activity
20182022
most citedFast reactive flow simulations using analytical Jacobian and dynamic load balancing in OpenFOAM

52 citations · 54 across the 3 of their papers we have counts for

collaborators

6 papers

physics.flu-dyn2022★ 2 cited

Implementation of Analytical Jacobian and Chemical Explosive Mode Analysis (CEMA) in OpenFOAM

Mahmoud Gadalla

This report presents the implementation details of the chemical explosive mode analysis (CEMA), using analytical Jacobian formulation, into OpenFOAM.

cs.CE2021

A load balanced chemistry model with analytical Jacobian for faster reactive simulations in OpenFOAM

Bulut Tekgül, Heikki Kahila, Petteri Peltonen +3

In this study, we introduce a novel open-source chemistry model for OpenFOAM to speed-up the reactive computational fluid dynamics (CFD) simulations using finite-rate chemistry. Fi…

physics.flu-dyn2021★ 52 cited

Fast reactive flow simulations using analytical Jacobian and dynamic load balancing in OpenFOAM

Ilya Morev, Bulut Tekgül, Mahmoud Gadalla +5

Detailed chemistry-based computational fluid dynamics (CFD) simulations are computationally expensive due to the solution of the underlying chemical kinetics system of ordinary dif…

math.NA2020

On the comparison of LES data-driven reduced order approaches for hydroacoustic analysis

Mahmoud Gadalla, Marta Cianferra, Marco Tezzele +3

In this work, Dynamic Mode Decomposition (DMD) and Proper Orthogonal Decomposition (POD) methodologies are applied to hydroacoustic dataset computed using Large Eddy Simulation (LE…

cs.CE2019

Efficient Reduction in Shape Parameter Space Dimension for Ship Propeller Blade Design

Andrea Mola, Marco Tezzele, Mahmoud Gadalla +4

In this work, we present the results of a ship propeller design optimization campaign carried out in the framework of the research project PRELICA, funded by the Friuli Venezia Giu…

math.NA2018

Model Order Reduction by means of Active Subspaces and Dynamic Mode Decomposition for Parametric Hull Shape Design Hydrodynamics

Marco Tezzele, Nicola Demo, Mahmoud Gadalla +2

We present the results of the application of a parameter space reduction methodology based on active subspaces (AS) to the hull hydrodynamic design problem. Several parametric defo…