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

South African Journal of Science

 
 
Field Value
 
Title Heat efficiency of a solar trough receiver with a hot mirror compared to a selective coating
 
Creator Cyulinyana, Marie C. Ferrer, Phil
 
Subject Physics; solar renewable energy solar trough; selective coating; hot mirror; efficiency; receiver coating
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.
 
Publisher AOSIS
 
Contributor
Date 2011-11-02
 
Type info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion — theoretical; simulation
Format application/pdf text/html application/epub+zip text/xml
Identifier 10.4102/sajs.v107i11/12.524
 
Source South African Journal of Science; Vol 107, No 11/12 (2011); 7 pages 1996-7489 0038-2353
 
Language eng
 
Relation
The following web links (URLs) may trigger a file download or direct you to an alternative webpage to gain access to a publication file format of the published article:

https://journals.sajs.aosis.co.za/index.php/sajs/article/view/524/916 https://journals.sajs.aosis.co.za/index.php/sajs/article/view/524/917 https://journals.sajs.aosis.co.za/index.php/sajs/article/view/524/921 https://journals.sajs.aosis.co.za/index.php/sajs/article/view/524/919 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2859 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2860 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2861 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2862 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2863 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2864 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2865 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2866 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2867 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2868 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2869 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2870 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2871 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2872 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2873 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2874 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2875 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2876 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2877 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2878 https://journals.sajs.aosis.co.za/index.php/sajs/article/downloadSuppFile/524/2879
 
Coverage earth current energy
Rights Copyright (c) 2011 Marie C. Cyulinyana, Phil Ferrer https://creativecommons.org/licenses/by/4.0
ADVERTISEMENT