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Propagation And Extinction Studies Of Laminar Lean Premixed Syngasair Flames Zhang

  • SKU: BELL-6754298
Propagation And Extinction Studies Of Laminar Lean Premixed Syngasair Flames Zhang
$ 31.00 $ 45.00 (-31%)

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Propagation And Extinction Studies Of Laminar Lean Premixed Syngasair Flames Zhang instant download after payment.

Publisher: Springer Singapore : Imprint: Springer
File Extension: PDF
File size: 5.77 MB
Pages: 127
Author: Zhang, Yang
ISBN: 9789811046148, 9789811046155, 981104614X, 9811046158
Language: English
Year: 2018

Product desciption

Propagation And Extinction Studies Of Laminar Lean Premixed Syngasair Flames Zhang by Zhang, Yang 9789811046148, 9789811046155, 981104614X, 9811046158 instant download after payment.

This thesis presents pioneering experimental and numerical studies on three aspects of the combustion characteristics of lean premixed syngas/air flames, namely the laminar flame speed, extinction limit and flammability limit. It illustrates a new extinction exponent concept, which enriches the combustion theory. Above all, the book provides the following: a) a series of carefully measured data and theoretical analyses to reveal the intrinsic mechanisms of the fuel composition effect on the propagation and extinction of lean syngas/air flames; b) a mixing model and correlation to predict the laminar flame speed of multi-component syngas fuels, intended for engineering computations; c) a new “extinction exponent” concept to describe the critical effects of chemical kinetics on the extinction of lean premixed syngas/air flames; and d) the effects and mechanism of the dilution of incombustible components on lean premixed syngas/air flames and the preferential importance among the thermal, chemical and diffusion effects.
Abstract: This thesis presents pioneering experimental and numerical studies on three aspects of the combustion characteristics of lean premixed syngas/air flames, namely the laminar flame speed, extinction limit and flammability limit. It illustrates a new extinction exponent concept, which enriches the combustion theory. Above all, the book provides the following: a) a series of carefully measured data and theoretical analyses to reveal the intrinsic mechanisms of the fuel composition effect on the propagation and extinction of lean syngas/air flames; b) a mixing model and correlation to predict the laminar flame speed of multi-component syngas fuels, intended for engineering computations; c) a new “extinction exponent” concept to describe the critical effects of chemical kinetics on the extinction of lean premixed syngas/air flames; and d) the effects and mechanism of the dilution of incombustible components on lean premixed syngas/air flames and the preferential importance among the thermal, chemical and diffusion effects

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