Waste heat recovery of biomass based industrial boilers by using stirling engine

Industrial boilers by using biomass for electricity generation have received significant attention recent years. However, during the process, a significant fraction of thermal energy is often lost to the environment as flue gas. The exhaust flue gas heat loss which ranges from 150-180°C (423.15-453....

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Main Authors: Nik Abdul Rahman, Nik Kechik Mujahidah, Saadon, Syamimi, Che Man, Mohd Hasrizam
Format: Article
Published: Semarak Ilmu Publishing 2022
Online Access:http://psasir.upm.edu.my/id/eprint/102610/
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/95
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Institution: Universiti Putra Malaysia
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spelling my.upm.eprints.1026102023-10-23T07:06:34Z http://psasir.upm.edu.my/id/eprint/102610/ Waste heat recovery of biomass based industrial boilers by using stirling engine Nik Abdul Rahman, Nik Kechik Mujahidah Saadon, Syamimi Che Man, Mohd Hasrizam Industrial boilers by using biomass for electricity generation have received significant attention recent years. However, during the process, a significant fraction of thermal energy is often lost to the environment as flue gas. The exhaust flue gas heat loss which ranges from 150-180°C (423.15-453.15K) has led to discovery of importance of recovering the waste heat of the flue gas to overcome the reliance on fossil fuel. Stirling engine as an external combustion engine with high efficiencies and able to use any types of heat source is the best candidate to recover waste heat of the exhausted gas by converting it into power. Thus, in this study Stirling engine was introduced in order to evaluate the possibility of recovering waste heat from industrial boilers to produce power. For this reason, Computational Fluid Dynamic (CFD) simulation test was performed to design an initial computational model of Stirling engine for low temperature heat waste recovery. The CFD model was validated with the experiment model and shows 4.3% of deviation. The validated model then connected to a lower temperature. It shows that when the heat source is 400K, the work done by the engine is 8.4J compared to when heat source 773K the work done is 17.0 J. The computational model can be used to evaluate the performance of Stirling engine as waste heat recovery of biomass-based industrial boilers for low-grade temperature heat source. Semarak Ilmu Publishing 2022-01 Article PeerReviewed Nik Abdul Rahman, Nik Kechik Mujahidah and Saadon, Syamimi and Che Man, Mohd Hasrizam (2022) Waste heat recovery of biomass based industrial boilers by using stirling engine. Journal of Advanced Research in Fluid Mechanics and Thermal Sciences, 89 (1). pp. 1-12. ISSN 2289-7879 https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/95 10.37934/arfmts.89.1.112
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
description Industrial boilers by using biomass for electricity generation have received significant attention recent years. However, during the process, a significant fraction of thermal energy is often lost to the environment as flue gas. The exhaust flue gas heat loss which ranges from 150-180°C (423.15-453.15K) has led to discovery of importance of recovering the waste heat of the flue gas to overcome the reliance on fossil fuel. Stirling engine as an external combustion engine with high efficiencies and able to use any types of heat source is the best candidate to recover waste heat of the exhausted gas by converting it into power. Thus, in this study Stirling engine was introduced in order to evaluate the possibility of recovering waste heat from industrial boilers to produce power. For this reason, Computational Fluid Dynamic (CFD) simulation test was performed to design an initial computational model of Stirling engine for low temperature heat waste recovery. The CFD model was validated with the experiment model and shows 4.3% of deviation. The validated model then connected to a lower temperature. It shows that when the heat source is 400K, the work done by the engine is 8.4J compared to when heat source 773K the work done is 17.0 J. The computational model can be used to evaluate the performance of Stirling engine as waste heat recovery of biomass-based industrial boilers for low-grade temperature heat source.
format Article
author Nik Abdul Rahman, Nik Kechik Mujahidah
Saadon, Syamimi
Che Man, Mohd Hasrizam
spellingShingle Nik Abdul Rahman, Nik Kechik Mujahidah
Saadon, Syamimi
Che Man, Mohd Hasrizam
Waste heat recovery of biomass based industrial boilers by using stirling engine
author_facet Nik Abdul Rahman, Nik Kechik Mujahidah
Saadon, Syamimi
Che Man, Mohd Hasrizam
author_sort Nik Abdul Rahman, Nik Kechik Mujahidah
title Waste heat recovery of biomass based industrial boilers by using stirling engine
title_short Waste heat recovery of biomass based industrial boilers by using stirling engine
title_full Waste heat recovery of biomass based industrial boilers by using stirling engine
title_fullStr Waste heat recovery of biomass based industrial boilers by using stirling engine
title_full_unstemmed Waste heat recovery of biomass based industrial boilers by using stirling engine
title_sort waste heat recovery of biomass based industrial boilers by using stirling engine
publisher Semarak Ilmu Publishing
publishDate 2022
url http://psasir.upm.edu.my/id/eprint/102610/
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/95
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