Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design
Research to improve flat plate solar collector performance such as design and material used continuously developed. This paper's objective is to analyze the performance of the thermal cell absorber attached to a flat plate absorber collector (FPBTCA) through a low thickness design. It will prod...
Saved in:
Main Authors: | , , , , , , , |
---|---|
Format: | Article |
Language: | English English |
Published: |
Semarak Ilmu Publishing
2022
|
Subjects: | |
Online Access: | http://irep.iium.edu.my/105077/3/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell_SCOPUS.pdf http://irep.iium.edu.my/105077/4/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell.pdf http://irep.iium.edu.my/105077/ https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/705/380 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
id |
my.iium.irep.105077 |
---|---|
record_format |
dspace |
spelling |
my.iium.irep.1050772023-06-10T04:15:41Z http://irep.iium.edu.my/105077/ Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design Zakaria, Zairul Azrul Abdul Majid, Zafri Azran Harun, Muhammad Amin Ismail, Ahmad Faris Ihsan, Sany Izan Sopian, Kamaruzaman Abdul Razak, Amir Sharol, Ahmad Fadzil TJ807 Renewable energy sources Research to improve flat plate solar collector performance such as design and material used continuously developed. This paper's objective is to analyze the performance of the thermal cell absorber attached to a flat plate absorber collector (FPBTCA) through a low thickness design. It will produce a lightweight and portable collector application with efficient temperature conversion duration and has energy storage ability. Stainless steel and aluminum materials with different thicknesses use as thermal cell absorbers then aluminum materials use as a flat plate absorber base-collector. The experiment performs using a solar simulator with solar radiation of 700 W/m2. Referring to the results in term of heat storage (Qstorage), the heat transfer rate of the collector (Q ̇) and efficiency of the collector shows that stainless steel 1.0 mm with an aluminum base absorber (Case E) has a higher value which is 412 kJ, 18.21 kW, and 47.08 %, respectively. The higher total energy gain collected at the bottom plate as dummy load in the drying chamber (T1 and T2) is stainless steel 1.0 mm with an aluminum absorber base-collector (Case E) value of 2.85 kJ. Stainless steel 1.0 mm with an aluminum absorber base-collector (Case E) has the maximum value of energy gain at 300 seconds which is 116.08 J for the bottom plate (T1 and Ta). Flat plate base absorber thermal cell (FPBTCA CASE E) shows better performance in thermal storage than Flat Plate Solar Collector (FPSC). Semarak Ilmu Publishing 2022-06-11 Article PeerReviewed application/pdf en http://irep.iium.edu.my/105077/3/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell_SCOPUS.pdf application/pdf en http://irep.iium.edu.my/105077/4/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell.pdf Zakaria, Zairul Azrul and Abdul Majid, Zafri Azran and Harun, Muhammad Amin and Ismail, Ahmad Faris and Ihsan, Sany Izan and Sopian, Kamaruzaman and Abdul Razak, Amir and Sharol, Ahmad Fadzil (2022) Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 96 (2). pp. 122-133. ISSN 2289-7879 https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/705/380 |
institution |
Universiti Islam Antarabangsa Malaysia |
building |
IIUM Library |
collection |
Institutional Repository |
continent |
Asia |
country |
Malaysia |
content_provider |
International Islamic University Malaysia |
content_source |
IIUM Repository (IREP) |
url_provider |
http://irep.iium.edu.my/ |
language |
English English |
topic |
TJ807 Renewable energy sources |
spellingShingle |
TJ807 Renewable energy sources Zakaria, Zairul Azrul Abdul Majid, Zafri Azran Harun, Muhammad Amin Ismail, Ahmad Faris Ihsan, Sany Izan Sopian, Kamaruzaman Abdul Razak, Amir Sharol, Ahmad Fadzil Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
description |
Research to improve flat plate solar collector performance such as design and material used continuously developed. This paper's objective is to analyze the performance of the thermal cell absorber attached to a flat plate absorber collector (FPBTCA) through a low thickness design. It will produce a lightweight and portable collector application with efficient temperature conversion duration and has energy storage ability. Stainless steel and aluminum materials with different thicknesses use as thermal cell absorbers then aluminum materials use as a flat plate absorber base-collector. The experiment performs using a solar simulator with solar radiation of 700 W/m2. Referring to the results in term of heat storage (Qstorage), the heat transfer rate of the collector (Q ̇) and efficiency of the collector shows that stainless steel 1.0 mm with an aluminum base absorber (Case E) has a higher value which is 412 kJ, 18.21 kW, and 47.08 %, respectively. The higher total energy gain collected at the bottom plate as dummy load in the drying chamber (T1 and T2) is stainless steel 1.0 mm with an aluminum absorber base-collector (Case E) value of 2.85 kJ. Stainless steel 1.0 mm with an aluminum absorber base-collector (Case E) has the maximum value of energy gain at 300 seconds which is 116.08 J for the bottom plate (T1 and Ta). Flat plate base absorber thermal cell (FPBTCA CASE E) shows better performance in thermal storage than Flat Plate Solar Collector (FPSC). |
format |
Article |
author |
Zakaria, Zairul Azrul Abdul Majid, Zafri Azran Harun, Muhammad Amin Ismail, Ahmad Faris Ihsan, Sany Izan Sopian, Kamaruzaman Abdul Razak, Amir Sharol, Ahmad Fadzil |
author_facet |
Zakaria, Zairul Azrul Abdul Majid, Zafri Azran Harun, Muhammad Amin Ismail, Ahmad Faris Ihsan, Sany Izan Sopian, Kamaruzaman Abdul Razak, Amir Sharol, Ahmad Fadzil |
author_sort |
Zakaria, Zairul Azrul |
title |
Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
title_short |
Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
title_full |
Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
title_fullStr |
Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
title_full_unstemmed |
Performance analysis of flat plate base-thermal cell absorber (FPBTCA): low thickness design |
title_sort |
performance analysis of flat plate base-thermal cell absorber (fpbtca): low thickness design |
publisher |
Semarak Ilmu Publishing |
publishDate |
2022 |
url |
http://irep.iium.edu.my/105077/3/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell_SCOPUS.pdf http://irep.iium.edu.my/105077/4/105077_Performance%20analysis%20of%20flat%20plate%20base-thermal%20cell.pdf http://irep.iium.edu.my/105077/ https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/705/380 |
_version_ |
1769841827559505920 |
score |
13.244367 |