2007Unpublished venueRequires access

WATER-COOLED PULSE COMBUSTOR PERFORMANCES

Nihad Hod, Izet Smajević

Open publisher page 1 citations

Abstract

In this paper a part of the results obtained during experimental investigation of pulse combustion in water-cooled combustor are presented. The combustor consists of non-moving mechanical parts. The presented results show correlation between basic operational and constructional parameters of the combustor as a ground for optimization of its construction and operation. It is shown that parameters of the pulse combustion process depend not only on the geometry and heat load of the combustor, but also on the cooling intensity, that is on the combustor walls temperatures. High frequency low temperature oscillating combustion process is generated. Because the burner is constructed in a way which makes possible geometry changes of the combustion chamber, aero-valves and resonant pipe the frequency could be changed between 70 Hz and 170 Hz. Pressure oscillations inside the combustion chamber reach values over 90 kPa and the mean temperature of the combustion inside the chamber does not exceed 1450 K. It is also shown that the operation flexibility of this type in the stable operation regime regarding to geometry is up to 5:1. The results are compared with data obtained during previous investigations of pulse combustion burner with air-cooling system.

About this research paper

What this paper is about

In this paper a part of the results obtained during experimental investigation of pulse combustion in water-cooled combustor are presented. The combustor consists of non-moving mechanical parts. The presented results show correlation between basic operational and constructional parameters of the combustor as a ground for optimization of its construction and operation. It is shown that parameters of the pulse combustion process depend not only on the geometry and heat load of the combustor, but also on the cooling intensity, that is on the combustor walls temperatures. High frequency low temperature oscillating combustion process is generated. Because the burner is constructed in a way which makes possible geometry changes of the combustion chamber, aero-valves and resonant pipe the frequency could be changed between 70 Hz and 170 Hz. Pressure oscillations inside the combustion chamber reach values over 90 kPa and the mean temperature of the combustion inside the chamber does not exceed 1450 K. It is also shown that the operation flexibility of this type in the stable operation regime regarding to geometry is up to 5:1. The results are compared with data obtained during previous investigations of pulse combustion burner with air-cooling system.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this paper a part of the results obtained during experimental investigation of pulse combustion in water-cooled combustor are presented. The combustor consists of non-moving mechanical parts. The presented results show correlation between basic operational and constructional parameters of the combustor as a ground for optimization of its construction and operation. It is shown that parameters of the pulse combustion process depend not only on the geometry and heat load of the combustor, but also on the cooling intensity, that is on the combustor walls temperatures. High frequency low temperature oscillating combustion process is generated. Because the burner is constructed in a way which makes possible geometry changes of the combustion chamber, aero-valves and resonant pipe the frequency could be changed between 70 Hz and 170 Hz. Pressure oscillations inside the combustion chamber reach values over 90 kPa and the mean temperature of the combustion inside the chamber does not exceed 1450 K. It is also shown that the operation flexibility of this type in the stable operation regime regarding to geometry is up to 5:1. The results are compared with data obtained during previous investigations of pulse combustion burner with air-cooling system.

Key concepts: Combustor, Combustion, Combustion chamber, Mechanics, Materials science, Pulse (music), Optics, Chemistry

Related papers

Back to paper searchBrowse research topicsOriginal source
WATER-COOLED PULSE COMBUSTOR PERFORMANCES — Research Paper | ScholarLens