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  1. S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
    [CrossRef]
  2. S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
    [CrossRef]
  3. J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
    [CrossRef]
  4. M. Weill, P. Flament, et G. Gouesbet, “Soot in Combustion Systems,” at Internatinal NATO Workshop, France (1981).
  5. S. S. Penner, P. H. P. Chang, International Colloquium on Gasdynamics of Explosions and Reactive Systems, Gottingen (AIAA, New York, 1979).
  6. P. Flament, M. E. Weill, G. Gouesbet, at International Symposium on Applied LDA to Fluid Mechanics, Lisbon (1982).
  7. W. Hinds, P. C. Reist, Aerosol Sci.3, 501, 515 (1972).
    [CrossRef]
  8. H.C. van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957).
  9. W. H. Dalzell, A. F. Sarofim, Trans.ASME 91, 100 (1969).
    [CrossRef]
  10. A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
    [CrossRef]
  11. G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
    [CrossRef]
  12. R. A. Svehla, Tech. Rep. 132, NASA (U.S. GPO, Washington, D.C., 1962).
  13. G. Prado, J. Lahaye, in Particulate Carbon Formation During Combustion, D. C. Siegla, G. W. Smith Eds. (Plenum, New York, 1981).

1979 (1)

J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
[CrossRef]

1976 (2)

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
[CrossRef]

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
[CrossRef]

1969 (1)

W. H. Dalzell, A. F. Sarofim, Trans.ASME 91, 100 (1969).
[CrossRef]

Beretta, F.

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

Bernard, J. M.

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
[CrossRef]

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
[CrossRef]

Chang, P. H. P.

S. S. Penner, P. H. P. Chang, International Colloquium on Gasdynamics of Explosions and Reactive Systems, Gottingen (AIAA, New York, 1979).

d'Alessio, A.

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

Dalzell, W. H.

W. H. Dalzell, A. F. Sarofim, Trans.ASME 91, 100 (1969).
[CrossRef]

di Lorenzo, A.

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

Driscoll, J. F.

J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
[CrossRef]

Flament, P.

P. Flament, M. E. Weill, G. Gouesbet, at International Symposium on Applied LDA to Fluid Mechanics, Lisbon (1982).

M. Weill, P. Flament, et G. Gouesbet, “Soot in Combustion Systems,” at Internatinal NATO Workshop, France (1981).

Gouesbet, et G.

M. Weill, P. Flament, et G. Gouesbet, “Soot in Combustion Systems,” at Internatinal NATO Workshop, France (1981).

Gouesbet, G.

P. Flament, M. E. Weill, G. Gouesbet, at International Symposium on Applied LDA to Fluid Mechanics, Lisbon (1982).

Hinds, W.

W. Hinds, P. C. Reist, Aerosol Sci.3, 501, 515 (1972).
[CrossRef]

Jagoda, J.

G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
[CrossRef]

Jerskey, T.

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
[CrossRef]

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
[CrossRef]

Lahaye, J.

G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
[CrossRef]

G. Prado, J. Lahaye, in Particulate Carbon Formation During Combustion, D. C. Siegla, G. W. Smith Eds. (Plenum, New York, 1981).

Mann, D. M.

J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
[CrossRef]

Masi, S.

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

McGregor, W. K.

J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
[CrossRef]

Neoh, K.

G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
[CrossRef]

Penner, S. S.

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
[CrossRef]

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
[CrossRef]

S. S. Penner, P. H. P. Chang, International Colloquium on Gasdynamics of Explosions and Reactive Systems, Gottingen (AIAA, New York, 1979).

Prado, G.

G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
[CrossRef]

G. Prado, J. Lahaye, in Particulate Carbon Formation During Combustion, D. C. Siegla, G. W. Smith Eds. (Plenum, New York, 1981).

Reist, P. C.

W. Hinds, P. C. Reist, Aerosol Sci.3, 501, 515 (1972).
[CrossRef]

Sarofim, A. F.

