Publicaties

2026

Accelerated multi-scale modelling of wet granular systems (2026)[Thesis › PhD Thesis - Research UT, graduation UT]. Saghafian Larijani, R.https://doi.org/10.3990/1.9789036572828Design of a digital framework for upscaled particle calibration with powder characterization techniques (2026)[Thesis › EngD Thesis]. University of Twente. Mahdavy, S.Micropolar fields in granular materials: Theory and simulations (2026)[Thesis › PhD Thesis - Research UT, graduation UT]. University of Twente. Winkelmann, M.https://doi.org/10.3990/1.9789036572170Experimental study of soil penetration strategies for earthworm-like robots (2026)Bioinspiration & biomimetics, 21(3). Article 036005. Brodoline, I., Anselmucci, F., Sadeghi, A. & Magnanimo, V.https://doi.org/10.1088/1748-3190/ae60f3Microstructural insight into the effect of fine content on frost heave in clayey sand mixtures (2026)Cold Regions Science and Technology, 241. Article 104699. Guida, G., Anselmucci, F., Casini, F. & Magnanimo, V.https://doi.org/10.1016/j.coldregions.2025.104699

2025

A comparative study of granular solid-like and fluid-like constitutive laws (2025)In Powders & Grains 2025 – 10th International Conference on Micromechanics on Granular Media (EPJ Web of Conferences ; Vol. 340). Lubbe, R., Cheng, H., Luding, S. & Magnanimo, V.https://doi.org/10.1051/epjconf/202534002014CFD-DEM simulations of mixing in dense and dilute flows (2025)EPJ Web of Conferences , 340. Article 08009. Füvesi, B., Esgandari, B., Schneiderbauer, S., Magnanimo, V. & Luding, S.https://doi.org/10.1051/epjconf/202534008009Low to high shear rate powder rheology in a rotational rheometer (2025)EPJ Web of Conferences , 340. Article 11008. Zharbossyn, A., Mahdavy, S., Barletta, D., Orefice, L., Magnanimo, V., Luding, S. & Poletto, M.https://doi.org/10.1051/epjconf/202534011008Wet granulation multiscale modelling accelerated via CG-DEM (2025)EPJ Web of Conferences , 340. Article 09003. Saghafian Larijani, R., Luding, S. & Magnanimo, V.https://doi.org/10.1051/epjconf/202534009003Root and fibre reinforcement impacts on pore dynamics and water storage capacity (2025)In Proceedings RootS25 : 3rd International Workshop on Soil-Vegetation-Atmosphere Interaction. Article 13 (Proceedings RootS; Vol. 2025). International Society for Soil Mechanics and Geotechnical Engineering. Anselmucci, F., Cheng, H., Alam, M., Das, A. & Magnanimo, V.https://doi.org/10.53243/RootS2025-13

Onderzoeksprofielen

Lopende projecten

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POSEIDON

Improve offshore infrastructure resilience against geohazards towards a changing climate

Bio-inspired burrowing robot for soil penetration in limited-access sites

Voltooide projecten

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Dutch public summary Miljoenen kuub sedimenten worden jaarlijks in Europa opgebaggerd en als afval verwijderd. GREENSED richt zich op het ontwikkelen van geavanceerde behandelingen voor vervuilde sedimenten, met behulp van bijproducten vanuit de lokale economie. Afvalstoffen worden hierdoor omgezet in het bysed-ment, een vernieuwend bouwmateriaal nuttig voor de duurzame ontwikkeling van onze samenleving.

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Adres

Universiteit Twente

Horst Complex (gebouwnr. 20), kamer Z210
De Horst 2
7522 LW Enschede

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