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Ken Kamrin

Massachusetts Institute of Technology · US
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Area of research
Computational Mechanics · Management, Monitoring, Policy and Law
Research interest
Research interests include Mechanics, Granular material, Rheology, Computer science, Statistical physics, and Classical mechanics.
h-index
citations
2,421
works
37
NIH funding
primary concept
email

Recent publications

Advances in Modeling Dense Granular Media
Annual Review of Fluid Mechanics 2024cited by 55position: firstdoi
Grain shape effects in bed load sediment transport
Nature 2023cited by 112position: middledoi
Bioinspired, ingestible electroceutical capsules for hunger-regulating hormone modulation
Science Robotics 2023cited by 61position: middledoi
Stabilized mixed material point method for incompressible fluid flow analysis
Computer Methods in Applied Mechanics and Engineering 2023cited by 36position: middledoi
Analysis and mitigation of spatial integration errors for the material point method
International Journal for Numerical Methods in Engineering 2023cited by 24position: lastdoi
Modelling silo clogging with non-local granular rheology
Journal of Fluid Mechanics 2022cited by 28position: lastdoi
Surprising simplicity in the modeling of dynamic granular intrusion
Science Advances 2021cited by 60position: lastdoi
A coupled finite volume and material point method for two-phase simulation of liquid–sediment and gas–sediment flows
Computer Methods in Applied Mechanics and Engineering 2021cited by 36position: lastdoi
Efficacy of simple continuum models for diverse granular intrusions
Soft Matter 2021cited by 21position: lastdoi
Efficacy of simple continuum models for diverse granular intrusions
arXiv (Cornell University) 2021cited by 1position: lastdoi
Power-Law Scaling in Granular Rheology across Flow Geometries
Physical Review Letters 2020cited by 106position: lastdoi
Mitigating memory effects during undulatory locomotion on hysteretic materials
eLife 2020cited by 40position: middledoi
Expanded scaling relations for locomotion in sloped or cohesive granular beds
Physical Review Fluids 2020cited by 8position: lastdoi
Non-locality in Granular Flow: Phenomenology and Modeling Approaches
Frontiers in Physics 2019cited by 102position: firstdoi
Modeling of the interaction of rigid wheels with dry granular media
Journal of Terramechanics 2019cited by 63position: lastdoi
A general fluid–sediment mixture model and constitutive theory validated in many flow regimes
Journal of Fluid Mechanics 2018cited by 123position: lastdoi
Hybrid grains
ACM Transactions on Graphics 2018cited by 85position: middledoi
Microscopic Description of the Granular Fluidity Field in Nonlocal Flow Modeling
Physical Review Letters 2017cited by 141position: lastdoi
General scaling relations for locomotion in granular media
Physical review. E 2017cited by 45position: lastdoi
Intrusion rheology in grains and other flowable materials
Nature Materials 2016cited by 98position: lastdoi
Continuum modeling of projectile impact and penetration in dry granular media
Journal of the Mechanics and Physics of Solids 2016cited by 70position: lastdoi
Coupled dynamics of flow, microstructure, and conductivity in sheared suspensions
Soft Matter 2016cited by 9position: lastdoi
Foreword on the special issue: from discrete particles to continuum models of granular mechanics
Computational Particle Mechanics 2016cited by 0position: firstdoi
General scaling relations for locomotion in granular media
DSpace@MIT (Massachusetts Institute of Technology) 2016cited by 0position: lastdoi
A Microscopic Description of the Granular Fluidity Field in Nonlocal Flow Modeling
DSpace@MIT (Massachusetts Institute of Technology) 2016cited by 0position: lastdoi
Continuum modelling and simulation of granular flows through their many phases
Journal of Fluid Mechanics 2015cited by 232position: lastdoi
Modeling growth paths of interacting crack pairs in elastic media
Soft Matter 2015cited by 22position: lastdoi
Modeling tensorial conductivity of particle suspension networks
Soft Matter 2015cited by 10position: lastdoi
Nonlocal modeling of granular flows down inclines
Soft Matter 2014cited by 153position: firstdoi
Continuum Modeling of Secondary Rheology in Dense Granular Materials
Physical Review Letters 2014cited by 87position: lastdoi

Grants

No grants ingested yet.

Frequent collaborators

David L. Henann · Massachusetts Institute of Technology6 papers (2013–2014)Shashank Agarwal · Massachusetts Institute of Technology5 papers (2019–2021)Daniel I. Goldman · Thomas Jefferson University4 papers (2019–2024)Qiong Zhang · Massachusetts Institute of Technology4 papers (2017–2023)Karl Iagnemma · Massachusetts Institute of Technology3 papers (2016–2019)Carmine Senatore · University of Geneva3 papers (2016–2019)Stephen Townsend · IIT@MIT3 papers (2016–2020)Aaron S. Baumgarten · Massachusetts Institute of Technology3 papers (2018–2023)Sachith Dunatunga · Massachusetts Institute of Technology3 papers (2015–2022)Andras Karsai · Georgia Institute of Technology3 papers (2021–2021)John J. Valenza · IIT@MIT2 papers (2013–2013)Tyler Olsen · IIT@MIT2 papers (2015–2016)D. Carrington Motley · IIT@MIT2 papers (2016–2017)R. Ghelichi · Massachusetts Institute of Technology2 papers (2014–2015)Qiong Zhang · IIT@MIT2 papers (2016–2016) · 2 papers (2013–2013)James Slonaker · IIT@MIT2 papers (2016–2017)Giovanni Traverso · Massachusetts Institute of Technology.1 papers (2023–2023)K. M. Hill · University of Minnesota, Twin Cities1 papers (2024–2024)Jennifer M. Rieser · Emory University1 papers (2020–2020)
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