bibtype J - Journal Article
ARLID 0507101
utime 20240103222341.9
mtime 20190731235959.9
SCOPUS 84978426338
WOS 000379164200001
DOI 10.1155/2016/3176052
title (primary) (eng) Design and Analysis of an Optical Coupler for Concentrated Solar Light Using Optical Fibers in Residential Buildings
specification
page_count 11 s.
media_type P
serial
ARLID cav_un_epca*0258337
ISSN 1110-662X
title International Journal of Photoenergy
volume_id 2016
keyword fiber optics
keyword photovoltaics
keyword optical coupler
author (primary)
ARLID cav_un_auth*0377800
name1 Aslian
name2 A.
country MY
author
ARLID cav_un_auth*0347018
name1 Honarvar Shakibaei Asli
name2 Barmak
institution UTIA-B
full_dept (cz) Zpracování obrazové informace
full_dept Department of Image Processing
department (cz) ZOI
department ZOI
full_dept Department of Image Processing
country MY
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
author
ARLID cav_un_auth*0377801
name1 Tan
name2 Ch.
country MY
author
ARLID cav_un_auth*0377802
name1 Adikan
name2 F. R. M.
country MY
author
ARLID cav_un_auth*0377803
name1 Toloei
name2 A.
country IR
source
url http://library.utia.cas.cz/separaty/2019/ZOI/honarvar-0507101.pdf
source
url https://www.hindawi.com/journals/ijp/2016/3176052/
cas_special
abstract (eng) Concentrated sunlight that is transmitted by fiber optics has been used for generating electricity, heat, and daylight. On the other hand, multijunction photovoltaic cells provide high efficiency for generating electricity from highly concentrated sunlight. This study deals with designing and simulating a high-efficiency coupler, employing a mathematical model to connect sunlight with\nfiber optics for multiple applications. The coupler concentrates and distributes irradiated light from a primary concentrator. In this study, a parabolic dish was used as the primary concentrator, a coupler that contains nine components called a compound truncated pyramid and a cone (CTPC), all of which were mounted on a plate.Thematerial of both the CTPC and the plate wasBK7\noptical glass. Fiber optics cables andmultijunction photovoltaic cells were connected to the cylindrical part of the CTPC.The fibers would transmit the light to the building to provide heat and daylight, whereas multijunction photovoltaic cells generate electricity. Theoretical and simulation results showed high performance of the designed coupler.The efficiency of the coupler was as high as\n92%, whereas the rim angle of the dish increased to an optimum angle. Distributed sunlight in the coupler increased the flexibility and simplicity of the design, resulting in a systemthat provided concentrated electricity, heat, and lighting for residential buildings.
result_subspec WOS
RIV JA
FORD0 20000
FORD1 20200
FORD2 20206
reportyear 2020
num_of_auth 5
inst_support RVO:67985556
permalink http://hdl.handle.net/11104/0298176
mrcbC61 1
confidential S
article_num 3176052
mrcbC86 3+4 Article Chemistry Physical|Energy Fuels|Optics|Physics Atomic Molecular Chemical
mrcbC91 A
mrcbT16-e ENERGYFUELS|CHEMISTRYPHYSICAL|OPTICS|PHYSICSATOMICMOLECULARCHEMICAL
mrcbT16-j 0.332
mrcbT16-s 0.333
mrcbT16-4 Q2
mrcbT16-B 13.574
mrcbT16-D Q4
mrcbT16-E Q4
arlyear 2016
mrcbU14 84978426338 SCOPUS
mrcbU24 PUBMED
mrcbU34 000379164200001 WOS
mrcbU63 cav_un_epca*0258337 International Journal of Photoenergy 1110-662X 1687-529X Roč. 2016 č. 1 2016