A Novel Approach to the Teaching of Thermodynamic Cycles and the Laws of Thermodynamics

Author:

Dartnall W. John1,Reizes John1

Affiliation:

1. University of Technology-Sydney

Abstract

This paper outlines a simple particle mechanics model in which a single particle represents the thermodynamic fluid (gas) in a heat engine (exemplified by a piston engine). By mechanics based reasoning the model demonstrates the connection between the Carnot efficiency limitation of heat engines and the Kelvin-Planck statement of Second Law requiring only the truth of the Clausius statement.

Publisher

ASMEDC

Reference20 articles.

1. Arnaud J. , LaurentC., and FabriceP., 2002, “Carnot Cycle for an Oscillator.” Eur J. Phys.23(2002) 489–500.

2. Bhattacharyya S. and BlankD. A., 2000, “Power Optimized Work Limit for Internally Reversible Reciprocating Engines,” Int. J. Mechanical Sciences42 (2002) 1357–1368.

3. Bisquert J. , Ru¨hleS., CahenD., HodesG. and ZabanA. 2004, “Physical Chemical Principles of Photovoltaic Conversion with Nanoparticulate, Mesoporous Dye-sensitized Solar Cells,” J. Phys. Chem. B108(2004) 81068106.

4. Cengel, Y.A., and Boles, M.A., 2002, “Thermodynamics: an Engineering Approach” 4th ed WCB McGraw-Hill, Boston.

5. Curzon F. I. and AhlbornB., 1975; “Efficiency of a Carnot Engine at Maximum Power Output” Am. J. Phys.4322–4.

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Novel Approach to the Teaching of Etropy Based on a Recent Single Particle Heat Engine Model;Innovations in Engineering Education: Mechanical Engineering Education, Mechanical Engineering Technology Department Heads;2006-01-01

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