This paper describes the development of an experimental arrangement and the application of acetone-based Planar Laser Induced Fluorescence (PLIF) measurement techniques to study the unsteady characteristics of heat transfer processes in the parallel-plate heat exchangers of thermoacoustic devices. The experimental rig is a quarter-wavelength acoustic resonator where a standing wave imposes oscillatory flow conditions. Two mock-up heat exchangers: “hot” and “cold”, have their fins kept at constant temperatures by electrical heating and water cooling, respectively. A purpose-designed acetone tracer seeding mechanism is used for PLIF temperature measurement. Acetone concentration is optimised from the viewpoint of PLIF signal intensity. Two-di...
The aim of this paper is to characterize the dynamics of reaction zones in CH4-AIR laminar combustio...
Thermoacoustic technologies rely on a direct power conversion between acoustic and thermal energies ...
Heat exchangers (HXs) constitute key components of thermoacoustic devices and play an important role...
This work aims to develop reliable laser-based measurement techniques to enable fundamental heat tra...
This work aims to develop reliable laser-based measurement techniques to enable fundamental heat tra...
This paper addresses the issues of heat transfer in oscillatory flow conditions, which are typically...
This paper describes the preliminary measurements of the temperature field in water channel by the P...
Thermoacoustic combustion instability results from the coupling between oscillating heat release and...
Combustion oscillations in gas turbines can result in serious damage. One method used to predict suc...
Flame-turbulence interactions are at the heart of modern combustion research as they have a major in...
Flame-turbulence interactions are at the heart of modern combustion research as they have a major in...
Thermoacoustics is a sustainable technology for novel energy conversion applications. The performanc...
The aim of this project is a qualitative and quantitative experimental description of a development...
An experimental arrangement of toluene-based Planar Laser Induced Fluorescence (PLIF) has been devel...
The aim of this project is a qualitative and quantitative experimental description of a de...
The aim of this paper is to characterize the dynamics of reaction zones in CH4-AIR laminar combustio...
Thermoacoustic technologies rely on a direct power conversion between acoustic and thermal energies ...
Heat exchangers (HXs) constitute key components of thermoacoustic devices and play an important role...
This work aims to develop reliable laser-based measurement techniques to enable fundamental heat tra...
This work aims to develop reliable laser-based measurement techniques to enable fundamental heat tra...
This paper addresses the issues of heat transfer in oscillatory flow conditions, which are typically...
This paper describes the preliminary measurements of the temperature field in water channel by the P...
Thermoacoustic combustion instability results from the coupling between oscillating heat release and...
Combustion oscillations in gas turbines can result in serious damage. One method used to predict suc...
Flame-turbulence interactions are at the heart of modern combustion research as they have a major in...
Flame-turbulence interactions are at the heart of modern combustion research as they have a major in...
Thermoacoustics is a sustainable technology for novel energy conversion applications. The performanc...
The aim of this project is a qualitative and quantitative experimental description of a development...
An experimental arrangement of toluene-based Planar Laser Induced Fluorescence (PLIF) has been devel...
The aim of this project is a qualitative and quantitative experimental description of a de...
The aim of this paper is to characterize the dynamics of reaction zones in CH4-AIR laminar combustio...
Thermoacoustic technologies rely on a direct power conversion between acoustic and thermal energies ...
Heat exchangers (HXs) constitute key components of thermoacoustic devices and play an important role...