Power Enhancement of Gas Turbine Plant by Intake Air Fog Cooling
| Research Area: | Volume 1 Issue 4, July 2012 | Year: | 2012 |
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| Type of Publication: | Article | Keywords: | Inlet air cooling, fogging, gas turbine power |
| Authors: |
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| Journal: | IJEIR | Volume: | 1 |
| Number: | 3 | Pages: | 317 - 326 |
| Month: | July | ||
| ISSN: | 2277-5668 | ||
| Abstract: | Performance of gas turbine significantly depends
upon the ambient air temperature and mass flow rate.
During summer season the density of the air decreases which
affects the mass flow rate and ultimately the power output of
a gas turbine is reduced. In order to overcome this situation
several techniques are already in the practice and one of the
most effective and economical is adopting the inlet fog
cooling which basically enhances the power output of the
machine. The cooling of ambient air by fog cooling up to wet
bulb temperature increases the mass flow rate on account of
increase in air density, as a result it ultimately increases the
power output of a gas turbine. Fogging is applied with
consideration of relative humidity of ambient air not only
during summer season but also during dry days of summer
season in order to increase the power output of gas turbine.
This paper describes the effect on percentage enhancement of
power output adopting various fuel options with low and
high humidity ambient conditions. The results indicate the
potential increase in the power output up to 14%. It is also
observed that the total cost of power production increases
due to increase in fuel consumption on account of enhanced
power output. Thus, the optimum operating parameters are
required for taking advantage of power augmentation
ensuring that it does not lead to excessive increase in fuel
cost. |
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Full text:
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Final IJEIR-165.pdf
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