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The second law analysis and the Energy Utilization Factor (EUF) technique are employed to assess the efficacy of the system.
The proposed thermodynamic expression for the LF is based on second law analysis and concepts like the internal parameter θ, and the dissipation temperature Td [Las Ecuaciones Caracterı́sticas, Doctoral Thesis, University of Zaragoza, 1992].
A phenomenological equation of exergy transfer, which indicates the relation between exergy flux, exergy resistance and exergy driving forces, is derived by applying non-equilibrium thermodynamics to second law analysis, and simultaneously the expressions of the coefficients of exergy transfer are obtained.
This review highlights the means by which we scientifically measure variation, including analyses of overall variation (time domain analysis, frequency distribution, spectral power), frequency contribution (spectral analysis), scale invariant (fractal) behaviour (detrended fluctuation and power law analysis) and regularity (approximate and multiscale entropy).
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The results may (i) provide useful insights into the relations between thermodynamics and economics, both in general and for electrical generating stations, (ii) help demonstrate the merits of second-law analysis, and (iii) extend throughout the electrical utility sector.
A new method, using a combination of traditional first law and second law analysis, is developed to facilitate characterization and comparison of power cycles using low temperature heat sources.
The ongoing Immigration Policy and Law Analysis project (IMPALA, see http://www.impaladatabase.org/) seeks to achieve policy comparability across time and space by providing a measurement of migration policies over the 1960 2010 period for 25 immigration countries, again across pre-defined policy indicators (Gest et al. 2014).
In the present study, the theoretical and experimental results of the second law analysis on the heat transfer and flow of a horizontal concentric tube heat exchanger are presented.
It was derived from combined first and second law analysis, as a technique ensuring a better thermal integration, aiming the minimization of entropy production or, equivalently, exergy destruction by heat exchanger networks (HEN).
The theoretical background of second law analysis is reviewed, control volumes are defined and modelled, and the entropy generation rates are computed of all identified subprocesses.
Exergoeconomic analysis and optimization technique combine second law analysis with economics for cost effective thermal systems design.
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