Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 63 checked references that resolve
resolves10.1007/s10035-016-0687-0Discrete numerical modeling of loose soil with spherical particles and interparticle rolling friction
resolves10.1002/nag.2152Dominant grains network and behavior of sand–silt mixtures: stress–strain modeling
resolves10.1139/t00-030The statistics of embankment dam failures and accidents
resolves10.1016/j.sandf.2015.09.027Suffusion-induced change in spatial distribution of fine fractions in embankment subjected to seepage flow
resolves10.1007/s10035-017-0773-yContact forces distribution for a granular material from a Monte Carlo study on a single grain
resolves10.1016/j.sandf.2014.06.024Experimental investigations on suffusion characteristics and its mechanical consequences on saturated cohesionless soil
resolves10.1139/T10-070A hydromechanical relation governing internal stability of cohesionless soil
resolves10.1680/geot.11.P.058Experimental investigation of initiation of backward erosion piping in soils
resolves10.1016/j.crme.2010.10.003Multiscale approaches to describe mechanical responses induced by particle removal in granular materials
resolves10.1007/s11440-015-0388-6A description of internal erosion by suffusion and induced settlements on cohesionless granular matter
resolves10.1016/j.compgeo.2016.10.006Numerical modelling of fluid-induced soil erosion in granular filters using a coupled bonded particle lattice Boltzmann method
resolves10.1016/j.jcp.2016.05.035Modelling of fluid–structure interaction with multiphase viscous flows using an immersed-body method
resolves10.1017/S002211201000306XDiscrete particle simulation of particle–fluid flow: model formulations and their applicability
resolves10.1016/j.ces.2008.08.006Discrete particle simulation of particulate systems: A review of major applications and findings
The 9 references without a DOI — listed, not checked
no DOI — not checkedChang DS (2012) Internal erosion and overtopping erosion of earth dams and landslide dams. Dissertation, Hong Kong University of Science and Technology
no DOI — not checkedDing WT, Xu W (2018) Study on the multiphase fluid–solid interaction in granular materials based on an LBM–DEM coupled method. Powder Technol 314:129–139
no DOI — not checkedFell R, Fry JJ (2013) State of the art on the likelihood of internal erosion of dams and levees by means of testing. In: Bonelli S (ed) Erosion in geomechanics applied to dams and levees. ISTE-Wiley, London, pp 1–99
no DOI — not checkedFry JJ (2012) Introduction to the process of internal erosion in hydraulic structures: embankment dams and dikes. In: Bonelli S (ed) Erosion of geomaterials. ISTE-Wiley, London, pp 1–36
no DOI — not checkedHuang H, Zhang F, Callahan P, Ayoub J (2012) Granular fingering in fluid injection into dense granular media in a Hele–Shaw cell. Phys Rev Lett 108:1–4
no DOI — not checkedKézdi Á (1979) Soil physics: selected topics. Elsevier, Amsterdam
no DOI — not checkedOuyang M, Takahashi A (2015) Influence of initial fines content on fabric of soils subjected to internal erosion. Can Geotech J 15:1–15
no DOI — not checkedUzuoka R, Ichiyama T, Mori T, Kazama M (2012) Hydro-mechanical analysis of internal erosion with mass exchange between solid and water. In: Proceedings of 6th international conference on scour and erosion, Paris, pp 655–662
no DOI — not checkedZhang F, Li M, Peng M et al (2018) Three-dimensional DEM modelling of the stress–strain behaviour for the gap-graded soils subjected to internal erosion. Acta Geotech 1:1–17
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