss City-Territory as a renewable resource, financé par le Fond National de la Recherche Scientifique pour une durée de quatre ans à compter du 1er octobre 2017, le Laboratoire d'urbanisme (EPFL Lab U) lance ...
Hydromechanical properties of shales are complex due to the involved ma-terial structure, with the solid matrix being mainly formed by swelling clays and porosity dominated by nanometer scale tortuous voids with large aspect ratios. Intrinsic permeability ...
This paper explores the challenges of model parameterization and process representation when simulating multiple hydrologic responses from a highly controlled unsaturated flow and transport experiment with a physically based model. The experiment, conducte ...
Coupling hydrological models with plant physiology is crucial to capture the feedback mechanisms occurring within the soil–plant–atmosphere continuum. However, the ability of such models to describe the spatial variability of plant responses to different e ...