W. H. Dalzell, A. F. Sarofim, Trans.ASME 91, 100 (1969).
[CrossRef]

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

Svehla, R. A.

R. A. Svehla, Tech. Rep. 132, NASA (U.S. GPO, Washington, D.C., 1962).

van de Hulst, H.C.

H.C. van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957).

Venitozzi, C.

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

Weill, M.

M. Weill, P. Flament, et G. Gouesbet, “Soot in Combustion Systems,” at Internatinal NATO Workshop, France (1981).

Weill, M. E.

P. Flament, M. E. Weill, G. Gouesbet, at International Symposium on Applied LDA to Fluid Mechanics, Lisbon (1982).

Acta Astronaut. (2)

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 69 (1976).
[CrossRef]

S. S. Penner, J. M. Bernard, T. Jerskey, Acta Astronaut. 3, 93 (1976).
[CrossRef]

Combust. Sci. Technol. (1)

J. F. Driscoll, D. M. Mann, W. K. McGregor, Combust. Sci. Technol. 20, 41 (1979).
[CrossRef]

Trans.ASME (1)

W. H. Dalzell, A. F. Sarofim, Trans.ASME 91, 100 (1969).
[CrossRef]

Other (9)

A. d'Alessio, A. di Lorenzo, A. F. Sarofim, F. Beretta, S. Masi, C. Venitozzi, in Fifteenth International Combustion Symposium (The Combustion Institute, Pittsburgh, Pa., 1975), p. 1427.
[CrossRef]

G. Prado, J. Jagoda, K. Neoh, J. Lahaye, in Eighteenth International Combustion Symposium (Combustion Institute, Pittsburgh, Pa., 1981), p. 1127.
[CrossRef]

R. A. Svehla, Tech. Rep. 132, NASA (U.S. GPO, Washington, D.C., 1962).

G. Prado, J. Lahaye, in Particulate Carbon Formation During Combustion, D. C. Siegla, G. W. Smith Eds. (Plenum, New York, 1981).

M. Weill, P. Flament, et G. Gouesbet, “Soot in Combustion Systems,” at Internatinal NATO Workshop, France (1981).

S. S. Penner, P. H. P. Chang, International Colloquium on Gasdynamics of Explosions and Reactive Systems, Gottingen (AIAA, New York, 1979).

P. Flament, M. E. Weill, G. Gouesbet, at International Symposium on Applied LDA to Fluid Mechanics, Lisbon (1982).

W. Hinds, P. C. Reist, Aerosol Sci.3, 501, 515 (1972).
[CrossRef]

H.C. van de Hulst, Light Scattering by Small Particles (Wiley, New York, 1957).

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Figures (4)

Fig. 1
Fig. 1

Soot diameters (nm) vs HAB. Cold gas velocity = 5.5 cm/sec, fuel equivalence ratio = ● 2.5, ▴ 2.7, * 2.9.

Fig. 2
Fig. 2

Soot diameters (nm) vs HAB. Fuel equivalence ratio = 2.5, cold gas velocity = * 3.92 cm/sec, ● 5.5 cm/sec, ▴ 6.26 cm/sec.

Fig. 3
Fig. 3

Number density N (× 10−10/cm3) vs HAB. Fuel equivalence ratio = 2.5, cold gas velocity = * 3.92 cm/sec, ● 5.5 cm/sec, ▴ 6.26 cm/sec.

Fig. 4
Fig. 4

Number density N (× 10−10 cm3/sec) vs HAB. Cold gas velocity = 5.5 cm/sec, fuel equivalence ratio = ● 2.5, * 2.9.

Equations (5)

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D = ( π / k i 2 ) ( HW ) ,
d = k B T 3 π μ D C ( l / d ) ,
S ̅ ( ν ) = cste 0 exp [ ( τ / τ d ) ] exp [ ( τ / τ υ ) 2 ] cos 2 π ν τ d τ ,
α ( 0 ) = ( K A coh I s ) / HW ,
I s = N π 4 d 6 4 R 2 λ 4 | m 2 1 m 2 + 2 | 2 I 0 ,

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