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D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
46
Citations
11179
World Ranking
1410
National Ranking
32

Overview

Andrea Colagrossi is affiliated with the National Research Council (CNR) in Italy and specializes in engineering, with a strong focus on computational mechanics. Their research primarily involves fluid dynamics simulations and interactions, supported by extensive work in lattice Boltzmann simulation studies as well as fluid dynamics and heat transfer.

The scientist's recent publications further outline a focused engagement in smoothed particle hydrodynamics (SPH) and computational fluid dynamics. Selected recent works include:

  • Detailed study on the extension of the δ-SPH model to multi-phase flow, 2020, published in Computer Methods in Applied Mechanics and Engineering
  • The δ-ALE-SPH model: An arbitrary Lagrangian-Eulerian framework for the δ-SPH model with particle shifting technique, 2020, published in Computers & Fluids
  • Inclusion of an acoustic damper term in weakly-compressible SPH models, 2023, published in Journal of Computational Physics
  • Smoothed particle hydrodynamics method from a large eddy simulation perspective. Generalization to a quasi-Lagrangian model, 2021, published in Physics of Fluids
  • Derivation of an improved smoothed particle hydrodynamics model for establishing a three-dimensional numerical wave tank overcoming excessive numerical dissipation, 2023, published in Physics of Fluids

Andrea Colagrossi collaborates frequently with several co-authors, including S. Marrone, D. Durante, M. Antuono, Chiara Pilloton, and David Le Touzé. These partnerships reflect a network engaged in advancing computational mechanics within fluid dynamics contexts.

The scientist's publication history shows a preference for specific scholarly venues. Frequent publication outlets encompass:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Computer Methods in Applied Mechanics and Engineering
  • Physics of Fluids
  • Ocean Engineering
  • Physical Review Fluids

Their primary fields of study consist of:

  • Engineering

With subfields of study focusing on:

  • Computational Mechanics
  • Ocean Engineering
  • General Health Professions
  • Aerospace Engineering
  • Ecology

Main research topics addressed by Andrea Colagrossi include:

  • Fluid Dynamics Simulations and Interactions
  • Lattice Boltzmann Simulation Studies
  • Fluid Dynamics and Heat Transfer
  • Fluid Dynamics and Vibration Analysis
  • Fluid Dynamics and Turbulent Flows
  • Ship Hydrodynamics and Maneuverability
  • Computational Fluid Dynamics and Aerodynamics

Best Publications

  • Numerical simulation of interfacial flows by smoothed particle hydrodynamics

    Andrea Colagrossi;Maurizio Landrini

  • δ-SPH model for simulating violent impact flows

    S. Marrone;M. Antuono;A. Colagrossi;G. Colicchio

  • A simple procedure to improve the pressure evaluation in hydrodynamic context using the SPH

    Diego Molteni;Andrea Colagrossi

  • Free-surface flows solved by means of SPH schemes with numerical diffusive terms

    Matteo Antuono;Andrea Colagrossi;Salvatore Marrone;Diego Molteni

  • Numerical diffusive terms in weakly-compressible SPH schemes

    Matteo Antuono;Andrea Colagrossi;Salvatore Marrone

  • An Hamiltonian interface SPH formulation for multi-fluid and free surface flows

    N. Grenier;M. Antuono;A. Colagrossi;D. Le Touzé

  • The δplus-SPH model: Simple procedures for a further improvement of the SPH scheme

    P.N. Sun;A. Colagrossi;S. Marrone;A.M. Zhang

  • A set of canonical problems in sloshing, Part I: Pressure field in forced roll-comparison between experimental results and SPH

    L. Delorme;A. Colagrossi;A. Souto-Iglesias;R. Zamora-Rodríguez

  • Nonlinear water wave interaction with floating bodies in SPH

    B. Bouscasse;A. Colagrossi;S. Marrone;M. Antuono

  • Theoretical considerations on the free-surface role in the smoothed-particle-hydrodynamics model.

    Andrea Colagrossi;Matteo Antuono;David Le Touzé

  • Particle packing algorithm for SPH schemes

    Andrea Colagrossi;B. Bouscasse;Matteo Antuono;Salvatore Marrone

  • Multi-resolution Delta-plus-SPH with tensile instability control: Towards high Reynolds number flows

    P. N. Sun;Andrea Colagrossi;Salvatore Marrone;Matteo Antuono

  • Simulating 2D open-channel flows through an SPH model

    I. Federico;S. Marrone;A. Colagrossi;F. Aristodemo

  • An accurate SPH modeling of viscous flows around bodies at low and moderate Reynolds numbers

    Salvatore Marrone;Andrea Colagrossi;Matteo Antuono;Giuseppina Colicchio

  • Smoothed particle hydrodynamics and its applications in fluid-structure interactions

    A-man Zhang;Peng-nan Sun;Fu-ren Ming;A. Colagrossi

  • Propagation of gravity waves through an SPH scheme with numerical diffusive terms

    Matteo Antuono;Andrea Colagrossi;Salvatore Marrone;Claudio Lugni

  • A consistent approach to particle shifting in the δ-Plus-SPH model

    P.N. Sun;A. Colagrossi;S. Marrone;M. Antuono

  • Theoretical Analysis of the No-Slip Boundary Condition Enforcement in SPH Methods

    Fabricio Maciá;Matteo Antuono;Leo M. González;Andrea Colagrossi

  • Energy balance in the δ-SPH scheme

    Matteo Antuono;S. Marrone;A. Colagrossi;B. Bouscasse

  • Theoretical analysis and numerical verification of the consistency of viscous smoothed-particle-hydrodynamics formulations in simulating free-surface flows.

    Andrea Colagrossi;Matteo Antuono;Antonio Souto-Iglesias;David Le Touzé

  • Viscous bubbly flows simulation with an interface SPH model

    N. Grenier;D. Le Touzé;A. Colagrossi;M. Antuono

  • Study of ship wave breaking patterns using 3D parallel SPH simulations

    S. Marrone;B. Bouscasse;A. Colagrossi;M. Antuono

  • Prediction of energy losses in water impacts using incompressible and weakly compressible models

    S. Marrone;A. Colagrossi;A. Di Mascio;D. Le Touzé

Frequent Co-Authors

A-Man Zhang
A-Man Zhang Harbin Engineering University
Maurizio Brocchini
Maurizio Brocchini Marche Polytechnic University

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