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Titlebook: Irreversible Phenomena; Ignitions, Combustio Kunio Terao Book 2007 Springer-Verlag Berlin Heidelberg 2007 Detonation.Ignition.Irreversible

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书目名称Irreversible Phenomena
副标题Ignitions, Combustio
编辑Kunio Terao
视频video
概述Theory and its applications of irreversible phenomena in ignitions, combustion and detonation waves are explained.Relative simple theory can easily applied to the practical calculation and industrial
图书封面Titlebook: Irreversible Phenomena; Ignitions, Combustio Kunio Terao Book 2007 Springer-Verlag Berlin Heidelberg 2007 Detonation.Ignition.Irreversible
描述Ideals are simple and able to be easily understood, but never exist in reality. In this book a theory based on the second law of thermodynamics and its applications are described. In thermodynamics there is a concept of an ideal gas which satisfies a mathematical formula PV = RT. This formula can appro- mately be applied to the real gas, so far as the gas has not an especially high pressure and low temperature. In connection with the second law of thermo- namics there is also a concept of reversible and irreversible processes. The reversible process is a phenomenon proceeding at an infinitely low velocity, while the irreversible process is that proceeding with a finite velocity. Such a process with an infinitely slow velocity can really never take place, and all processes observed are always irreversible, therefore, the reversible process is an ideal process, while the irreversible process is a real process. According to the first law of thermodynamics the energy increase dU of the thermodynamic system is a sum of the heat dQ added to the system and work dW done in the system. Practically, however, the mathematical formula of the law is often expressed by the equation , or some sim
出版日期Book 2007
关键词Detonation; Ignition; Irreversible Processes; Shockwaves; combustion; phase Transition; thermodynamics
版次1
doihttps://doi.org/10.1007/978-3-540-49901-5
isbn_softcover978-3-642-08068-5
isbn_ebook978-3-540-49901-5
copyrightSpringer-Verlag Berlin Heidelberg 2007
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Nucleation in Phase Transition,ase, for example, ice formation in water, ebullition in liquids, raining, etc. Such phenomena are called nucleation, which has been studied by many scientists, mainly under the assumption of equilibrium state. As the phenomena are irreversible, the stochastic theory can be applied to them.
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Stochastic Ignition Theory,aneous ignition in a homogeneous mixture proceeds homogeneously in the whole mixture space, but practically we never observe such phenomenon in which the ignition takes place everywhere in the mixture at the same time. In reality the ignition starts from a few points in the mixture.
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Ignition in a Fuel Spray,mogeneous combustible mixture, fluctuates over a wide range. From the histogram of the induction period or distribution of the ignition position, we can obtain the ignition probability which governs the fluctuating phenomena and gives us much information about the ignition.
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