Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process
In this paper parametric study of a gas turbine cycle model power plant with intercooler compression process was proposed. The power output and the efficiency are simulating with respect to the cycle temperatures and pressure ratio for a typical set of operating conditions. Simple gas turbine cycle...
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ump-123952018-10-03T07:46:38Z http://umpir.ump.edu.my/id/eprint/12395/ Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process Thamir K., Ibrahim M. M., Rahman Abdalla, Ahmed N. TJ Mechanical engineering and machinery In this paper parametric study of a gas turbine cycle model power plant with intercooler compression process was proposed. The power output and the efficiency are simulating with respect to the cycle temperatures and pressure ratio for a typical set of operating conditions. Simple gas turbine cycle calculations with realistic parameters are made and confirm that increasing the turbine inlet temperature no longer means an increase in cycle efficiency, but increases the work done. The analytical study is done to investigate the performance improvement by intercooling. The analytical formula for specific work and efficiency are derived and analyzed. The simulation results shows that increasing turbine inlet temperature and pressure ratio can still improve the performance of the intercooled gas turbine cycle. Academic Journals 2010 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/12395/1/Study%20on%20The%20Effective%20Parameter%20of%20Gas%20Turbine%20Model%20with%20Intercooled%20Compression%20Process.pdf Thamir K., Ibrahim and M. M., Rahman and Abdalla, Ahmed N. (2010) Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process. Scientific Research and Essay , 5 (23). pp. 3760-3770. ISSN 1992-2248 http://www.academicjournals.org/article/article1380620575_Ibrahim%20et%20al.pdf |
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TJ Mechanical engineering and machinery Thamir K., Ibrahim M. M., Rahman Abdalla, Ahmed N. Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
description |
In this paper parametric study of a gas turbine cycle model power plant with intercooler compression
process was proposed. The power output and the efficiency are simulating with respect to the cycle temperatures and pressure ratio for a typical set of operating conditions. Simple gas turbine cycle calculations with realistic parameters are made and confirm that increasing the turbine inlet temperature no longer means an increase in cycle efficiency, but increases the work done. The
analytical study is done to investigate the performance improvement by intercooling. The analytical formula for specific work and efficiency are derived and analyzed. The simulation results shows that increasing turbine inlet temperature and pressure ratio can still improve the performance of the intercooled gas turbine cycle. |
format |
Article |
author |
Thamir K., Ibrahim M. M., Rahman Abdalla, Ahmed N. |
author_facet |
Thamir K., Ibrahim M. M., Rahman Abdalla, Ahmed N. |
author_sort |
Thamir K., Ibrahim |
title |
Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
title_short |
Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
title_full |
Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
title_fullStr |
Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
title_full_unstemmed |
Study on The Effective Parameter of Gas Turbine Model with Intercooled Compression Process |
title_sort |
study on the effective parameter of gas turbine model with intercooled compression process |
publisher |
Academic Journals |
publishDate |
2010 |
url |
http://umpir.ump.edu.my/id/eprint/12395/ http://umpir.ump.edu.my/id/eprint/12395/ http://umpir.ump.edu.my/id/eprint/12395/1/Study%20on%20The%20Effective%20Parameter%20of%20Gas%20Turbine%20Model%20with%20Intercooled%20Compression%20Process.pdf |
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2023-09-18T22:14:00Z |
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2023-09-18T22:14:00Z |
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