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Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station

Davor BIŠĆAN ; MIKRA d.o.o. , Duga Resa, Croatia
Dražen LONČAR ; Faculty of Mechanical Engineering and Naval Architecture, University of Zagreb, Zagreb, Croatia

Puni tekst: engleski, pdf (3 MB) str. 475-487 preuzimanja: 1.174* citiraj
APA 6th Edition
BIŠĆAN, D. i LONČAR, D. (2010). Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station. Strojarstvo, 52 (4), 475-487. Preuzeto s https://hrcak.srce.hr/64466
MLA 8th Edition
BIŠĆAN, Davor i Dražen LONČAR. "Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station." Strojarstvo, vol. 52, br. 4, 2010, str. 475-487. https://hrcak.srce.hr/64466. Citirano 15.09.2019.
Chicago 17th Edition
BIŠĆAN, Davor i Dražen LONČAR. "Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station." Strojarstvo 52, br. 4 (2010): 475-487. https://hrcak.srce.hr/64466
Harvard
BIŠĆAN, D., i LONČAR, D. (2010). 'Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station', Strojarstvo, 52(4), str. 475-487. Preuzeto s: https://hrcak.srce.hr/64466 (Datum pristupa: 15.09.2019.)
Vancouver
BIŠĆAN D, LONČAR D. Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station. Strojarstvo [Internet]. 2010 [pristupljeno 15.09.2019.];52(4):475-487. Dostupno na: https://hrcak.srce.hr/64466
IEEE
D. BIŠĆAN i D. LONČAR, "Optimization of Waste Heat Utilization in Gas Turbine Pipeline Compressor Station", Strojarstvo, vol.52, br. 4, str. 475-487, 2010. [Online]. Dostupno na: https://hrcak.srce.hr/64466. [Citirano: 15.09.2019.]

Sažetak
Gas turbine driven pipeline compressor stations employed in existing pipelines
and also in those that will be built due to increasing demand for natural gas
present a significant potential for production of additional electricity and
useful heat by utilizing the waste heat from the gas turbine process. The paper
analyzes and compares several different configurations of heat recovery steam
generator (HRSG) both in terms of thermodynamic and thermoeconomic
criteria. In order to find an optimal configuration an exergo-economic HRSG
optimization is conducted for finding the compromise between the cost of
the exergy losses and investment costs of HRSG surfaces. Comparison and
selection of configurations is based on the Pareto front through finding an
optimum between maximal system efficiency and minimal cost of electricity.

Ključne riječi
Combined cycle; Exergo-economic optimization; Heat recovery steam generator; Pipeline compressor station; Waste heat utilization

Hrčak ID: 64466

URI
https://hrcak.srce.hr/64466

[hrvatski]

Posjeta: 1.545 *