Reacting Flows: Combustion and Chemical Reactors

Reacting Flows: Combustion and Chemical Reactors
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发表时间:
1986-12
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通讯作者:
G. Ludford
G. Ludford
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其他
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作者:
G. Ludford

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第一部分:引言:G·S·路德福·S的低马赫数燃烧。化学反应器分析的数学背景。A.Majda高马赫数燃烧的搅拌槽A.F.Ghoniem燃烧中湍流反应流中的计算方法:存在热损失时的火焰共振和声学D.W.Mikolaitis对具有详细动力学的点火事件的渐近分析Mikolaitis的热膨胀对扰动预混火焰的影响:T.L.Jackson和A.K.Kapila模拟快速压缩机器中的尾气敲击:F.J.Higuera和A.Linan的回顾和扩展S.B.MarGolis和R.C.Armstrong的固体推进剂燃烧均相和非均相平面激波启动的两个渐近模型。具有敏感率的炸药J.D.Buckmaster的平面爆轰波的结构和稳定性大活化能的平面爆轰波的结构和稳定性反应介质中冲击的稳定性理论:马赫源于反应介质中的爆轰波.F.A.威廉姆斯的湍流扩散火焰的摄动方法的作用.J.巴克马斯特和N.彼得斯的湍流扩散火焰的解除及其制造的噪音第二部分:化学反应器:等温催化剂中的稳定性和Hopf分叉A.Bak和L.Binglin在耦合反应扩散池的线性和循环阵列中的周期性和非周期性区域,R.Raschman,I.Schreiber和M.Marek提出的具有外部热容的连续搅拌槽反应器的动态行为,开放化学反应系统的稳态多重性特征(V.Balakotaiah)在简单的化学反应器模型中的全局分叉(J.Guckenheimer)在反应系统动力学分析中的奇点理论方法数学问题:解廓线和热失控(J.Bebernes和D.Kassoy预混层流火焰作为行波),D.H.Wagner(D.H.Wagner)对无点火温度的层流平面火焰模型的数学研究(M.Marion)以及P.C.Fife和B.Nicolaenko在研究火焰稳定性时使用对称性和分叉技术,B.L.Keyfitz,M.Golubitsky,M.Gorman和P.Chosset由R.Alexander振荡化学反应对管式反应器的数学分析:G.C.Wake,J.G.Graham-Eagle所著的搅拌良好和空间分布良好的课程,和B.F.Gray由I.Muller对粘性-导热流体混合物本构性质的系统推导计算问题:由V.Giovangigli和M.D.Smooke提出的计算停滞点流动中预混层流火焰的熄灭极限对层流静止火焰的数值分析的贡献B.Sermange非定常火焰传播的自适应数值方法B.Larrouturou使用计算机回答燃烧理论中的基本问题:以R.D.Janssen和P.J.O‘Rourke的液滴燃烧为例,P.Colella,A.Majda,以及M.R.Baer、R.E.Benner、R.J.Gross和J.W.Nunziato对反应性颗粒材料中爆燃到爆轰转变(DDT)的V.Roytburd建模和计算关于确定燃烧动力学建模的重要方面,通过H.Rabitz的灵敏度分析使用S.H.Lam的数值计算对刚性方程进行奇异摄动。
Part 1: Introduction: Low Mach number combustion by G. S. Ludford S. The mathematical background of chemical reactor analysis. II. The stirred tank by R. Aris High Mach number combustion by A. Majda Numerical calculation of the interaction of pressure waves by H. A. Dwyer, A. Lutz, and R. J. Kee Computational methods in turbulent reacting flow by A. F. Ghoniem Combustion: Flame resonance and acoustics in the presence of heat loss by A. C. McIntosh The asymptotic analysis of ignition events with detailed kinetics by D. W. Mikolaitis Thermal expansion effects on perturbed premixed flames: a review by T. L. Jackson and A. K. Kapila Modeling end-gas knock in a rapid-compression machine: review and extension by F. J. Higuera and A. Linan Two asymptotic models for solid propellant combustion by S. B. Margolis and R. C. Armstrong Plane shock initiation of homogeneous and heterogeneous condensed phase. Explosives with a sensitive rate by D. S. Stewart The structure and stability of plane detonation waves for large activation energy by J. D. Buckmaster Stability theory for shocks in reacting media: Mach stems in detonation waves by R. R. Rosales Roles of perturbation methods for turbulent diffusion flame by F. A. Williams The lifting of turbulent diffusion flames and the noise they make by J. Buckmaster and N. Peters Part 2: Chemical reactors: Stability and Hopf bifurcation in isothermal catalysts by J. M. Vega and I. E. Parra Propagation of reaction fronts in exothermic heterogeneous noncatalytic systems solid-solid and solid-gas by J. Puszynski, J. Degreve, S. Kumar, and V. Hlavacek Optimal catalyst activity profiles in pellets by A. Varma Polymerization reactions in closed and open systems by T. A. Bak and L. Binglin Periodic and aperiodic regimes in linear and cyclic arrays of coupled reaction-diffusion cells by R. Raschman, I. Schreiber, and M. Marek Dynamic behavior of continuous stirred-tank reactors with extraneous thermal capacitance by J. B. Planeaux, K. F. Jensen, and W. W. Farr Steady-state multiplicity features of open chemically reacting systems by V. Balakotaiah Global bifurcations in simple models of a chemical reactor by J. Guckenheimer Methods of singularity theory in the analysis of dynamics of reactive systems by L. M. Pismen Mathematical questions: Solution profiles and thermal runaway by J. Bebernes and D. Kassoy Premixed laminar flames as travelling waves by D. H. Wagner Mathematical study of a model with no ignition temperature for laminar plane flames by M. Marion Well-posedness of the nonlinear equations for zero Mach number combustion by P. Embid Flame structure for reaction networks with chain branching and recombination by P. C. Fife and B. Nicolaenko The use of symmetry and bifurcation techniques in studying flame stability by B. L. Keyfitz, M. Golubitsky, M. Gorman, and P. Chosset Mathematical analysis of tubular reactors by R. Alexander Oscillating chemical reactions: the well-stirred and spatially distributed class by G. C. Wake, J. G. Graham-Eagle, and B. F. Gray A systematic derivation of the constitutive properties of mixtures of viscous-heat conducting fluids by I. Muller Computational question: Calculation of extinction limits for premixed laminar flames in a stagnation point flow by V. Giovangigli and M. D. Smooke Contribution to the numerical analysis of laminar stationary flames by M. Sermange Adaptive numerical methods for unsteady flame propagation by B. Larrouturou Using computers to answer fundamental questions in combustion theory: an example from droplet combustion by R. D. Janssen and P. J. O'Rourke actional step methods for reacting shock waves by P. Colella, A. Majda, and V. Roytburd Modelling and computation of deflagration-to-detonation transition (DDT) in reactive granular materials by M. R. Baer, R. E. Benner, R. J. Gross, and J. W. Nunziato On determining important aspects of combustion kinetics modelling with sensitivity analysis by H. Rabitz Singular perturbation for stiff equations using numerical computations by S. H. Lam.