Miguel Chavez Modena

About Miguel Chavez Modena

Miguel Chavez Modena, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Universidad Politécnica de Madrid, specializes in the field of Computational Fluid Dynamics.

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

Numerical and Experimental Characterization of a Coanda-Type Industrial Air Amplifier

Experimental and numerical methodology for the aero-thermal analysis of a SACOC heat exchanger

An adjoint-based drag reduction technique for unsteady flows

Numerical and experimental analysis of rounded fins for high speed air-cooled heat exchangers

High-order discontinuous Galerkin approximation for a three-phase incompressible Navier–Stokes/Cahn–Hilliard model

Experimental aerothermal characterization of surface air-cooled oil coolers for turbofan engines

Numerical optimization of the fin shape experiments of a heat conjugate problem surface air/oil heat exchanger (SACOC)

CFD–based erosion and corrosion modeling in pipelines using a high–order discontinuous Galerkin multiphase solver

Miguel Chavez Modena Information

University

Position

- ETSIAE

Citations(all)

193

Citations(since 2020)

172

Cited By

74

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

6

i10Index(since 2020)

6

Email

University Profile Page

Universidad Politécnica de Madrid

Google Scholar

View Google Scholar Profile

Miguel Chavez Modena Skills & Research Interests

Computational Fluid Dynamics

Top articles of Miguel Chavez Modena

Title

Journal

Author(s)

Publication Date

Numerical and Experimental Characterization of a Coanda-Type Industrial Air Amplifier

Applied Sciences

Miguel Chávez-Módena

Alejandro Martinez-Cava

Sergio Marín-Coca

Leo González

2024/2/14

Experimental and numerical methodology for the aero-thermal analysis of a SACOC heat exchanger

Applied Thermal Engineering

Miguel Chávez-Modena

Leo Miguel González

Eusebio Valero

Alberto Broatch

Jorge García-Tíscar

...

2023/1/25

An adjoint-based drag reduction technique for unsteady flows

Physics of Fluids

Carlos J Ruiz-Sánchez

Alejandro Martínez-Cava

Miguel Chávez-Módena

Eusebio Valero

2023/7/1

Numerical and experimental analysis of rounded fins for high speed air-cooled heat exchangers

International Journal of Heat and Mass Transfer

A Broatch

J García-Tíscar

A Felgueroso

M Chávez-Modena

LM González

...

2023/2/1

High-order discontinuous Galerkin approximation for a three-phase incompressible Navier–Stokes/Cahn–Hilliard model

Computers & Fluids

Juan Manzanero

Carlos Redondo

Miguel Chávez-Módena

Gonzalo Rubio

Eusebio Valero

...

2022/8/15

Experimental aerothermal characterization of surface air-cooled oil coolers for turbofan engines

International Journal of Heat and Mass Transfer

A Broatch

P Olmeda

JORGE García-Tíscar

A Felgueroso

M Chávez-Modena

...

2022/7/1

Numerical optimization of the fin shape experiments of a heat conjugate problem surface air/oil heat exchanger (SACOC)

International Journal of Heat and Mass Transfer

Miguel Chávez-Modena

Leo Miguel González

Eusebio Valero

2022/1/1

CFD–based erosion and corrosion modeling in pipelines using a high–order discontinuous Galerkin multiphase solver

Wear

C Redondo

M Chávez–Modena

J Manzanero

G Rubio

E Valero

...

2021/8/15

Wavy walls, a passive way to control the transition to turbulence. detailed simulation and physical explanation

Energies

Andrés Mateo-Gabín

Miguel Chávez

Jesús Garicano-Mena

Eusebio Valero

2021/6/30

Numerical and experimental analysis of thermo-aerodynamic performance in an aero engine surface heat exchanger

Miguel Chavez Modena

Leo Miguel González

Eusebio Valero

Alberto Broatch

Jorge García-Tíscar

...

2021

Multi-physics methodology for phase change due to rapidly depressurised two-phase flows

International Journal of Multiphase Flow

Miguel Chávez-Modena

G Rubio

Eusebio Valero

Daniel Mira

O Lehmkuhl

2021/11/1

Simulations of aerodynamic separated flows using the lattice Boltzmann solver XFlow

Energies

E. Ferrer M. Chávez-Modena

J. L. Martínez

J. A. Cabello

2020/10/2

Optimizing free parameters in the D3Q19 Multiple-Relaxation lattice Boltzmann methods to simulate under-resolved turbulent flows

Journal of Computational Science

Miguel Chávez-Modena

A Martínez-Cava

Gonzalo Rubio

Esteban Ferrer

2020/9/1

Sensitivity gradients of surface geometry modifications based on stability analysis of compressible flows

Physical Review Fluids

Alejandro Martinez-Cava

Miguel Chávez-Modena

Eusebio Valero

Javier de Vicente

Esteban Ferrer

2020/6/18

See List of Professors in Miguel Chavez Modena University(Universidad Politécnica de Madrid)