Affiliation:
1. Department of Process & Energy, Delft University of Technology, 2628 CD Delft, The Netherlands
Abstract
Isentropic processes in thermodynamics are fundamental to our understanding of numerous physical phenomena across different scientific and engineering fields. They provide a theoretical reference case for the evaluation of real thermodynamic processes and observations. Yet, as analytical relations for isentropic transformations in gas dynamics are limited to ideal gases, the inability to analytically describe isentropic processes for non-ideal gases is a fundamental shortcoming. This work presents generalised isentropic relations in thermodynamics based on the work by Kouremenos et al., where three isentropic exponents γPv, γTv and γPT are introduced to replace the ideal gas isentropic exponent γ to incorporate the departure from the non-ideal gas behaviour. The general applicability of the generalised isentropic relations is presented by exploring its connections to existing isentropic models for ideal gases and incompressible liquids. Generalised formulations for the speed of sound, the Bernoulli equation, compressible isentropic flow transformations, and isentropic work are presented thereafter, connecting previously disjoint theories for gases and liquids. Lastly, the generalised expressions are demonstrated for practical engineering examples, and their accuracy is discussed.
Funder
European Research Council
Subject
Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction
Reference29 articles.
1. The Real Gas Effect on the Stagnation Properties for Supercritical Carbon Dioxide Flows;Nan;Int. J. Gas Turbine Propuls. Power Syst.,2020
2. Li, X., Zhao, Y., Yao, H., Zhao, M., and Liu, Z. (2020). A New Method for Impeller Inlet Design of Supercritical CO2 Centrifugal Compressors in Brayton Cycles. Energies, 13.
3. Uysal, S.C., and Liese, E. (2022, January 21–24). Radial Compressor Design and Off-Design for Trans-critical CO2 Operating Conditions. Proceedings of the 7th International Supercritical CO2 Power Cycles Symposium, San Antonio, TX, USA.
4. Blondel, Q., Tauveron, N., Caney, N., and Voeltzel, N. (2019). Experimental Study and Optimization of the Organic Rankine Cycle with Pure NovecTM649 and Zeotropic Mixture NovecTM649/HFE7000 as Working Fluid. Appl. Sci., 9.
5. Impact of power-to-gas on the cost and design of the future low-carbon urban energy system;Weiss;Appl. Energy,2022
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