📢#PaperAlert#PoroMechanics Thermo-mechanical modelling of spalling around the deposition boreholes in an underground nuclear waste repository during its thermal phase — Saceanu et al., Int. J. Rock Mech. Min. Sci. https://t.co/eHm6fz8T3r
📢#PaperAlert#PoroMechanics Are maximum magnitudes of induced earthquakes controlled by pressure diffusion? — Langenbruch et al., Philosophical Transactions of the Royal Society A https://t.co/usn1d4njQX
📢#PaperAlert#PoroMechanics Synthesizing realistic sand assemblies with denoising diffusion in latent space — Vlassis et al., International Journal for Numerical and Analytical Methods in Geomechanics @Poromechanics https://t.co/PFpLCDi6Ky
📢#PaperAlert#PoroMechanics Modeling patchy saturation of fluids in nanoporous media probed by ultrasound and optics — B. Gurevitch et al., Phys. Rev. E https://t.co/Moz9NjtzME
On this novel fabric-based jamming phase diagram, we showed that a unifying Critical Fabric Surface (CFS) exists for initially unjammed, fragile/ shear jammed, and jammed granular materials at steady-state shearing.
Our new paper published in Soft Matter (https://t.co/gxdmmb5wtJ) explores the possibility of identifying the phase states of frictional granular materials solely through the fabric (geometrical) characteristics of the assembly.
Thanks to Prof. Zimmerman from @ESEImperial for sharing his lectures on "Geomechanics and Pressure Transient Analysis" through our EMI Poromechanics committee. Please also check out other amazing Poromechanics Educational Resources here https://t.co/AC2hZANuDq (@DNEGeomechanics)!
Check out the newest educational content "Geomechanics and Pressure Transient Analysis" in the @EPoromechanics resource website (https://t.co/6HBJHEenvp) kindly shared by Prof. Zimmerman from @ESEImperial
We have held a successful IAS Symposium on #Computational#Geomechanics (#CG2024) last week at @hkust. Thank all 65 invited speakers for contributing to this intense, stimulating 4 full-day conference and for being an inspiration for young students and researchers.
I am thrilled to share that my research group has just received the prestigious NSF CAREER award! This grant will fuel our investigations into understanding how soils evolve their grain sizes when subjected to long-term extreme loadings. https://t.co/umXon2w1AS
The research outcomes will aid in better engineering critical civil infrastructure in the era of climate change. I'm grateful for this opportunity and excited to contribute to the field of geotechnical engineering, geoscience, and engineering mechanics.
It is my pleasure to lead the August 2023 @iMechanica2006 Journal Club discussions. I had a lot of fun writing this post on my most favorite material - granular systems. Any discussions are welcome!
https://t.co/KrieBbbnXP
Please help circulating -- a 3-years postdoc position in Sydney in stochastic computations of granular flows (@Sydney_Uni@Eng_IT_Sydney@SciGEM_usyd): https://t.co/JHS2FwT1vg
By explicitly resolving the repulsive disjoining pressure induced by adsorption and the transport of sorptive species under nanoconfinement near crack tip, we mechanistically captured the famous Wiederhorn's 1967 data on glass subcritical crack growth under variable RHs.