By W. Sirignano, A. Merzhanov, L. De Luca
Authored through the most prestigious overseas researchers, this ebook includes 21 papers that deal with 5 normal catagories of combustion technological know-how: flame idea, heterogeneous combustion, unsteady and mobile combustion, turbulent combustion, and explosions and detonations. The e-book is devoted to Yakov B. Zel'dovich, an eminent researcher identified for his theoretical works on combustion and detonation, who served because the first Chairman of the medical Council of the Academy of Sciences of the USSR. the 1st 5 papers provide a point of view of the advancements in flame idea, and the serious function that Zel'dovich performed in them. the second one part examines the problems of heterogeneous combustion and the new advances within the box. The 3rd part addresses fabric facing unsteady mobile combustion, and the fourth investigates turbulent combustion. the ultimate part treats the topic of detonations and explosions.
Read Online or Download Advances in Combustion Science: In Honor of Ya. B. Zel'dovich (Progress in Astronautics and Aeronautics) PDF
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Extra resources for Advances in Combustion Science: In Honor of Ya. B. Zel'dovich (Progress in Astronautics and Aeronautics)
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60, No. 1-3, 1988, pp. 1-5. , Pittsburgh, PA, 1992, pp. 6167. 94 Ashurst, W. , and Sivashinsky, G. , "On Flame Propagation through Periodic Flow Fields," Combustion Science and Technology, Vol. 80, No. 1-3, 1991, pp. 159-164. , and Sivashinsky, G. , "Flame Extinction by Periodic Flow-Field," SIAM Journal on Applied Mathematics, Vol. 51, No. 2, 1991, pp. 344-350. 96 Aldredge, R. C, "The Propagation of Wrinkled Premixed Flames in Spatially Periodic Shear Flow," Combustion and Flame, Vol. 90, No. 2, 1992, pp.
Much of this work involves extensions of that mentioned above, concerning front evolution equations, with forcing added to investigate possible influences of turbulence. 92'93 That work shows quite significant influences of density differences. For example, in the limit of lowintensity turbulence, the limit of the derivative dSr/du' (where ST is the turbulent burning velocity and u' the root-mean-square turbulent velocity fluctuation) is zero for constant-density flows but apparently infinite when there are density changes.