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Peak Load Electricity Production with Cryogenic Fuels

Yıl 2009, Cilt: 12 Sayı: 3, 141 - 146, 01.09.2009

Öz

Natural Gas is often liquefied (LNG) for its transport by ships over long distances. In order to prepare it for further transport by pipelines it has to be reduced again to a gaseous state, normally by heating it with sea water. A similar technology is envisaged for long-distance transport of Hydrogen as an energy carrier. The scope of this article is the thermodynamic investigation of two power plants for peak load energy production. These two power plants use as fuel the fluids obtained by the re-gasification of the cryogenic fluids. The first proposal is a Hydrogen-fired steam power plant, while the second considers the use of LNG in an oxy-combustion arrangement with subsequent CO2 separation, which is obtained by a three-stage intercooled compression train. The power cycle performance was verified in both cases by exergy analysis. Since the size of these power plants is relatively small (10 MWe), they can be easily built inside the area of LNG gasifiers, or inside the area of the plant producing liquid Hydrogen; the cryogenic fuel and oxidizer are thus considered available, and the purpose of the power plant is peak load energy production rather than obtaining high values of conversion efficiency.

  • This paper is an updated version of a paper published in the ECOS'08 proceedings. 

Yıl 2009, Cilt: 12 Sayı: 3, 141 - 146, 01.09.2009

Öz

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Ayrıntılar

Birincil Dil İngilizce
Bölüm Regular Original Research Article
Yazarlar

Giampaolo Manfrida

Duccio Tempesti Bu kişi benim

Gaetano Zumbo Bu kişi benim

Yayımlanma Tarihi 1 Eylül 2009
Yayımlandığı Sayı Yıl 2009 Cilt: 12 Sayı: 3

Kaynak Göster

APA Manfrida, G., Tempesti, D., & Zumbo, G. (2009). Peak Load Electricity Production with Cryogenic Fuels. International Journal of Thermodynamics, 12(3), 141-146.
AMA Manfrida G, Tempesti D, Zumbo G. Peak Load Electricity Production with Cryogenic Fuels. International Journal of Thermodynamics. Eylül 2009;12(3):141-146.
Chicago Manfrida, Giampaolo, Duccio Tempesti, ve Gaetano Zumbo. “Peak Load Electricity Production With Cryogenic Fuels”. International Journal of Thermodynamics 12, sy. 3 (Eylül 2009): 141-46.
EndNote Manfrida G, Tempesti D, Zumbo G (01 Eylül 2009) Peak Load Electricity Production with Cryogenic Fuels. International Journal of Thermodynamics 12 3 141–146.
IEEE G. Manfrida, D. Tempesti, ve G. Zumbo, “Peak Load Electricity Production with Cryogenic Fuels”, International Journal of Thermodynamics, c. 12, sy. 3, ss. 141–146, 2009.
ISNAD Manfrida, Giampaolo vd. “Peak Load Electricity Production With Cryogenic Fuels”. International Journal of Thermodynamics 12/3 (Eylül 2009), 141-146.
JAMA Manfrida G, Tempesti D, Zumbo G. Peak Load Electricity Production with Cryogenic Fuels. International Journal of Thermodynamics. 2009;12:141–146.
MLA Manfrida, Giampaolo vd. “Peak Load Electricity Production With Cryogenic Fuels”. International Journal of Thermodynamics, c. 12, sy. 3, 2009, ss. 141-6.
Vancouver Manfrida G, Tempesti D, Zumbo G. Peak Load Electricity Production with Cryogenic Fuels. International Journal of Thermodynamics. 2009;12(3):141-6.