Kalina Cycle Thermal Analysis Using Heat Recovery Process

Krunal M. Bhatt, Mangesh S. Kelkar, Dhaval Solanki, Zeel K. Patel, Aakash J. Patel

Abstract


It is not possible to measure very high temperature with help of physical temperature measuring probes, so in order to get temperature of flue gases, inverse heat transfer theory is applied. Measuring the temperature on outside wall of pipe from which flue gases are going out, it is possible to get calculated values of flue gases (which is not possible to get with physical probe) using inverse heat transfer analysis. From this, heat flux is calculated and that heat flux is suggested to be applied to run Kalina cycle. Furthermore, Kalina cycle thermal analysis is performed to understand the full working by applying first law of thermodynamics.

Keywords


Kalina cycle; thermal analysis, gases; heat transfer

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References


Modi A, Haglind F. Performance analysis of a Kalina cycle for a central receiver solar thermal power plant with direct steam generation. Applied Thermal Engineering. 2014; 65(1–2): 201–208p.

Singh OK, Kaushik SC. Energy and exergy analysis and optimization of Kalina cycle coupled with a coal fired steam power plant. Applied Thermal Engineering. 2013; 51(1–2): 787–800p.

Zhang X, He M, Zhang Y.. A review of research on the Kalina cycle. Renewable and Sustainable Energy Reviews. 2012; 16(7): 5309–5318p.

Bombarda P, Invernizzi CM, Pietra C. Heat recovery from Diesel engines: A thermodynamic comparison between Kalina and ORC cycles. Applied Thermal Engineering. 2010; 30(2–3): 212 219p.

Hettiarachchi HM, Golubovic M, Worek WM, Ikegami Y. The performance of the Kalina cycle system 11 (KCS-11) with low-temperature heat sources. Journal of Energy Resources Technology. 2007; 129(3): 243–247p.

Jiangfeng Wang, Zhequan Yan, Enmin Zhou, Yiping Dai, Parametric analysis and optimization of a Kalina cycle driven by solar energy, Applied Thermal Engineering 50 (2013) 408-415..

Mehta RC. Estimation of heat-transfer coefficient in a rocket nozzle. AIAA Journal. 1981; 19(8): 1085–1086p.




DOI: https://doi.org/10.37628/jiegt.v4i2.827

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