SlideShare una empresa de Scribd logo
1 de 16
Effects of C/O Ratio and Temperature on Sooting Limits of Spherical Diffusion Flames V.R. Lecoustre, 1  P.B. Sunderland, 1  B.H. Chao, 2   D.L. Urban, 3  D.P. Stocker, 3  R.L. Axelbaum 4 1  University of Maryland, College Park, MD, USA 2  University of Hawaii, Honolulu, HI, USA 3  NASA Glenn Research Center, Cleveland, OH, USA 4  Washington University, St. Louis, MO, USA Supported by NASA AIAA 2008-0827 January 9, 2008
Inverse Normal  C2H4  air C2H4/N2  O2 d=29.3 mm d=18.8 mm air  C2H4 O2  C2H4/N2 d=24.7 mm d=31.3 mm Z st  = 0.064 Z st  = 0.78
Sooting limits. All images from end of 2 s drop test. 18% C 2 H 4     27% O 2 18% C 2 H 4     28% O 2 Flame 5 O 2     12% C 2 H 4 O 2     13% C 2 H 4 Flame 17
[object Object],[object Object],[object Object]
Background ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Objectives ,[object Object],[object Object],[object Object],[object Object],[object Object]
Sooting limit flames blue=min yellow=max For all flames  HRR  is 71 W and sooting limit occurs at 2 s. 1814 2670 0.249 0.692 1 0.13 Fuel 17 1729 2578 0.279 0.666 0.8 0.12 Fuel 16 1802 2539 0.148 0.509 0.5 0.15 Fuel 15 1736 2370 0.122 0.336 0.3 0.19 Fuel 14 1689 2274 0.119 0.277 0.25 0.21 Fuel 13 1515 1814 0.086 0.066 0.13 0.6 Fuel 12 1549 1835 0.072 0.051 0.13 0.8 Fuel 11 1581 1847 0.059 0.041 0.13 1 Fuel 10 2262 2740 0.024 0.661 1 0.15 Oxidizer 9 2057 2528 0.044 0.685 0.8 0.11 Oxidizer 8 1795 2381 0.11 0.586 0.5 0.11 Oxidizer 7 1593 2308 0.33 0.353 0.29 0.17 Oxidizer 6 1592 2306 0.351 0.333 0.28 0.18 Oxidizer 5 1498 2238 0.665 0.225 0.23 0.25 Oxidizer 4 1479 2226 0.91 0.18 0.21 0.31 Oxidizer 3 1492 2326 1.63 0.102 0.21 0.6 Oxidizer 2 1545 2390 2.72 0.065 0.22 1 Oxidizer 1 T f   2s K T ad ,  K t res , s Z st X O2,0 X C2H4,0 Ambient Flame
Numerical methods ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Temporal evolution ,[object Object],[object Object],[object Object]
Mixture fraction ,[object Object],[object Object],[object Object],[object Object]
Mixture fraction (Flame 10)
Flame structure (Flame 10) ,[object Object],[object Object],[object Object],[object Object],[object Object]
Critical local C/O ratio ,[object Object],[object Object],[object Object],[object Object]
T where C/O = 0.51 ,[object Object],[object Object],[object Object]
T where C/O = 0.51 ,[object Object],[object Object],[object Object]
Conclusions ,[object Object],[object Object],[object Object],[object Object]

Más contenido relacionado

La actualidad más candente

D0596504 chem12 c14_l3_lo_mig
D0596504 chem12 c14_l3_lo_migD0596504 chem12 c14_l3_lo_mig
D0596504 chem12 c14_l3_lo_mig
HusamAlotaillt
 
Ch10 sample exercise
Ch10 sample exerciseCh10 sample exercise
Ch10 sample exercise
Jane Hamze
 
12 Gas Laws
12 Gas Laws12 Gas Laws
12 Gas Laws
janetra
 
Ch5 z5e gases
Ch5 z5e gasesCh5 z5e gases
Ch5 z5e gases
blachman
 
Mfht4 Orleans
Mfht4 OrleansMfht4 Orleans
Mfht4 Orleans
agardez
 
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
Andrew Dale
 

La actualidad más candente (18)

