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Can a quantitative simulation of an Otto engine be accurately rendered by a simple Novikov model with heat leak?
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A. Fischer
Veröffentlicht/Copyright:
1. Juni 2005
Abstract
In this case study a complex Otto engine simulation provides data including, but not limited to, effects from losses due to heat conduction, exhaust losses and frictional losses. This data is used as a benchmark to test whether the Novikov engine with heat leak, a simple endoreversible model, can reproduce the complex engine behavior quantitatively by an appropriate choice of model parameters. The reproduction obtained proves to be of high quality.
:
Published Online: 2005-06-01
Published in Print: 2004-03-04
Copyright (c) 2004 by Walter de Gruyter GmbH & Co. KG
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Artikel in diesem Heft
- Ilya Priogogine and the classical thermodynamics of irreversible processes
- Can a quantitative simulation of an Otto engine be accurately rendered by a simple Novikov model with heat leak?
- Non-equilibrium sound propagation using the orientation-free discrete kinetic theory
- On the thermodynamic conditions at moving phase-transition fronts in thermoelastic solids
- Optimal paths for minimizing lost available work during usual finite-time heat transfer processes
- Mesoscopic theory of liquid crystals
Artikel in diesem Heft
- Ilya Priogogine and the classical thermodynamics of irreversible processes
- Can a quantitative simulation of an Otto engine be accurately rendered by a simple Novikov model with heat leak?
- Non-equilibrium sound propagation using the orientation-free discrete kinetic theory
- On the thermodynamic conditions at moving phase-transition fronts in thermoelastic solids
- Optimal paths for minimizing lost available work during usual finite-time heat transfer processes
- Mesoscopic theory of liquid crystals