On the exergy balance equation and the exergy destruction

The exergy balance equation can be written expressing the useful work for a general process as depending on the useful work for the corresponding reversible process and the exergy destruction term. However, this can be made only if the terms (other than the exergy destruction term) on the exergy bal...

Full description

Saved in:
Bibliographic Details
Published inEnergy (Oxford) Vol. 116; pp. 824 - 835
Main Author Costa, V.A.F.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2016
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The exergy balance equation can be written expressing the useful work for a general process as depending on the useful work for the corresponding reversible process and the exergy destruction term. However, this can be made only if the terms (other than the exergy destruction term) on the exergy balance equation for the general process lead to the same result as the terms on the exergy balance equation for the corresponding reversible process. It is shown that this is not generally the case for unsteady processes, and that this can be the case for steady processes, for both closed and open systems. It is also shown that this is not generally the case for unsteady processes in terms of instantaneous powers, but that this can be the case for the whole unsteady processes. This is an important result, for: (i) Expressing the useful work for a general process as depending on the useful work for the corresponding reversible process and the exergy destruction; (ii) Exergy analysis; and (iii) The teaching/learning process of exergy and exergy analysis, and a better understanding and application of the exergy balance equation. •Exergy balance equation relating the real and the corresponding reversible situations.•Identification of the exergy destruction on the exergy balance equation.•Exergy analysis with energy interactions affected by the degree of irreversibility.
ISSN:0360-5442
DOI:10.1016/j.energy.2016.10.015