Lecture7
Lecture7Lecture7
Lecture7
 
Ideal Gas Law
Ideal Gas LawIdeal Gas Law
Ideal Gas Law
 
Gas Laws
Gas LawsGas Laws
Gas Laws
 
D0596504 chem12 c14_l3_lo_mig
D0596504 chem12 c14_l3_lo_migD0596504 chem12 c14_l3_lo_mig
D0596504 chem12 c14_l3_lo_mig
 
Ch10 sample exercise
Ch10 sample exerciseCh10 sample exercise
Ch10 sample exercise
 
ARVI Thermal separation of valuable elements at power plant furnace condition...
ARVI Thermal separation of valuable elements at power plant furnace condition...ARVI Thermal separation of valuable elements at power plant furnace condition...
ARVI Thermal separation of valuable elements at power plant furnace condition...
 
Hugps138
Hugps138Hugps138
Hugps138
 
IDEAL GAS AND LAWS
IDEAL GAS AND LAWSIDEAL GAS AND LAWS
IDEAL GAS AND LAWS
 
Chapter 5- Gases
Chapter 5- GasesChapter 5- Gases
Chapter 5- Gases
 
12 Gas Laws
12 Gas Laws12 Gas Laws
12 Gas Laws
 
Ch5 z5e gases
Ch5 z5e gasesCh5 z5e gases
Ch5 z5e gases
 
Ideal Gas Law
Ideal Gas LawIdeal Gas Law
Ideal Gas Law
 
Gases Worked Examples
Gases Worked ExamplesGases Worked Examples
Gases Worked Examples
 
Mfht4 Orleans
Mfht4 OrleansMfht4 Orleans
Mfht4 Orleans
 
Chemistry 107 Exam Prep 2
Chemistry 107 Exam Prep 2Chemistry 107 Exam Prep 2
Chemistry 107 Exam Prep 2
 
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
High-precision-calorimetry-to-determine-the-enthalpy-of-combustion-of-methane...
 
Chapter 13: Gases
Chapter 13: GasesChapter 13: Gases
Chapter 13: Gases
 
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 09 Solutions
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 09 SolutionsCH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 09 Solutions
CH EN 3453 Heat Transfer 2014 Fall Utah Homework HW 09 Solutions
 

Destacado

Homodyne OLT-ONU design for access optical networks
Homodyne OLT-ONU design for access optical networksHomodyne OLT-ONU design for access optical networks
Homodyne OLT-ONU design for access optical networks
Josep Fabrega
 
Homodyne OLT-ONU Design for Access Optical Networks
Homodyne OLT-ONU Design for Access Optical NetworksHomodyne OLT-ONU Design for Access Optical Networks
Homodyne OLT-ONU Design for Access Optical Networks
Josep Fabrega
 
Transboundary report dtp eng lo
Transboundary report dtp eng loTransboundary report dtp eng lo
Transboundary report dtp eng lo
Veaceslav Musteata
 
Ph. D. Thesis Proposal Presentation
Ph. D. Thesis Proposal PresentationPh. D. Thesis Proposal Presentation
Ph. D. Thesis Proposal Presentation
Josep Fabrega
 

Destacado (18)

EDHE 6080 Research Presentation
EDHE 6080 Research PresentationEDHE 6080 Research Presentation
EDHE 6080 Research Presentation
 
Families' Perspective and Involvement in Transition
Families' Perspective and Involvement in TransitionFamilies' Perspective and Involvement in Transition
Families' Perspective and Involvement in Transition
 
Low Cost Transceiver For Ultra Dense WDM Access Networks
Low Cost Transceiver For Ultra Dense WDM Access NetworksLow Cost Transceiver For Ultra Dense WDM Access Networks
Low Cost Transceiver For Ultra Dense WDM Access Networks
 
Homodyne OLT-ONU design for access optical networks
Homodyne OLT-ONU design for access optical networksHomodyne OLT-ONU design for access optical networks
Homodyne OLT-ONU design for access optical networks
 
