CV


Majid Malek Jafarian

Majid Malek Jafarian

Associate Professor

Faculty: Engineering

Department: Mechanical Engineering

Degree: Doctoral

Birth Year: 1975

CV
Majid Malek Jafarian

Associate Professor Majid Malek Jafarian

Faculty: Engineering - Department: Mechanical Engineering Degree: Doctoral | Birth Year: 1975 |

Periodic transonic flow simulation using fourier-based algorithm

AuthorsSeyyed majid Malek Jafarian
JournalJournal of Mechanical Science and Technology
Page number4109-4119
Serial number28
Volume number10
IF1.128
Paper TypeFull Paper
Published At2014
Journal GradeISI
Journal TypeTypographic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR،Scopus

Abstract

The present research simulates time-periodic unsteady transonic flow around pitching airfoils via the solution of unsteady Euler and Navier-Stokes equations, using time spectral method (TSM) and compares it with the traditional methods like BDF and explicit structured adaptive grid method. The TSM uses a Fourier representation in time and hence solves for the periodic state directly without resolving transients (which consume most of the resources in a time-accurate scheme). Mathematical tools used here are discrete Fourier transformations. The TSM has been validated with 2D external aerodynamics test cases. These test cases are NACA 64A010 (CT6) and NACA 0012 (CT1 and CT5) pitching airfoils. Because of turbulent nature of flow, Baldwin-Lomax turbulence model has been used in viscous flow analysis with large oscillation amplitude (CT5 type). The results presented by the TSM are compared with experimental data and the two other methods. By enforcing periodicity and using Fourier representation in time that has a spectral accuracy, tremendous reduction of computational cost has been obtained compared to the conventional time-accurate methods. Results verify the small number of time intervals per pitching cycle (just four time intervals) required to capture the flow physics with small oscillation amplitude (CT6) and large oscillation amplitude (CT5) as compared to the other two methods.

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