Damon Honnery

ORCID: 0000-0003-2925-3602
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About
Contact & Profiles
Research Areas
  • Fluid Dynamics and Turbulent Flows
  • Global Energy and Sustainability Research
  • Aerodynamics and Acoustics in Jet Flows
  • Combustion and flame dynamics
  • Energy, Environment, and Transportation Policies
  • Advanced Combustion Engine Technologies
  • Computational Fluid Dynamics and Aerodynamics
  • Fluid Dynamics and Heat Transfer
  • Climate Change Policy and Economics
  • Particle Dynamics in Fluid Flows
  • Vehicle emissions and performance
  • Environmental Impact and Sustainability
  • Energy and Environment Impacts
  • Electrohydrodynamics and Fluid Dynamics
  • Biodiesel Production and Applications
  • Hybrid Renewable Energy Systems
  • Climate Change and Geoengineering
  • Wind and Air Flow Studies
  • Integrated Energy Systems Optimization
  • Catalytic Processes in Materials Science
  • Aerosol Filtration and Electrostatic Precipitation
  • Electric Vehicles and Infrastructure
  • Heat Transfer Mechanisms
  • Combustion and Detonation Processes
  • Inhalation and Respiratory Drug Delivery

Monash University
2015-2025

Australian Regenerative Medicine Institute
2011-2023

Flow Analysis (United States)
2018

New York University Press
2018

Cambridge University Press
2018

Harvard University Press
2018

Chitose Institute of Science and Technology
2018

Bridge University
2018

University of Cambridge
2018

The University of Sydney
1987-1994

10.1016/j.rser.2011.07.151 article EN Renewable and Sustainable Energy Reviews 2011-09-16

10.1016/j.enpol.2016.02.051 article EN Energy Policy 2016-03-01

Environmental impacts and net-energy of hydrogen production via solar-electrolysis are highly sensitive to operating constraints context specific variances.

10.1039/d1ee01288f article EN Energy & Environmental Science 2021-01-01

10.1016/j.ijhydene.2008.10.060 article EN International Journal of Hydrogen Energy 2008-11-29

10.1016/j.ijhydene.2006.12.008 article EN International Journal of Hydrogen Energy 2007-02-05

Experimental evidence is provided to demonstrate that the upstream-travelling waves in two jets screeching A1 and A2 modes are not free-stream acoustic waves, but rather with support within jet. Proper orthogonal decomposition used educe coherent fluctuations associated jet screech from a set of randomly sampled velocity fields. A streamwise Fourier transform then isolate components positive negative phase speeds. The component speed shown, by comparison vortex-sheet model, resemble wave...

10.1017/jfm.2018.642 article EN Journal of Fluid Mechanics 2018-09-20

10.1016/j.ijhydene.2019.04.278 article EN International Journal of Hydrogen Energy 2019-05-22

Abstract The structure of a screeching axisymmetric jet in the helical C mode at nozzle pressure ratio 3.4 issuing from convergent is studied using high-resolution particle image velocimetry. Proper orthogonal decomposition (POD) used to extract dominant coherent structures within jet. first two modes produced by POD are reconstruct phase-averaged data sequence. A triple into mean, and random velocity components performed. embedded shock shown strongly modulate axial stresses shear layer...

10.1017/jfm.2014.173 article EN Journal of Fluid Mechanics 2014-05-08

Vertical axis wind turbine blades are subject to rapid, cyclical variations in angle of attack and relative airspeed which can induce dynamic stall. This phenomenon poses an obstacle the greater implementation vertical turbines because stall reduce efficiency structural vibrations noise. study seeks provide a more comprehensive description turbines, with emphasis on understanding its parametric dependence scaling behaviour. problem is practical relevance design but inherent coupling pitching...

10.1017/jfm.2018.112 article EN Journal of Fluid Mechanics 2018-02-27

"Green energy" is the energy that can be produced while sustaining ecosystem services. Maintenance of services provided by requires energy, termed maintenance (ESME). Including ESME costs in accounting enables assessment an plant's ability to produce over and above inputs EMSE lifetime plant. In this work, potential two renewable plants wind solar photovoltaic "green undertaken, those were chosen due their likely dominance future market. The done using a methodology unifies environmental...

10.1016/j.jclepro.2023.137806 article EN cc-by-nc-nd Journal of Cleaner Production 2023-06-13

Abstract Soot volume fraction measurements are made in turbulent ethylene diffusion flames and compared with predictions. The theoretical model is based on mixture distributions the flame measured soot fractions correlated against predicted fraction. results show that lower parts of this formulation not adequate. However, maximum concentrations further up less dependent residence time a approach may be useful here.

10.1080/00102208708947062 article EN Combustion Science and Technology 1987-08-01

10.1016/j.jclepro.2007.10.025 article EN Journal of Cleaner Production 2007-12-06

10.1016/j.enpol.2009.03.006 article EN Energy Policy 2009-04-03

High resolution planar particle image velocimetry is used to measure turbulent quantities in the region downstream of Mach disk an axisymmetric underexpanded jet issuing from a convergent nozzle. The internal annular shear layer generated by slip line emanating triple point shown persist across multiple shock cells downstream. A decomposition based on Proper Orthogonal Decomposition shows that external helical structure associated with screech tone exerts strong influence velocity...

10.1063/1.4894741 article EN Physics of Fluids 2014-09-01

Controversy exists as to whether renewable energy (RE) can provide for all the world’s needs. The purpose of this paper is help resolve vital question. Official forecasts see a resumption business-as-usual world after pandemic-induced recession, with further economic growth out at least 2050. novel approach taken in assume that such fueled entirely RE global levels or above those today, and then examine scenario feasible. Because intermittent primary electricity sources, wind, solar power,...

10.3390/en13215543 article EN cc-by Energies 2020-10-22
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