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Technical and environmental analysis of repowering the existing CHP system in a petrochemical plant: A case study

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  • Ahmadi, Gholamreza
  • Toghraie, Davood
  • Akbari, Omid Ali

Abstract

In this paper the effects of repowering of an existing combined heat and power (CHP) system in a Petrochemical Plant is evaluated. The studied system includes 3 steam generators, 3 turbogenerators to generate 18 MW electricity and 3 steam collectors (HPS, MPS and LPS) to provide steam for various steam consumers. According to the low efficiency of the existing boilers, the full repowering method was suggested and analyzed. To do this, three different plans was introduced, using single, double and triple-pressure level HRSGs. A number of gas turbines were tested and finally considering all aspects into account, the model ABB GT8C was selected. Using this GT and a single-pressure level HRSG instead of present boilers result an increase in produced power by 52.8 MW (7.6 times bigger than the simple cycle), while the rate of fuel consumption will be 3.2 kg/s (1.6 times bigger than the simple cycle). Moreover, the energy, exergy, heat and total efficiencies will reach to %39.44, %37.58, %29.93 and %69.37, respectively. The mentioned efficiencies in simple cycle are %8.2, %7.99, %48.3 and %56.68, respectively. The rate of fuel consumption, CO2 and NOx production will also be 3.2 kg/s (1.6 times bigger than the simple cycle), 0.106 and 0.00027 kg/kW.h (0.502 and 0.00089 kg/kW.h in the simple cycle), respectively.

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  • Ahmadi, Gholamreza & Toghraie, Davood & Akbari, Omid Ali, 2018. "Technical and environmental analysis of repowering the existing CHP system in a petrochemical plant: A case study," Energy, Elsevier, vol. 159(C), pages 937-949.
  • Handle: RePEc:eee:energy:v:159:y:2018:i:c:p:937-949
    DOI: 10.1016/j.energy.2018.06.208
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    References listed on IDEAS

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    1. Escosa, Jesús M. & Romeo, Luis M., 2009. "Optimizing CO2 avoided cost by means of repowering," Applied Energy, Elsevier, vol. 86(11), pages 2351-2358, November.
    2. Naserabad, S. Nikbakht & Mehrpanahi, A. & Ahmadi, G., 2018. "Multi-objective optimization of HRSG configurations on the steam power plant repowering specifications," Energy, Elsevier, vol. 159(C), pages 277-293.
    3. Sanjay,, 2011. "Investigation of effect of variation of cycle parameters on thermodynamic performance of gas-steam combined cycle," Energy, Elsevier, vol. 36(1), pages 157-167.
    4. Bracco, Stefano & Siri, Silvia, 2010. "Exergetic optimization of single level combined gas–steam power plants considering different objective functions," Energy, Elsevier, vol. 35(12), pages 5365-5373.
    5. Ahmadi, Gholamreza & Toghraie, Davood & Akbari, Omid Ali, 2017. "Solar parallel feed water heating repowering of a steam power plant: A case study in Iran," Renewable and Sustainable Energy Reviews, Elsevier, vol. 77(C), pages 474-485.
    6. Bassily, A.M., 2008. "Enhancing the efficiency and power of the triple-pressure reheat combined cycle by means of gas reheat, gas recuperation, and reduction of the irreversibility in the heat recovery steam generator," Applied Energy, Elsevier, vol. 85(12), pages 1141-1162, December.
    7. Ahmadi, Gholam Reza & Toghraie, Davood, 2016. "Energy and exergy analysis of Montazeri Steam Power Plant in Iran," Renewable and Sustainable Energy Reviews, Elsevier, vol. 56(C), pages 454-463.
    8. Dabiri, Soroush & Khodabandeh, Erfan & Poorfar, Alireza Khoeini & Mashayekhi, Ramin & Toghraie, Davood & Abadian Zade, Seyed Ali, 2018. "Parametric investigation of thermal characteristic in trapezoidal cavity receiver for a linear Fresnel solar collector concentrator," Energy, Elsevier, vol. 153(C), pages 17-26.
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