Working build
Working buildWorking build
Working build
 
Working build
Working buildWorking build
Working build
 
Charlottesville Lecoustre Et Al
Charlottesville Lecoustre Et AlCharlottesville Lecoustre Et Al
Charlottesville Lecoustre Et Al
 
College Readiness
College ReadinessCollege Readiness
College Readiness
 
Ultra-Dense, Transparent and Resilient Ring-Tree Access Network using Coupler...
Ultra-Dense, Transparent and Resilient Ring-Tree Access Network using Coupler...Ultra-Dense, Transparent and Resilient Ring-Tree Access Network using Coupler...
Ultra-Dense, Transparent and Resilient Ring-Tree Access Network using Coupler...
 
Understanding our Classrooms
Understanding our ClassroomsUnderstanding our Classrooms
Understanding our Classrooms
 
Homodyne Ultra-Dense WDM PONs: Can They be Affordable?
Homodyne Ultra-Dense WDM PONs: Can They be Affordable?Homodyne Ultra-Dense WDM PONs: Can They be Affordable?
Homodyne Ultra-Dense WDM PONs: Can They be Affordable?
 
Utilizing YouTube in Small Business
Utilizing YouTube in Small BusinessUtilizing YouTube in Small Business
Utilizing YouTube in Small Business
 
Deployment Analysis of TDM/WDM Single Fiber PON with Colourless ONU operating...
Deployment Analysis of TDM/WDM Single Fiber PON with Colourless ONU operating...Deployment Analysis of TDM/WDM Single Fiber PON with Colourless ONU operating...
Deployment Analysis of TDM/WDM Single Fiber PON with Colourless ONU operating...
 
Homodyne OLT-ONU Design for Access Optical Networks
Homodyne OLT-ONU Design for Access Optical NetworksHomodyne OLT-ONU Design for Access Optical Networks
Homodyne OLT-ONU Design for Access Optical Networks
 
Transboundary report dtp eng lo
Transboundary report dtp eng loTransboundary report dtp eng lo
Transboundary report dtp eng lo
 
Ncp nrecruitment2
Ncp nrecruitment2Ncp nrecruitment2
Ncp nrecruitment2
 
PhD Proposal - December 2008
PhD Proposal - December 2008PhD Proposal - December 2008
PhD Proposal - December 2008
 
Ph. D. Thesis Proposal Presentation
Ph. D. Thesis Proposal PresentationPh. D. Thesis Proposal Presentation
Ph. D. Thesis Proposal Presentation
 

Similar a Reno Lecoustre Et Al

2011 gollner matchstick-wssci11_03
2011   gollner matchstick-wssci11_032011   gollner matchstick-wssci11_03
2011 gollner matchstick-wssci11_03
Michael Gollner
 
CHEMISTRY_QUICK_NOTES.pdf
CHEMISTRY_QUICK_NOTES.pdfCHEMISTRY_QUICK_NOTES.pdf
CHEMISTRY_QUICK_NOTES.pdf
KhanMksks
 
mhughes_sasp14_narrow_cplus (1)
mhughes_sasp14_narrow_cplus (1)mhughes_sasp14_narrow_cplus (1)
mhughes_sasp14_narrow_cplus (1)
Marcus Hughes
 
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
Duncan Gordon
 
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjejsqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
humaninnocent30
 
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
Chih-Ju Lin
 

Similar a Reno Lecoustre Et Al (20)

X-ray_Diffraction.ppt
X-ray_Diffraction.pptX-ray_Diffraction.ppt
X-ray_Diffraction.ppt
 
X-ray_Diffraction.ppt
X-ray_Diffraction.pptX-ray_Diffraction.ppt
X-ray_Diffraction.ppt
 
2011 gollner matchstick-wssci11_03
2011   gollner matchstick-wssci11_032011   gollner matchstick-wssci11_03
2011 gollner matchstick-wssci11_03
 
0909.4337-1
0909.4337-10909.4337-1
0909.4337-1
 
Separation of carbon 13 by thermal diffusion
Separation of carbon 13 by thermal diffusionSeparation of carbon 13 by thermal diffusion
Separation of carbon 13 by thermal diffusion
 
