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Experimental observation of pulsating instability under acoustic field in downward-propagating flames at large Lewis number
- Source :
- Combustion and Flame. 188:1-4
- Publication Year :
- 2018
- Publisher :
- Elsevier BV, 2018.
-
Abstract
- According to previous theory, pulsating propagation in a premixed flame only appears when the reduced Lewis number, β ( Le -1), is larger than a critical value (Sivashinsky criterion: 4(1 + 3 ) ≈ 11), where β represents the Zel'dovich number (for general premixed flames, β ≈ 10), which requires Lewis number Le > 2.1. However, few experimental observation have been reported because the critical reduced Lewis number for the onset of pulsating instability is beyond what can be reached in experiments. Furthermore, the coupling with the unavoidable hydrodynamic instability limits the observation of pure pulsating instabilities in flames. Here, we describe a novel method to observe the pulsating instability. We utilize a thermoacoustic field caused by interaction between heat release and acoustic pressure fluctuations of the downward-propagating premixed flames in a tube to enhance conductive heat loss at the tube wall and radiative heat loss at the open end of the tube due to extended flame residence time by diminished flame surface area, i.e., flat flame. The thermoacoustic field allowed pure observation of the pulsating motion since the primary acoustic force suppressed the intrinsic hydrodynamic instability resulting from thermal expansion. By employing this method, we have provided new experimental observations of the pulsating instability for premixed flames. The Lewis number (i.e., Le ≈ 1.86) was less than the critical value suggested previously.
- Subjects :
- Premixed flame
Field (physics)
Chemistry
General Chemical Engineering
General Physics and Astronomy
Energy Engineering and Power Technology
Thermodynamics
02 engineering and technology
General Chemistry
Mechanics
Critical value
01 natural sciences
Instability
Thermal expansion
Lewis number
010305 fluids & plasmas
Physics::Fluid Dynamics
Fuel Technology
020401 chemical engineering
0103 physical sciences
Coupling (piping)
Physics::Chemical Physics
0204 chemical engineering
Sound pressure
Subjects
Details
- ISSN :
- 00102180
- Volume :
- 188
- Database :
- OpenAIRE
- Journal :
- Combustion and Flame
- Accession number :
- edsair.doi...........ecaf8c60a7ccc9570fceb2a840559505
- Full Text :
- https://doi.org/10.1016/j.combustflame.2017.09.026