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carlomassimo.casciola@uniroma1.it
Carlo Massimo Casciola
Professore Ordinario
Struttura:
DIPARTIMENTO DI INGEGNERIA MECCANICA E AEROSPAZIALE
E-mail:
carlomassimo.casciola@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Publications
Title
Published on
Year
Exact regularized point particle method for multi-phase flows in the two-way coupling regime
JOURNAL OF FLUID MECHANICS
2015
Curvature effects in turbulent premixed flames of H2/air: a DNS study with reduced chemistry
FLOW TURBULENCE AND COMBUSTION
2015
Mechanism of the Cassie-Wenzel transition via the atomistic and continuum string methods
THE JOURNAL OF CHEMICAL PHYSICS
2015
Shock wave formation in the collapse of a vapor nano-bubble
PHYSICAL REVIEW LETTERS
2015
Experiments and dns of a round jet with turbulent inlet
Proceedings - 15th European Turbulence Conference, ETC 2015
2015
Turbulence modulation in particle laden homogeneous shear flow: Exact Regularized Point Particle method
2015
Turbulence modulation in particle laden pipe flow: exact regularized point particle method
Proceedings of the International Symposium on Turbulence, Heat and Mass Transfer
2015
Unraveling the Salvinia Paradox: Design Principles for Submerged Superhydrophobicity
ADVANCED MATERIALS INTERFACES
2015
Drop motion induced by vertical vibrations
NEW JOURNAL OF PHYSICS
2015
Dynamics of a vapor nanobubble collapsing near a solid boundary
JOURNAL OF PHYSICS. CONFERENCE SERIES
2015
Diffuse interface modeling of a radial vapor bubble collapse
JOURNAL OF PHYSICS. CONFERENCE SERIES
2015
Turbulent separation in lower curved wall channels
Proc. 15th EuropeanTurbulence Conference 2015 (ETC15)
2015
Sources and fluxes of scale energy in the overlap layer of wall turbulence
JOURNAL OF FLUID MECHANICS
2015
Direct numerical simulation of hydrogen-carbon monoxide turbulent premixed flame
Direct and Large-Eddy Simulation IX
2015
Transport of micro-bubbles in turbulent shear flows
Journal of Physics: Conference Series
2015
Particle laden homogeneous shear flow in the two- way coupling regime: Exact Regularized Point Particle method
Proceedings THMT 15
2015
Application of the Exact Regularized Point Particle method to turbulent pipe flow in the two-way coupling regime
Proceedings THMT 15
2015
Turbulence dynamics in the separated region of channel flow with a lower curved wall
Proceedings THMT 15
2015
An innovative approach for the simulation of particle-laden flows: exact regularized point particle method
Atti XXII Congresso AIMETa
2015
Turbulence modulation due to inertial particles: exact regularized point particle method
2015
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ERC
PE8_5
KET
Nanotecnologie
Big data & computing
Interessi di ricerca
Progetti di Ricerca
Dynamics of Biological and Artificial Lipid Bilayer Membranes
Numerical and Experimental Modelling of Cavitation Enhanced Endothelial Permeability
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