Dynamics of Reactive Systems: Flames and configurations
Author: J. Raymond Bowen
Publisher:
Published: 1986
Total Pages: 448
ISBN-13:
DOWNLOAD EBOOKRead and Download eBook Full
Author: J. Raymond Bowen
Publisher:
Published: 1986
Total Pages: 448
ISBN-13:
DOWNLOAD EBOOKAuthor: A. L. Kuhl
Publisher: AIAA
Published: 1991
Total Pages: 454
ISBN-13: 9781600863851
DOWNLOAD EBOOKAuthor: J. Raymond Bowen
Publisher:
Published: 1986
Total Pages: 504
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher: AIAA (American Institute of Aeronautics & Astronautics)
Published: 1988
Total Pages: 472
ISBN-13:
DOWNLOAD EBOOKPapers from the colloquium held August 1987. The first part of the two-volume set covers flames: ignition dynamics, flame chemistry, diffusion flames in shear flow, dynamics of flames, combustion diagnostics. Part two is focused on heterogeneous combustion and applications.
Author: A. L. Kuhl
Publisher: AIAA
Published: 1993
Total Pages: 474
ISBN-13: 9781600864063
DOWNLOAD EBOOKAuthor: A. L. Kuhl
Publisher:
Published: 1988
Total Pages: 456
ISBN-13:
DOWNLOAD EBOOKAuthor: Brian Bowen
Publisher: CRC Press
Published: 1996-09-15
Total Pages: 410
ISBN-13: 9782884491709
DOWNLOAD EBOOKCovering the dynamics of reactive systems and of explosions, the 15 papers discuss the treatment of turbulent mixing in reactive systems, acoustic interactions with combustion fields, liquid atomization, soot formation, practical applications of combustion in waste incineration and pulse jet ignition in internal combustion engines, detonations phenomena, and mixing effects in explosions. Includes six color plates. No index. Annotation copyrighted by Book News, Inc., Portland, OR
Author: A. L. Kuhl
Publisher: AIAA
Published: 1993
Total Pages: 516
ISBN-13: 9781600864070
DOWNLOAD EBOOKAuthor: John Pascal Vinti
Publisher: AIAA
Published: 1998
Total Pages: 438
ISBN-13: 9781600864292
DOWNLOAD EBOOKAuthor: R. Borghi
Publisher: Springer Science & Business Media
Published: 2013-03-08
Total Pages: 958
ISBN-13: 146139631X
DOWNLOAD EBOOKTurbulent reactive flows are of common occurrance in combustion engineering, chemical reactor technology and various types of engines producing power and thrust utilizing chemical and nuclear fuels. Pollutant formation and dispersion in the atmospheric environment and in rivers, lakes and ocean also involve interactions between turbulence, chemical reactivity and heat and mass transfer processes. Considerable advances have occurred over the past twenty years in the understanding, analysis, measurement, prediction and control of turbulent reactive flows. Two main contributors to such advances are improvements in instrumentation and spectacular growth in computation: hardware, sciences and skills and data processing software, each leading to developments in others. Turbulence presents several features that are situation-specific. Both for that reason and a number of others, it is yet difficult to visualize a so-called solution of the turbulence problem or even a generalized approach to the problem. It appears that recognition of patterns and structures in turbulent flow and their study based on considerations of stability, interactions, chaos and fractal character may be opening up an avenue of research that may be leading to a generalized approach to classification and analysis and, possibly, prediction of specific processes in the flowfield. Predictions for engineering use, on the other hand, can be foreseen for sometime to come to depend upon modeling of selected features of turbulence at various levels of sophistication dictated by perceived need and available capability.