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  1. Emission thermometry of microwave-assisted alkali-doped propellant combustion
    2023/03/10 by Keke Zhu, Stuart J. Barkley, Travis R. Sippel +2 · 1 citation
    Chemistry · Engineering · #Analytical Chemistry (journal) #Chemistry #Combustion #Combustion and Detonation Processes #Dielectric #Energetic Materials and Combustion #Materials science #Microwave #Optoelectronics #Plasma Diagnostics and Applications #Propellant #Pyrometer #Temperature measurement #Thermodynamics
  2. Critical temperature for nanoparticle cloud formation during combustion of single micron-sized iron particle
    2022/07/20 by Daoguan Ning, Yuriy Shoshin, J.A. van Oijen +4 · 11 citations
    Chemistry · Earth and Planetary Sciences · Engineering · #Chemical engineering #Chemistry #Combustion #Combustion and flame dynamics #Laser #Materials science #Nanoparticle #Nanotechnology #Optics #Particle (ecology) #Particle Dynamics in Fluid Flows #Physics #Pyrometer #Shadowgraphy #Temperature measurement #Thermodynamics #nanoparticles nucleation surface interactions
  3. Multispectral pyrometer for high temperature measurements inside combustion chamber of gas turbine engines
    2019/03/02 by M.V. Mekhrengin, Mikhail Mekhrengin, I. K. Meshkovskiǐ +9 · 1 citation
    Chemistry · Engineering · #Calibration and Measurement Techniques #Chemical Thermodynamics and Molecular Structure #Chemistry #Combustion #Combustion chamber #Composite material #Geology #Materials science #Multispectral image #Optics #Physics #Pyrometer #Remote sensing #Spectroscopy and Laser Applications #System of measurement #Temperature measurement #Thermocouple #Thermodynamics
  4. Probing gas-to-particle transition in a moderately sooting atmospheric pressure ethylene/air laminar premixed flame. Part I: gas phase and soot ensemble characterization
    2017/03/23 by Francesco Carbone, Kevin Gleason, Alessandro Gomez · 2 citations
    Chemical Engineering · Chemistry · Earth and Planetary Sciences · Engineering · #Adiabatic flame temperature #Advanced Combustion Engine Technologies #Analytical Chemistry (journal) #Atmospheric chemistry and aerosols #Chemistry #Combustion #Combustion and flame dynamics #Diffusion flame #Laminar flow #Organic chemistry #Physical chemistry #Pyrometer #Soot #Temperature measurement #Thermodynamics #Volume fraction
  5. Comparison of multiple diagnostic techniques to study soot formation and morphology in a diffusion flame
    2016/12/10 by M. Reza Kholghy, Mohammad Reza Kholghy, Yashar Afarin +11 · 4 citations
    Chemical Engineering · Chemistry · Engineering · #Adiabatic flame temperature #Advanced Combustion Engine Technologies #Analytical Chemistry (journal) #Chemistry #Chromatography #Combustion #Combustion and flame dynamics #Combustor #Composite material #Diffusion #Diffusion flame #Emissivity #Laminar flow #Materials science #Optics #Particle (ecology) #Particle size #Pyrometer #Soot #Temperature measurement #Thermocouple #Thermodynamics #Vehicle emissions and performance #Volume fraction
  6. Measurements of the growth and coagulation of soot particles in a high-pressure shock tube
    2000/01/01 by Horst Kellerer, H. Kellerer, Rainer Koch +2 · 4 citations
    Chemical Engineering · Chemistry · Earth and Planetary Sciences · Mathematics · #Advanced Combustion Engine Technologies #Analytical Chemistry (journal) #Chemistry #Chromatography #Coagulation #Combustion #Gas Dynamics and Kinetic Theory #Growth rate #Materials science #Number density #Organic chemistry #Particle (ecology) #Particle size #Physical chemistry #Pyrometer #Shock (circulatory) #Shock tube #Shock wave #Soot #Temperature measurement #Thermodynamics #Volume (thermodynamics) #Volume fraction #nanoparticles nucleation surface interactions