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  1. Journal of the Brazilian Society of Mechanical Sciences and Engineering
  2. Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36
  3. Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 3, May 2014
  4. Improving Khangiran gas turbine efficiency by two standard and one novel inlet air cooling method
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Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 40
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 39
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 38
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 37
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 4, October 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 3, May 2014
Nonuniform loading representation for structural optimization considering convex objective functions
Fuzzy logic model for the prediction failure analysis of composite plates under various cure temperatures
Evaluation of stiffness and strength in fused deposition sandwich specimens
Influence of groove shape on clearance in four-point-contact slewing bearing
Study of ECAE mechanics by upper bound rigid block model with two degrees of freedom
Determination of load capacity of a non-gasketed flange joint under combined internal pressure, axial and bending loading for safe strength and sealing
Mechanical model of the recovery reaction from stumbling: effect of step length on trunk control
Development and analysis of series elastic actuators for impedance control of an active ankle–foot orthosis
Investigation on stator vibration characteristics under air-gap eccentricity and rotor short circuit composite faults
Identification of nonlinear structures using discrete-time Volterra series
Dynamic and phenomenological vibration models for failure prediction on planet gears of planetary gearboxes
Concomitant vortex-induced vibration experiments: a cantilevered flexible cylinder and a rigid cylinder mounted on a leaf-spring apparatus
Experimental evaluation of ship squat in shallow waters
Improving Khangiran gas turbine efficiency by two standard and one novel inlet air cooling method
Effects of the number of tangential passages on spray characteristics of a bipropellant atomizer
On the application of SUPG/θ-method in 2D advection–diffusion-reaction simulation
Guideline tool based on design for manufacturing and assembly (DFMA) methodology for application on design and manufacturing of aircrafts
Effects of process parameters on surface roughness in saw cutting of polypropylene/TiO$_{2}$ nano composites
Surface integrity of moulds for microcomponents manufactured by micromilling and electro-discharge machining
Electrical discharge machining parameters optimization using response surface methodology and fuzzy logic modeling
Optimization of tribological parameters for a brake pad using Taguchi design method
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 2, February 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 1, January 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 35

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Improving Khangiran gas turbine efficiency by two standard and one novel inlet air cooling method

Content Provider SpringerLink
Author Akeififar, Hadi Farzaneh Gord, Mahmood Arabkoohsar, Ahmad Deymi Dashtebayaz, Mahdi Khoshnevis, Amir Bak
Copyright Year 2013
Abstract Turbine air inlet cooling is one of many available commercial methods for increasing the performance of a gas turbine. The method that has different configurations could be applied for nearly all gas turbines. This paper offers a comparison between two standard and one exquisite inlet air cooling method, which are used to improve the performance of a gas turbine located at the Khangiran refinery in Iran. These methods have been applied to one of the gas turbines located at the Khangiran refinery. Two common air-cooling methods are based on fogging systems and absorption chillers. The idea behind the novel method is to utilize the potential cooling capacity of the refinery natural gas pressure drop station. The research is part of a plenary program developed to enhance the efficiency of the gas turbine used at the Khangiran gas refinery. Considering the results, it is found that the new method is the most feasible in economic terms, so it has been recommended to be used for improving the performance of the Khangiran refinery gas turbines.
Starting Page 571
Ending Page 582
Page Count 12
File Format PDF
ISSN 16785878
Journal Journal of the Brazilian Society of Mechanical Sciences and Engineering
Volume Number 36
Issue Number 3
e-ISSN 18063691
Language English
Publisher Springer Berlin Heidelberg
Publisher Date 2013-09-12
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Fogging system Gas turbine efficiency improvement Gas turbines Inlet air cooling Natural gas pressure drop station Absorption chiller system Mechanical Engineering
Content Type Text
Resource Type Article
Subject Applied Mathematics Industrial and Manufacturing Engineering Automotive Engineering Mechanical Engineering Aerospace Engineering
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