Examination of the Autoignition Behavior of N-butane and Isobutane Mixtures Using a Knock Research Engine

Examination of the Autoignition Behavior of N-butane and Isobutane Mixtures Using a Knock Research Engine
Title Examination of the Autoignition Behavior of N-butane and Isobutane Mixtures Using a Knock Research Engine PDF eBook
Author Yitshak Henig
Publisher
Pages 162
Release 1989
Genre
ISBN

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Masters Theses in the Pure and Applied Sciences

Masters Theses in the Pure and Applied Sciences
Title Masters Theses in the Pure and Applied Sciences PDF eBook
Author Wade H. Shafer
Publisher Springer Science & Business Media
Pages 421
Release 2012-12-06
Genre Science
ISBN 1461534747

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Masters Theses in the Pure and Applied Sciences was first conceived, published, and disseminated by the Center for Information and Numerical Data Analysis and Synthesis (CINDAS) * at Purdue University in 1957, starting its coverage of theses with the academic year 1955. Beginning with Volume 13, the printing and dissemination phases of the activity were transferred to University Microfilms/Xerox of Ann Arbor, Michigan, with the thought that such an arrangement would be more beneficial to the academic and general scientific and technical community. After five years of this joint undertaking we had concluded that it was in the interest of all con cerned if the printing and distribution of the volumes were handled by an interna tional publishing house to assure improved service and broader dissemination. Hence, starting with Volume 18, Masters Theses in the Pure and Applied Sciences has been disseminated on a worldwide basis by Plenum Publishing Cor poration of New York, and in the same year the coverage was broadened to include Canadian universities. All back issues can also be ordered from Plenum. We have reported in Volume 34 (thesis year 1989) a total of 13,377 theses titles from 26 Canadian and 184 United States universities. We are sure that this broader base for these titles reported will greatly enhance the value of this important annual reference work. While Volume 34 reports theses submitted in 1989, on occasion, certain univer sities do report theses submitted in previous years but not reported at the time.

Autoignition of N-butane/isobutane Blends in a Knock Research Engine

Autoignition of N-butane/isobutane Blends in a Knock Research Engine
Title Autoignition of N-butane/isobutane Blends in a Knock Research Engine PDF eBook
Author Y. Henig
Publisher
Pages 13
Release 1989
Genre Isobutane
ISBN

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A Study of Autoignition in a Premixed Charge, Internal Combustion Engine Using Comprehensive Chemical Kinetics

A Study of Autoignition in a Premixed Charge, Internal Combustion Engine Using Comprehensive Chemical Kinetics
Title A Study of Autoignition in a Premixed Charge, Internal Combustion Engine Using Comprehensive Chemical Kinetics PDF eBook
Author Philip Michael Dimpelfeld
Publisher
Pages 534
Release 1985
Genre Internal combustion engines
ISBN

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Numerical Approaches to Combustion Modeling

Numerical Approaches to Combustion Modeling
Title Numerical Approaches to Combustion Modeling PDF eBook
Author Elaine S. Oran
Publisher AIAA (American Institute of Aeronautics & Astronautics)
Pages 886
Release 1991
Genre Science
ISBN

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Energy Research Abstracts

Energy Research Abstracts
Title Energy Research Abstracts PDF eBook
Author
Publisher
Pages 1470
Release 1989
Genre Power resources
ISBN

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Relation Between Spark-ignition Engine Knock, Detonation Waves, and Autoignition as Shown by High-speed Photography

Relation Between Spark-ignition Engine Knock, Detonation Waves, and Autoignition as Shown by High-speed Photography
Title Relation Between Spark-ignition Engine Knock, Detonation Waves, and Autoignition as Shown by High-speed Photography PDF eBook
Author Cearcy D. Miller
Publisher
Pages 72
Release 1946
Genre Combustion
ISBN

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A critical review of literature bearing on the autoignition and detonation-wave theories of spark-ignition engine knock and on the nature of gas vibrations associated with combustion and knock results in the conclusion that neither the autoignition theory nor the detonation-wave theory is an adequate explanation of spark-ignition engine knock. A knock theory is proposed, combining the autoignition and detonation-wave theories, introducing the idea that the detonation wave develops in autoignited or afterburning gases, and ascribing comparatively low-pitched heavy knocks to autoignition but high-pitched pinging knocks to detonation waves with the possibility of combinations of the two types of knock.