HOW TO PREDICT HEAT AND MASS TRANSFER FROM FLUID FRICTION
HOW TO PREDICT HEAT AND MASS TRANSFER FROM FLUID FRICTIONHOW TO PREDICT HEAT AND MASS TRANSFER FROM FLUID FRICTION
HOW TO PREDICT HEAT AND MASS TRANSFER FROM FLUID FRICTION
 
Aerodynamics part i
Aerodynamics   part iAerodynamics   part i
Aerodynamics part i
 
03C -Chapter 3 - Sec 3.6.ppt
03C -Chapter 3 - Sec 3.6.ppt03C -Chapter 3 - Sec 3.6.ppt
03C -Chapter 3 - Sec 3.6.ppt
 
Effect of particle shape and size on catalysis.pptx
Effect of particle shape and size on catalysis.pptxEffect of particle shape and size on catalysis.pptx
Effect of particle shape and size on catalysis.pptx
 
CHEMISTRY_QUICK_NOTES.pdf
CHEMISTRY_QUICK_NOTES.pdfCHEMISTRY_QUICK_NOTES.pdf
CHEMISTRY_QUICK_NOTES.pdf
 
mhughes_sasp14_narrow_cplus (1)
mhughes_sasp14_narrow_cplus (1)mhughes_sasp14_narrow_cplus (1)
mhughes_sasp14_narrow_cplus (1)
 
Transfer velocities for a suite of trace gases of emerging biogeochemical im...
Transfer velocities for a suite of trace gases of  emerging biogeochemical im...Transfer velocities for a suite of trace gases of  emerging biogeochemical im...
Transfer velocities for a suite of trace gases of emerging biogeochemical im...
 
Gases.pptx
Gases.pptxGases.pptx
Gases.pptx
 
Gaskell
GaskellGaskell
Gaskell
 
Separation of carbon 13 by thermal diffusion
Separation of carbon 13 by thermal diffusionSeparation of carbon 13 by thermal diffusion
Separation of carbon 13 by thermal diffusion
 
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
Duncan Gordon et al., Physica B, 385-386, (2006), 511 - 513.
 
Heat exchanger
Heat exchangerHeat exchanger
Heat exchanger
 
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjejsqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
sqp313e.pdfsjsjsbsishsisjeheiejejeiejwiwjej
 
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
Thermoelectric and magnetic properties of Ca3Co4-xCuxO9+ δ with x = 0.00, 0.0...
 
Numerical Analysis of Turbulent Diffusion Combustion in Porous Media
Numerical Analysis of Turbulent Diffusion Combustion in Porous MediaNumerical Analysis of Turbulent Diffusion Combustion in Porous Media
Numerical Analysis of Turbulent Diffusion Combustion in Porous Media
 

Último

1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
QucHHunhnh
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
QucHHunhnh
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
ciinovamais
 

Último (20)

SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptxSKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
SKILL OF INTRODUCING THE LESSON MICRO SKILLS.pptx
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024Mehran University Newsletter Vol-X, Issue-I, 2024
Mehran University Newsletter Vol-X, Issue-I, 2024
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
On National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan FellowsOn National Teacher Day, meet the 2024-25 Kenan Fellows
On National Teacher Day, meet the 2024-25 Kenan Fellows
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 
Dyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptxDyslexia AI Workshop for Slideshare.pptx
Dyslexia AI Workshop for Slideshare.pptx
 
Python Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docxPython Notes for mca i year students osmania university.docx
Python Notes for mca i year students osmania university.docx
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the Classroom
 
ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.ICT role in 21st century education and it's challenges.
ICT role in 21st century education and it's challenges.
 
