Prof Tariq Muneer T.Muneer@napier.ac.uk
Emeritus Professor
There are a large number of engineering applications wherein estimation of radiation exchange between surfaces is required. One important part of the latter procedure is to obtain the so-called ‘view factor’ of the emitter–receiver combination. The principal aim of this article is to present finite-element based procedures to obtain view factor with good time efficiency. As such routines presented here compute the view factor between a non-uniform emitter field and the receiving surface. An example of this is ground-reflected solar radiation to thermal or photovoltaic collectors, the foreground itself being composed of surfaces that have wide-ranging reflectivities. Four routines have been presented here: one based on a uniform grid for emitting and receiving surfaces using a brute force approach (Uniform Populous Grid (UPG)), and another that used non-uniform grid for the receiving surface, where cells’ sizes increased in arithmetic progression as one withdraws from the common edge (Non Uniform Grid Populous (NUGP)). The last two routines used combinations of the first two approaches with Monte-Carlo approach (Uniform Grid Monte-Carlo (UGMC) and Non Uniform Grid Monte-Carlo (NUGMC)). It was found that the NUGP algorithm was the most efficient to reduce the calculation error for the same number of computations, it was about 450 times (430 for non-uniform reflectivity) more accurate than UPG, 160 (125) times more than UGMC and 70 (60) times more than NUGMC. Finally a comparison of advantages and disadvantages of all four considered routines was added, using the following criteria: ease of programming, computational execution time, accuracy of results obtained, and predictability of the errors
Muneer, T., & Ivanova, S. (2020). Efficient Routines for Obtaining Radiation View-Factor for Non-Uniform Horizons. Energies, 13(10), Article 2551. https://doi.org/10.3390/en13102551
Journal Article Type | Article |
---|---|
Acceptance Date | May 13, 2020 |
Online Publication Date | May 18, 2020 |
Publication Date | May 18, 2020 |
Deposit Date | May 25, 2020 |
Publicly Available Date | May 25, 2020 |
Journal | Energies |
Publisher | MDPI |
Peer Reviewed | Peer Reviewed |
Volume | 13 |
Issue | 10 |
Article Number | 2551 |
DOI | https://doi.org/10.3390/en13102551 |
Keywords | view factor; reflected radiation; finite element analysis; solar energy |
Public URL | http://researchrepository.napier.ac.uk/Output/2664468 |
Efficient Routines For Obtaining Radiation View-Factor For Non-Uniform Horizons
(6.2 Mb)
PDF
Publisher Licence URL
http://creativecommons.org/licenses/by/4.0/
Copyright Statement
This is an open access article distributed under the Creative Commons Attribution License.
The Coming of Age of Solar and Wind Power
(2022)
Book
Modelling of a Large Solar PV Facility: England’s Mallard Solar Farm Case Study
(2022)
Journal Article
About Edinburgh Napier Research Repository
Administrator e-mail: repository@napier.ac.uk
This application uses the following open-source libraries:
Apache License Version 2.0 (http://www.apache.org/licenses/)
Apache License Version 2.0 (http://www.apache.org/licenses/)
SIL OFL 1.1 (http://scripts.sil.org/OFL)
MIT License (http://opensource.org/licenses/mit-license.html)
CC BY 3.0 ( http://creativecommons.org/licenses/by/3.0/)
Powered by Worktribe © 2025
Advanced Search