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Simulation of a gas turbine plant using Evaporative cooler

Yıl 2019, Cilt: 1 Sayı: 1, 23 - 27, 15.07.2019

Öz



This research work focus on the simulation
of a gas turbine power plant using evaporative cooler. Aspen HYSYS software was
used for the simulation of the gas turbine with and without cooling system
using the actual operating data for performance evaluation. The results
obtained on the simulation of the gas turbine at ambient air temperature of 29 0C
without the use of cooling system showed that ambient air temperature decreases
the net power output, thermal efficiency and power output. However, when the
gas turbine was incorporated with air intake cooling system, there was drop in
ambient air temperature which resulted to an increase in net power output,
thermal efficiency and power output.

Kaynakça

  • 1. Abbas RASAIENIA, Behzad MOSHIRI and Mohammadamin MOEZZI, (2009): “Feature-based fault detection of industrial gas turbines using neural networks” Journal of electrical engineering and computer science, vol. 21, pp15.
  • 2. Amell .A. A. and Cadavid .F, (2002): “Influence of the relative humidity on the air cooling thermal load in gas turbine power plant” Applied thermal engineering, vol. 35, 22(13):1529-1533.
  • 3. Emmanuel Kakaras, Doukelis .A, Prelipceanu .A andKarellas .S (2006): “inlet air cooling methods for gas turbine based power plant”, Journal of engineering for gas turbine and power, 128 (2).
  • 4. Farzaneh-Gord and Deymi-Dashtebayaz, (2011): “Effect of various inlet air cooling methods on gas turbine performance energy”, Energy, vol. 36, pp. 1196-1205, 2011.
  • 5. Meher-Homji C.B., Mee, T. R.(2000): “Inlet Fogging of Gas Turbine Engines, Part A: Theory, Psychometrics and Fog Generation”, Proceedings of ASME Turbo Expo, Munich.
  • 6. Thamir K. Ibrahim, M. M. Rahman and Ahmed N., (2011): “Improvement of gas turbine performance based on inlet air cooling systems”: A technical review, International Journal of Physical Sciences, Vol. 6, no. 4, pp. 620-627.
Yıl 2019, Cilt: 1 Sayı: 1, 23 - 27, 15.07.2019

Öz

Kaynakça

  • 1. Abbas RASAIENIA, Behzad MOSHIRI and Mohammadamin MOEZZI, (2009): “Feature-based fault detection of industrial gas turbines using neural networks” Journal of electrical engineering and computer science, vol. 21, pp15.
  • 2. Amell .A. A. and Cadavid .F, (2002): “Influence of the relative humidity on the air cooling thermal load in gas turbine power plant” Applied thermal engineering, vol. 35, 22(13):1529-1533.
  • 3. Emmanuel Kakaras, Doukelis .A, Prelipceanu .A andKarellas .S (2006): “inlet air cooling methods for gas turbine based power plant”, Journal of engineering for gas turbine and power, 128 (2).
  • 4. Farzaneh-Gord and Deymi-Dashtebayaz, (2011): “Effect of various inlet air cooling methods on gas turbine performance energy”, Energy, vol. 36, pp. 1196-1205, 2011.
  • 5. Meher-Homji C.B., Mee, T. R.(2000): “Inlet Fogging of Gas Turbine Engines, Part A: Theory, Psychometrics and Fog Generation”, Proceedings of ASME Turbo Expo, Munich.
  • 6. Thamir K. Ibrahim, M. M. Rahman and Ahmed N., (2011): “Improvement of gas turbine performance based on inlet air cooling systems”: A technical review, International Journal of Physical Sciences, Vol. 6, no. 4, pp. 620-627.
Toplam 6 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Bölüm Research Articles
Yazarlar

İjeoma Iluobe Bu kişi benim 0000-0003-1143-2848

Eghosa Omo-oghogho 0000-0003-1143-2848

Sufianu Aliu Bu kişi benim

Mobolaji Humphrey Oladeinde Bu kişi benim

Yayımlanma Tarihi 15 Temmuz 2019
Kabul Tarihi 13 Mart 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 1 Sayı: 1

Kaynak Göster

APA Iluobe, İ., Omo-oghogho, E., Aliu, S., Oladeinde, M. H. (2019). Simulation of a gas turbine plant using Evaporative cooler. International Journal of Engineering and Innovative Research, 1(1), 23-27.

Open Journal Systems (BOAI)

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