Food safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdfFood safety_Challenges food safety laboratories_.pdf
Food safety_Challenges food safety laboratories_.pdf
 
Spatium Project Simulation student brief
Spatium Project Simulation student briefSpatium Project Simulation student brief
Spatium Project Simulation student brief
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structure
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
Towards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptxTowards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptx
 

Reno Lecoustre Et Al

  • 1. Effects of C/O Ratio and Temperature on Sooting Limits of Spherical Diffusion Flames V.R. Lecoustre, 1 P.B. Sunderland, 1 B.H. Chao, 2 D.L. Urban, 3 D.P. Stocker, 3 R.L. Axelbaum 4 1 University of Maryland, College Park, MD, USA 2 University of Hawaii, Honolulu, HI, USA 3 NASA Glenn Research Center, Cleveland, OH, USA 4 Washington University, St. Louis, MO, USA Supported by NASA AIAA 2008-0827 January 9, 2008
  • 2. Inverse Normal C2H4  air C2H4/N2  O2 d=29.3 mm d=18.8 mm air  C2H4 O2  C2H4/N2 d=24.7 mm d=31.3 mm Z st = 0.064 Z st = 0.78
  • 3. Sooting limits. All images from end of 2 s drop test. 18% C 2 H 4  27% O 2 18% C 2 H 4  28% O 2 Flame 5 O 2  12% C 2 H 4 O 2  13% C 2 H 4 Flame 17
  • 4.
  • 5.
  • 6.
  • 7. Sooting limit flames blue=min yellow=max For all flames HRR is 71 W and sooting limit occurs at 2 s. 1814 2670 0.249 0.692 1 0.13 Fuel 17 1729 2578 0.279 0.666 0.8 0.12 Fuel 16 1802 2539 0.148 0.509 0.5 0.15 Fuel 15 1736 2370 0.122 0.336 0.3 0.19 Fuel 14 1689 2274 0.119 0.277 0.25 0.21 Fuel 13 1515 1814 0.086 0.066 0.13 0.6 Fuel 12 1549 1835 0.072 0.051 0.13 0.8 Fuel 11 1581 1847 0.059 0.041 0.13 1 Fuel 10 2262 2740 0.024 0.661 1 0.15 Oxidizer 9 2057 2528 0.044 0.685 0.8 0.11 Oxidizer 8 1795 2381 0.11 0.586 0.5 0.11 Oxidizer 7 1593 2308 0.33 0.353 0.29 0.17 Oxidizer 6 1592 2306 0.351 0.333 0.28 0.18 Oxidizer 5 1498 2238 0.665 0.225 0.23 0.25 Oxidizer 4 1479 2226 0.91 0.18 0.21 0.31 Oxidizer 3 1492 2326 1.63 0.102 0.21 0.6 Oxidizer 2 1545 2390 2.72 0.065 0.22 1 Oxidizer 1 T f 2s K T ad , K t res , s Z st X O2,0 X C2H4,0 Ambient Flame
  • 8.
  • 9.
  • 10.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.

Notas del editor

  1. Thank you for attending my presentation. My name is Vivien Lecoustre, mechanical engineer PhD student at UMD. My topic presentation is Effects of C/O ratio and scalar dissipation rate on sooting limits of spherical non-premixed flames /I would like to present my co-authors who are professor Beei Huan Chao, from university of Hawaii, Professor Peter Sunderland (who is my advisor) from UMD, David Urban and Denis Stocker, from the NASA Glenn Research center and Professor Richard Axelbaum, from Washington University/. This project is supported by NASA. This work is about modeling results. We revisit an experimental paper which characterized 17 sooting limits spherical diffusion flames. Those flame were characterized in microgravity. You may be familiar with the temperature and scalar dissipation rate effects on soot formation. But maybe not on the C/O ratio. Sooting limits arise from a competition between the reaction of fuel pyrolysis and the reaction of soot oxidation. The former will be likely to occur when we have a large number of carbon. The latter, on the contrary, will be likely to occur when great number oxygen atoms are present, greater than the carbon atoms. C/O ratio is a useful parameter to asses the importance of one or the other reactions. The past work carried on soot formation was first established for premixed flame due to nearly constant temperature and Carbon to Oxygen atom ratio, C/O ratio, in the soot-forming regions of premixed flame, and to the decoupling effect of those two parameters. Experiments, carried out by Haynes and Wagner and Glassman using a ethylene premixed flame, show that there is a critical C/O ratio value for soot inception. Soot did not form into ethylene flames with a global C/O ratio less than 0.6