SIMULTANEOUS DENSITY-VELOCITY MEASUREMENTS IN PREMIXED TURBULENT FLAMES TO ASSESS A THEORETICAL MODEL (EXPERIMENTAL).

SIMULTANEOUS DENSITY-VELOCITY MEASUREMENTS IN PREMIXED TURBULENT FLAMES TO ASSESS A THEORETICAL MODEL (EXPERIMENTAL).
Title SIMULTANEOUS DENSITY-VELOCITY MEASUREMENTS IN PREMIXED TURBULENT FLAMES TO ASSESS A THEORETICAL MODEL (EXPERIMENTAL). PDF eBook
Author ANIL GULATI
Publisher
Pages 203
Release 1986
Genre
ISBN

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used by the model is not valid. Overall the model is found to be very successful in predicting trends of variation of most quantities correctly. Certain model improvements are suggested.

Lean Premixed Flame Structure in Intense Turbulence

Lean Premixed Flame Structure in Intense Turbulence
Title Lean Premixed Flame Structure in Intense Turbulence PDF eBook
Author Sastri Purushottama Nandula
Publisher
Pages 364
Release 2003
Genre Flame
ISBN

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Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports
Title Scientific and Technical Aerospace Reports PDF eBook
Author
Publisher
Pages 704
Release 1995
Genre Aeronautics
ISBN

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Probability Density Function (PDF) Calculations for Premixed Turbulent Flames

Probability Density Function (PDF) Calculations for Premixed Turbulent Flames
Title Probability Density Function (PDF) Calculations for Premixed Turbulent Flames PDF eBook
Author Mathagondapally Srinivasan Anand
Publisher
Pages 540
Release 1986
Genre Combustion
ISBN

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Turbulent Premixed Flames

Turbulent Premixed Flames
Title Turbulent Premixed Flames PDF eBook
Author Nedunchezhian Swaminathan
Publisher Cambridge University Press
Pages 447
Release 2011-04-25
Genre Technology & Engineering
ISBN 1139498584

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A work on turbulent premixed combustion is important because of increased concern about the environmental impact of combustion and the search for new combustion concepts and technologies. An improved understanding of lean fuel turbulent premixed flames must play a central role in the fundamental science of these new concepts. Lean premixed flames have the potential to offer ultra-low emission levels, but they are notoriously susceptible to combustion oscillations. Thus, sophisticated control measures are inevitably required. The editors' intent is to set out the modeling aspects in the field of turbulent premixed combustion. Good progress has been made on this topic, and this cohesive volume contains contributions from international experts on various subtopics of the lean premixed flame problem.

Velocity and Density Measurements in Premixed Turbulent Flames

Velocity and Density Measurements in Premixed Turbulent Flames
Title Velocity and Density Measurements in Premixed Turbulent Flames PDF eBook
Author Kartik Vinayak Dandekar
Publisher
Pages 494
Release 1982
Genre Combustion
ISBN

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Experiments in Laminar and Turbulent Premixed Counter-flow Flames at Variable Lewis Number

Experiments in Laminar and Turbulent Premixed Counter-flow Flames at Variable Lewis Number
Title Experiments in Laminar and Turbulent Premixed Counter-flow Flames at Variable Lewis Number PDF eBook
Author Sean Salusbury
Publisher
Pages
Release 2014
Genre
ISBN

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"This thesis examines preferential diffusion effects in laminar and turbulent premixed combustion. Stretched, fuel-lean, laminar flames of methane, propane and hydrogen are studied experimentally in a counter-flow flame configuration to investigate the effect of Lewis number on stretched flames. Laminar flame results show that a maximum reference flame speed exists for mixtures with Le >= 1 at lower flame-stretch values than the extinction stretch rate. A continually-increasing reference flame speed is measured for Le “ 1 mixtures until extinction occurs when the flame is constrained by the stagnation point.Turbulent counter-flow flame experiments are then performed for these mixtures, using high-blockage turbulence-generating plates to produce turbulence intensities on the order of u'/sLo = 1 to 10. Measurements of average and instantaneous velocity within the turbulent flame are performed by time-resolved particle image velocimetry measurements. Average and instantaneous flame front position is also measured by Rayleigh spectroscopy.Measurements of average turbulent burning velocity demonstrate the ambiguity in definitions of the burning velocity and the difficulty of examining turbulent flame chemistry using averaged measurements. Instantaneous statistics are shown to be superior tools for studying turbulent combustion. The probability-density functions (PDF) of the local flamelet burning velocities for Le >= 1 mixtures show that the instantaneous flamelet burning velocities increase with increasing turbulence intensity and flame stretch. The PDF for the Le ~= 1 mixture has a sharply skewed shape at high turbulence intensity and has a sharp drop-off in probability at a velocity that corresponds with the experimentally-measured maximum reference flame speed from the laminar flame experiments. In contrast, in the Le “ 1 turbulent flames, the most-probable instantaneous flamelet burning velocities increase with increasing turbulence intensity and can significantly exceed the maximum reference flame speed measured in counter-flow laminar flames at extinction.These results are reinforced by instantaneous flame position measurements. Flame front location PDFs show the most probable flame location to be linked to velocity PDFs. Furthermore, hydrogen PDFs are recognizably skewed as u'/sLo increases, indicating a tendency for the Le “ 1 mixture to propagate farther into the unburned reactants. These results support the leading edge theory of premixed turbulent flame propagation for flames in which preferential diffusion effects are expected.In the study of turbulent flames, this work promotes the use of local, instantaneous statistics as a tool for describing experimental results and studying fuel chemistry." --