A/Prof
Mahmoud KarimiProfile page
Associate Professor
School of Electrical, Mechanical and Biomedical ENG
- Associate ProfessorSchool of Electrical, Mechanical and Biomedical ENG
- University of Technology Sydney, MME, Sydney, NSW, 2007, Australia
FUNDED RESEARCH
Dr Karimi's current research area is in the field of computational hydroacoustics and vibroacoustics to model flow-induced noise and vibration problems with experimental validation. He is interested in the following areas:
1. Flow-induced noise and vibrations prediction and control
2. Mathematical/numerical modeling of mechanical systems
3. Leak detection from buried water pipes
4. Localization of acoustic sources
5. Underwater acoustics
6. Uncertainty quantifications
FUNDED RESEARCH
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- GRANTReducing low frequency noise emitted from heavy vehicles and enclosures in open cut coal minesAustralia Coal Research Limited1 Mar 2026 - 28 Feb 2027People funded by this grant: Williams P, Zhao S, Karimi MAustralian Coal Association Research Program - (C38019)
- GRANTOptimisation of ABH-stiffened plates for radiated noise controlEmbassy of France in Australia8 Sep 2025 - 14 Oct 2025People funded by this grant: Karimi M, Martins D, Maxit L, Meyer VFrance-Australia Science Innovation Collaboration Progam Early Career Fellowships
- SCHOLARSHIPEffect of the Acoustic Black Hole on the turbulence transition of a laminar boundary layer flow over a compliant panelNSW Department of Industry1 Jan 2025 - 31 Dec 2027People funded by this grant: Karimi M, KostasNSW Defence Innovation Network
- SCHOLARSHIPPassive Control of Flow-Induced Vibration of HydrofoilsNSW Department of Industry1 Jan 2025 - 31 Dec 2027People funded by this grant: Karimi M, Williams PNSW Defence Innovation Network
- CONTRACT RESEARCHDesign of mitigation measures for noise in metro tunnelsSydney Metro29 May 2024 - 30 Nov 2025People funded by this grant: Karimi M, Shahrokh, Williams PSydney Metro Contract Research - (SMC-23-0855)
- CONTRACT RESEARCHExperimental reproduction of vibration response of a panel under turbulent boundary layer excitationDefence Science and Technology Group of the Department of Defence28 Feb 2024 - 21 Jun 2024People funded by this grant: Karimi M, Kha JDefence Science and Technology Group of the Department of Defence
- GRANTNumerical modelling of flow-induced vibration of structures: Part 2Defence Science and Technology Group of the Department of Defence16 Jan 2023 - 31 Dec 2023People funded by this grant: Karimi M, Williams PDefence Science and Technology Group of the Department of Defence - (DSTG)
- GRANTAUFRANDE: Australia France Network of Doctoral ExcellenceEuropean Research Council3 Jan 2023 - 31 Jul 2028People funded by this grant: Waibel S, Sindoba Sandiran Y, Karimi M, Mihaita A-SMarie Skłodowska-Curie Actions - COFUND
- GRANTEstimation of unsteady loads from turbulence ingestion on a realistic airfoil geometryDefence Science and Technology Group of the Department of Defence19 Sep 2022 - 19 Dec 2022People funded by this grant: Karimi MDefence Science and Technology Group of the Department of Defence - (DSTG)
- GRANTReducing noise emitted by heavy vehicles in open cut coal minesAustralia Coal Research Limited1 Apr 2022 - 31 Mar 2024People funded by this grant: Karimi M, Wolfgang B, Williams PAustralian Coal Association Research Program - (ACARP C34031)
- GRANTDecarbonising built environments with hempcrete and green wall technologyAustralian Research Council23 Oct 2021 - 22 Oct 2024People funded by this grant: Torpy F, Srubar W, Irga P, Wilkinson S, Gan YARC Linkage Projects - (LP200200779)
- SCHOLARSHIPVibroacoustic Responses of a Finite Submerged Cylindrical Shell Excited by a Turbulent Boundary Layer/Acoustic Diffuse FieldDefence Science and Technology Group of the Department of Defence1 Aug 2020 - 30 Sep 2023People funded by this grant: Karimi MDefence Science and Technology Group of the Department of Defence - (DST Group)
- GRANTEfficient prediction of flow-induced noise for marine vesselsAustralian Research Council12 Nov 2019 - 18 Jun 2022People funded by this grant: Karimi MARC DECRA Scheme - (DE190101412)