Advanced Thermodynamics for Engineers

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Advanced Thermodynamics for Engineers, Second Edition introduces the basic concepts of thermodynamics and applies them to a wide range of technologies. Authors Desmond Winterbone and Ali Turan also include a detailed study of combustion to show how the chemical energy in a fuel is converted into thermal energy and emissions; analyze fuel cells to give an understanding of the direct conversion of chemical energy to electrical power; and provide a study of property relationships to enable more sophisticated analyses to be made of irreversible thermodynamics, allowing for new ways of efficiently covering energy to power (e.g. solar energy, fuel cells). Worked examples are included in most of the chapters, followed by exercises with solutions. By developing thermodynamics from an explicitly equilibrium perspective and showing how all systems attempt to reach equilibrium (and the effects of these systems when they cannot), Advanced Thermodynamics for Engineers, Second Edition provides unparalleled insight into converting any form of energy into power. The theories and applications of this text are invaluable to students and professional engineers of all disciplines.

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  • Vægt1060 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Entropy Stability Properties Fossil fuels Equilibrium Heat pumps Mixtures Refrigerators Aircraft gas-turbines Chemical kinetics Dissociation Combustion Chemical structure Nitric oxide Methane Diesel Heat-engines Laws of thermodynamics Second law of thermodynamics Stoichiometry Thermoelectricity Exergy Enthalpy Heat of formation Liquefaction Phosphoric acid otto Perfect Reversibility Reaction Rates Numerical examples Law of Mass Action Octane Compression ratio Availability KP Irreversible Thermodynamics Entropy Production Rankine Cycle Systems Enthalpy of reaction Irreversibility Gibbs energy Electrochemical potential Gas Turbine Cycles Joule-Thomson Effect Chemical potential Exhaust Gas Recirculation Internal energy Carnot cycle Thomson Turbofan Turbojet Analysis of engine cycle Air-standard cycles combined cycle Bond energy Diesel Engine Clausius-Clapeyron equation Diffusion Flames Combustion Chamber Carbon dioxide-dry ice Entropy of ideal gas Equilibrium Constant Equilibrium combustion dufour Efficiency of fuel cell dual combustion cycles Engine Speed Effect of friction direct methanol Equivalence Ratios Entropy Flow Gas turbine combustion chamber Gibbs energy and stability of isotherm Explosion limits Gibbs-Dalton law Gas turbine cycle Fuel cells-alkaline Gibbs energy of ideal gas Datum levels Inefficiencies Internal energy and enthalpy Diffusion and heat transfer Intercooled cycle heat transfer networks Ideal and perfect gas laws Electromotive force (emf) Linde liquefaction plant analysis Electric cells Exchange current Laminar Flame Speed law of corresponding states Liquefying van der Waals gas Losses in cells Molar concentration Maximum and minimum inversion temperatures Mean temperature of energy addition and rejection Molten carbonate Heats of reaction and formation Peltier Hess' law Ignition Timing Products of combustion Pinch point Pinch technology Pollutants from chemical kinetics Rational efficiency Steady state thermodynamics Regenerated gas turbine Reversible and irreversible processes Reheat cycle Rich and lean mixtures heat cascading Helmholtz Energy ideal gases ideal van der Waals gases Thermocouple Turbulent flame speed Useful work Thermodynamic relationships Thermodynamics of fuel cell in steady state Temperature scale Thermal equilibrium Specific heat capacity at constant volume and pressure Nitric oxide formation Maxwell relationships Thermodynamic forces and velocities Onsager's reciprocal relationship Quality of energy Practical engine Premixed and diffusion flames Solid polymer Sources of hydrogen Unavailable Energy Unsteady flow energy equation Van Der Waals Equation Reaction order Realistic engine cycle soret Tables of properties for ideal gas Tafel constant Seebeck Thermal efficiency Thermodynamics of combustion Solid Oxide spark ignition engine Two-phase region van't Hoff relationship

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