The first application of Laser Induced Thermal Gratings Spectroscopy (LITGS) for precision thermometry in a firing GDI optical engine is reported. Crank-angle resolved temperature values were derived from LITGS signals generated in fuel vapour with a pressure dependent precision in the range 0.1-1.0% allowing differences in evaporative or charge cooling effects arising from a variety of ethanol and methanol blends with a model gasoline fuel to be quantified. In addition, fluctuations in temperature arising from cyclic variations in compression were directly detected and measured. © 2013 The Combustion Institute
Thermometry using laser-induced grating spectroscopy (LIGS) is reported using a high-repetition rate...
Laser diagnostics for quantitative measurements of temperature are important in high pressure and hi...
Laser-Induced Grating Spectroscopy (LIGS) is applied to premixed CH4/air laminar flat flames under o...
The first application of Laser Induced Thermal Gratings Spectroscopy (LITGS) for precision thermomet...
Crank angle-resolved temperatures have been measured using laser induced grating spectroscopy (LIGS)...
The development of Laser-Induced Thermal Grating Spectroscopy (LITGS) for diagnostics of combusting ...
The development of Laser-Induced Thermal Grating Spectroscopy (LITGS) for diagnostics of combusting ...
Crank angle-resolved temperatures have been measured using laser induced grating spectroscopy (LIGS)...
In-cylinder temperature measurements are vital for the validation of gasoline engine modelling and u...
The increased efficiency and specific output with Gasoline Direct Injection (GDI) engines are well k...
The measurement of pressure using laser-induced thermal grating spectroscopy, LITGS, with improved a...
The effect of uncertainty in gas composition on the accuracy of gas-phase thermometry using Laser-In...
The measurement of pressure using laser-induced thermal grating spectroscopy, LITGS, with improved a...
In-cylinder temperatures and their cyclic variations strongly influence many aspects of internal com...
Laser diagnostics for quantitative measurements of temperature are important in high pressure and hi...
Thermometry using laser-induced grating spectroscopy (LIGS) is reported using a high-repetition rate...
Laser diagnostics for quantitative measurements of temperature are important in high pressure and hi...
Laser-Induced Grating Spectroscopy (LIGS) is applied to premixed CH4/air laminar flat flames under o...
The first application of Laser Induced Thermal Gratings Spectroscopy (LITGS) for precision thermomet...
Crank angle-resolved temperatures have been measured using laser induced grating spectroscopy (LIGS)...
The development of Laser-Induced Thermal Grating Spectroscopy (LITGS) for diagnostics of combusting ...
The development of Laser-Induced Thermal Grating Spectroscopy (LITGS) for diagnostics of combusting ...
Crank angle-resolved temperatures have been measured using laser induced grating spectroscopy (LIGS)...
In-cylinder temperature measurements are vital for the validation of gasoline engine modelling and u...
The increased efficiency and specific output with Gasoline Direct Injection (GDI) engines are well k...
The measurement of pressure using laser-induced thermal grating spectroscopy, LITGS, with improved a...
The effect of uncertainty in gas composition on the accuracy of gas-phase thermometry using Laser-In...
The measurement of pressure using laser-induced thermal grating spectroscopy, LITGS, with improved a...
In-cylinder temperatures and their cyclic variations strongly influence many aspects of internal com...
Laser diagnostics for quantitative measurements of temperature are important in high pressure and hi...
Thermometry using laser-induced grating spectroscopy (LIGS) is reported using a high-repetition rate...
Laser diagnostics for quantitative measurements of temperature are important in high pressure and hi...
Laser-Induced Grating Spectroscopy (LIGS) is applied to premixed CH4/air laminar flat flames under o...