Shock Initiated Ignition in Heptane-Oxygen-Argon Mixtures

Shock Initiated Ignition in Heptane-Oxygen-Argon Mixtures PDF Author: Alexander Burcat
Publisher:
ISBN:
Category :
Languages : en
Pages : 8

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Book Description
The ignition of heptane in mixtures containing oxygen and argon was studied behind reflected shock waves in 56 mm i.d. and 26 mm i.d. single-pulse shock tubes. The measurements covered the temperature range 1100-1700 K and reflected shock pressures varying from 2 to 12 atmospheres.

Shock Initiated Ignition in Heptane-Oxygen-Argon Mixtures

Shock Initiated Ignition in Heptane-Oxygen-Argon Mixtures PDF Author: Alexander Burcat
Publisher:
ISBN:
Category :
Languages : en
Pages : 8

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Book Description
The ignition of heptane in mixtures containing oxygen and argon was studied behind reflected shock waves in 56 mm i.d. and 26 mm i.d. single-pulse shock tubes. The measurements covered the temperature range 1100-1700 K and reflected shock pressures varying from 2 to 12 atmospheres.

Shock Tubes and Waves

Shock Tubes and Waves PDF Author: Charles E. Treanor
Publisher: SUNY Press
ISBN: 9780873955959
Category : Philosophy
Languages : en
Pages : 1130

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Book Description
Proceedings from a symposium on shock tubes and waves held July 6-9, 1981.

Product Distribution and Induction Times in the Shock-Initiated Ignition of Cyanogen-Oxygen-Argon Mixtures

Product Distribution and Induction Times in the Shock-Initiated Ignition of Cyanogen-Oxygen-Argon Mixtures PDF Author: Davy M. Bass
Publisher:
ISBN:
Category :
Languages : en
Pages : 80

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Book Description
Mixtures of cyanogen and oxygen diluted in argon were ignited behind reflected shocks in a single-pulse shock tube. The ignition delay times were determined from pressure observations. The experiments covered the temperature range 1400 K to 2000 K. This range permitted ignition delay times from 15 to 430 microseconds. Eight mixture groups and their initial conditions were chosen in such a manner that the influence of each particular parameter on the induction period would be unequivocally evaluated. The resulting equation for induction time was determined. Product distribution before and after ignition was determined by mass spectroscopy. Results indicated that the combustion of cyanogen is thermodynamically controlled. Hydrogen lowers activation energy and shortens induction time. This indicates that with the addition of H2 a chain branching mechanism becomes rate controlling. Modified author abstract).

Shock Initiated Ignition of Ethane-Oxygen-Argon Mixtures

Shock Initiated Ignition of Ethane-Oxygen-Argon Mixtures PDF Author: Alexander Burcat
Publisher:
ISBN:
Category : Chemical kinetics
Languages : en
Pages : 22

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Book Description
A detailed study was made of ignition delay times in ethane-oxygen-argon mixtures behind a reflected shock wave as indicated by pressure and light emission observation. Measured induction times ranged from 20-600 microsec over a temperature interval of 1235 - 1660K and associated pressures of from 2-8 atm. To elucidate composition effects, the equivalence ratio of the test mixture were varied from 0.5 - 2.0 in approximately 95% dilution with argon. (Author).

Energy

Energy PDF Author:
Publisher:
ISBN:
Category : Fuel
Languages : en
Pages : 356

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Book Description


Ignition Delay Times of Benzene and Toluene with Oxygen in Argon Mixtures

Ignition Delay Times of Benzene and Toluene with Oxygen in Argon Mixtures PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 18

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Product Distribution and Induction Times in the Shock-initiated Ignition of Cyanogen-oxygen-argon Mixtures

Product Distribution and Induction Times in the Shock-initiated Ignition of Cyanogen-oxygen-argon Mixtures PDF Author: Davy M. Bass (CAPT, USAF.)
Publisher:
ISBN:
Category : Cyanogen compounds
Languages : en
Pages :

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Book Description


Shock Waves @ Marseille I

Shock Waves @ Marseille I PDF Author: Raymond Brun
Publisher: Springer Science & Business Media
ISBN: 3642788297
Category : Science
Languages : en
Pages : 497

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Book Description
Recently, there have been significant advances in the fields of high-enthalpy hypersonic flows, high-temperature gas physics, and chemistry shock propagation in various media, industrial and medical applications of shock waves, and shock-tube technology. This series contains all the papers and lectures of the 19th International Symposium on Shock Waves held in Marseille in 1993. They are published in four topical volumes, each containing papers on related topics, and preceded by an overview written by a leading international expert. The volumes may be purchased independently.

Shock Waves @ Marseille III

Shock Waves @ Marseille III PDF Author: Raymond Brun
Publisher: Springer Science & Business Media
ISBN: 3642788351
Category : Science
Languages : en
Pages : 490

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Book Description
Recently, there have been significant advances in the fields of high-enthalpy hypersonic flows, high-temperature gas physics, and chemistry shock propagation in various media, industrial and medical applications of shock waves, and shock-tube technology. This series contains all the papers and lectures of the 19th International Symposium on Shock Waves held in Marseille in 1993. They are published in four topical volumes, each containing papers on related topics, and preceded by an overview wrtitten by a leading international expert. The volumes may be purchased independently.

Shock Waves @ Marseille II

Shock Waves @ Marseille II PDF Author: Raymond Brun
Publisher: Springer Science & Business Media
ISBN: 3642788327
Category : Science
Languages : en
Pages : 474

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Book Description
Recently, there have been significant advances in the fields of high-enthalpy hypersonic flows, high-temperature gas physics, and chemistry shock propagation in various media, industrial and medical applications of shock waves, and shock-tube technology. This series contains all the papers and lectures of the 19th International Symposium on Shock Waves held in Marseille in 1993. They will be published in four topical volumes, each containing papers on related topics, and preceded by an overview written by a leading international expert. The volumes may be purchased independently.