Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating

In this article, we present a solar trough system in which the receiver pipe is enclosed in a glass cover under vacuum. The dominant radiation losses from the receiver are reduced by the use of a 'hot mirror' on the glass cover instead of a selective coating on the receiver pipe. We presen...

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Main Authors: Marie Cyulinyana, Phil Ferrer
Format: Article
Language:English
Published: Academy of Science of South Africa 2011-11-01
Series:South African Journal of Science
Subjects:
Online Access:http://192.168.0.108/index.php/sajs/article/view/9792
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author Marie Cyulinyana
Phil Ferrer
author_facet Marie Cyulinyana
Phil Ferrer
author_sort Marie Cyulinyana
collection DOAJ
description In this article, we present a solar trough system in which the receiver pipe is enclosed in a glass cover under vacuum. The dominant radiation losses from the receiver are reduced by the use of a 'hot mirror' on the glass cover instead of a selective coating on the receiver pipe. We present the results for a general heat transfer model and compare the performance of a selective coating with that of a hot mirror, using simulations. We determined that a hot mirror is a viable alternative to a selective coating, and certainly allows higher temperatures of the working fluid. We recommend the use of a hybrid system, in which a selective coating is used in the part of the receiver pipe in the low temperature region, and a hot mirror is used in the high temperature region to reduce radiation losses.
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spelling doaj.art-02d3b96066ea4567b0940b3d7fb5d3ae2022-12-21T18:51:53ZengAcademy of Science of South AfricaSouth African Journal of Science1996-74892011-11-0110711/12Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coatingMarie Cyulinyana0Phil Ferrer1Centre for Theoretical Physics, School of Physics, University of the WitwatersrandCentre for Theoretical Physics, School of Physics, University of the WitwatersrandIn this article, we present a solar trough system in which the receiver pipe is enclosed in a glass cover under vacuum. The dominant radiation losses from the receiver are reduced by the use of a 'hot mirror' on the glass cover instead of a selective coating on the receiver pipe. We present the results for a general heat transfer model and compare the performance of a selective coating with that of a hot mirror, using simulations. We determined that a hot mirror is a viable alternative to a selective coating, and certainly allows higher temperatures of the working fluid. We recommend the use of a hybrid system, in which a selective coating is used in the part of the receiver pipe in the low temperature region, and a hot mirror is used in the high temperature region to reduce radiation losses.http://192.168.0.108/index.php/sajs/article/view/9792solar troughselective coatinghot mirrorefficiencyreceiver coating
spellingShingle Marie Cyulinyana
Phil Ferrer
Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
South African Journal of Science
solar trough
selective coating
hot mirror
efficiency
receiver coating
title Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
title_full Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
title_fullStr Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
title_full_unstemmed Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
title_short Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
title_sort heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
topic solar trough
selective coating
hot mirror
efficiency
receiver coating
url http://192.168.0.108/index.php/sajs/article/view/9792
work_keys_str_mv AT mariecyulinyana heatefficiencyofasolartroughreceiverwithahotmirrorcomparedtoaselectivecoating
AT philferrer heatefficiencyofasolartroughreceiverwithahotmirrorcomparedtoaselectivecoating