An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test

Solar thermal systems produce steam after being energized by solar parabolic trough concentrators, are incorporated with a steam turbine-generator assembly to produce electricity. This study presents a code for prediction of performance, while under-Taking preliminary plant-sizing for a variety of p...

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Main Authors: Mohammad, S.T., Al-Kayiem, H.H., Assadi, M.K., Sabir, O., Khlief, A.K.
Format: Article
Published: Elsevier Ltd 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85043713104&doi=10.1016%2fj.csite.2018.02.006&partnerID=40&md5=002efa581587bed883d9ea55ee426c24
http://eprints.utp.edu.my/21419/
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spelling my.utp.eprints.214192019-01-10T03:04:29Z An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test Mohammad, S.T. Al-Kayiem, H.H. Assadi, M.K. Sabir, O. Khlief, A.K. Solar thermal systems produce steam after being energized by solar parabolic trough concentrators, are incorporated with a steam turbine-generator assembly to produce electricity. This study presents a code for prediction of performance, while under-Taking preliminary plant-sizing for a variety of parabolic trough solar fields operating under nominal conditions. The code, named as PTPPPP (Parabolic Trough Power Plant Performance Predictor) consists of four blocks. The code allows prediction of variables including: heat loss coefficient, UL, aperture effective direct normal irradiance, I, heat gain, Qgain, and the thermal efficiency of stand-Alone parabolic trough solar thermal power plant in commerce, ηp. The conceptual design of the stand-Alone parabolic trough solar involves: selection and sizing of system components, power generation cycles, working fluid types, and power block sizing. The input weather parameters and the operational parameters to the code have been acquired from in-situ measurements. The prediction results of the code have been found in good agreement with literature data with mean error of 0.18 in prediction of output power. In addition, this code is able to provide a flexibility in terms of temperature, heat transfer, and pressure range. © 2018 The Authors. Elsevier Ltd 2018 Article PeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85043713104&doi=10.1016%2fj.csite.2018.02.006&partnerID=40&md5=002efa581587bed883d9ea55ee426c24 Mohammad, S.T. and Al-Kayiem, H.H. and Assadi, M.K. and Sabir, O. and Khlief, A.K. (2018) An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test. Case Studies in Thermal Engineering, 12 . pp. 26-37. http://eprints.utp.edu.my/21419/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Solar thermal systems produce steam after being energized by solar parabolic trough concentrators, are incorporated with a steam turbine-generator assembly to produce electricity. This study presents a code for prediction of performance, while under-Taking preliminary plant-sizing for a variety of parabolic trough solar fields operating under nominal conditions. The code, named as PTPPPP (Parabolic Trough Power Plant Performance Predictor) consists of four blocks. The code allows prediction of variables including: heat loss coefficient, UL, aperture effective direct normal irradiance, I, heat gain, Qgain, and the thermal efficiency of stand-Alone parabolic trough solar thermal power plant in commerce, ηp. The conceptual design of the stand-Alone parabolic trough solar involves: selection and sizing of system components, power generation cycles, working fluid types, and power block sizing. The input weather parameters and the operational parameters to the code have been acquired from in-situ measurements. The prediction results of the code have been found in good agreement with literature data with mean error of 0.18 in prediction of output power. In addition, this code is able to provide a flexibility in terms of temperature, heat transfer, and pressure range. © 2018 The Authors.
format Article
author Mohammad, S.T.
Al-Kayiem, H.H.
Assadi, M.K.
Sabir, O.
Khlief, A.K.
spellingShingle Mohammad, S.T.
Al-Kayiem, H.H.
Assadi, M.K.
Sabir, O.
Khlief, A.K.
An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
author_facet Mohammad, S.T.
Al-Kayiem, H.H.
Assadi, M.K.
Sabir, O.
Khlief, A.K.
author_sort Mohammad, S.T.
title An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
title_short An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
title_full An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
title_fullStr An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
title_full_unstemmed An integrated program of a stand-Alone parabolic trough solar thermal power plant: Code description and test
title_sort integrated program of a stand-alone parabolic trough solar thermal power plant: code description and test
publisher Elsevier Ltd
publishDate 2018
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85043713104&doi=10.1016%2fj.csite.2018.02.006&partnerID=40&md5=002efa581587bed883d9ea55ee426c24
http://eprints.utp.edu.my/21419/
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