Raphaël Comminal

About Raphaël Comminal

Raphaël Comminal, With an exceptional h-index of 18 and a recent h-index of 18 (since 2020), a distinguished researcher at Danmarks Tekniske Universitet, specializes in the field of Computational Fluid Dynamics, Multiphase Flow, Rheology, Mechanics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Computational analysis of yield stress buildup and stability of deposited layers in material extrusion additive manufacturing

Geometric characterization of orthogonally printed layers in material extrusion additive manufacturing: numerical modeling and experiments

Computational fluid dynamics modelling and experimental analysis of reinforcement bar integration in 3D concrete printing

Integrating reinforcement with 3D concrete printing: experiments and numerical modelling

Viscoelastic simulation and optimisation of the polymer flow through the hot-end during filament-based material extrusion additive manufacturing

Numerical predictions of bottom layer stability in material extrusion additive manufacturing

Computational fluid dynamics modelling of the dimensional stability of deposited layers in material extrusion additive manufacturing

Computational Fluid Dynamics Modelling of Material Extrusion Additive Manufacturing

Raphaël Comminal Information

University

Position

Researcher Ph.D. Department of Mechanical Engineering

Citations(all)

1462

Citations(since 2020)

1391

Cited By

439

hIndex(all)

18

hIndex(since 2020)

18

i10Index(all)

23

i10Index(since 2020)

23

Email

University Profile Page

Google Scholar

Raphaël Comminal Skills & Research Interests

Computational Fluid Dynamics

Multiphase Flow

Rheology

Mechanics

Top articles of Raphaël Comminal

Computational analysis of yield stress buildup and stability of deposited layers in material extrusion additive manufacturing

Additive Manufacturing

2023/6/5

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Geometric characterization of orthogonally printed layers in material extrusion additive manufacturing: numerical modeling and experiments

Progress in Additive Manufacturing

2023/12

Computational fluid dynamics modelling and experimental analysis of reinforcement bar integration in 3D concrete printing

Cement and Concrete Research

2023/11/1

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Integrating reinforcement with 3D concrete printing: experiments and numerical modelling

2022/6/25

Viscoelastic simulation and optimisation of the polymer flow through the hot-end during filament-based material extrusion additive manufacturing

Virtual and Physical Prototyping

2022/4/3

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Numerical predictions of bottom layer stability in material extrusion additive manufacturing

JOM

2022/3

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Computational fluid dynamics modelling of the dimensional stability of deposited layers in material extrusion additive manufacturing

2022

Computational Fluid Dynamics Modelling of Material Extrusion Additive Manufacturing

2022

Investigation on corner precision at different corner angles in material extrusion additive manufacturing: An experimental and computational fluid dynamics analysis

Computational Fluid Dynamics Modelling and Experimental Analysis of Material Extrusion Additive Manufacturing Md. Tusher Mollah

2023/2

A Numerical Investigation of the Inter-Layer Bond and Surface Roughness during the Yield Stress Buildup in Wet-On-Wet Material Extrusion Additive Manufacturing

2022

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Stability and deformations of deposited layers in material extrusion additive manufacturing

Additive Manufacturing

2021/10/1

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Numerical simulation of multi-layer 3D concrete printing

RILEM Technical Letters

2021

Influence of fibers on the flow through the hot-end in material extrusion additive manufacturing

2021

Modelling of 3D concrete printing based on computational fluid dynamics

Cement and Concrete Research

2020/12/1

Numerical modeling of the polymer flow through the hot-end in filament-based material extrusion additive manufacturing

Additive Manufacturing

2020/12/1

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Estimations of interlayer contacts in extrusion additive manufacturing using a CFD model

2020/9/1

Influence of processing parameters on the layer geometry in 3D concrete printing: experiments and modelling

2020/7/6

Experimental and analytical study of the polymer melt flow through the hot-end in material extrusion additive manufacturing

Additive Manufacturing

2020/3/1

Raphaël Comminal
Raphaël Comminal

H-Index: 11

Jon Spangenberg
Jon Spangenberg

H-Index: 14

Mechanics of materials in modern manufacturing methods and processing techniques: Numerical modelling of the mechanics of pultrusion

2020

See List of Professors in Raphaël Comminal University(Danmarks Tekniske Universitet)

Co-Authors

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