A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research
This work proposes a comprehensive approach to modifying the design of wood stoves with a heating power up to 20 kW, including design works, simulations, and experimental research. The work is carried out in two stages. In the first part, a numerical model is proposed of the fireplace insert includi...
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doaj-f6eb1a4601064248a4c7e8eb2cced8682020-11-25T01:41:39ZengMDPI AGEnergies1996-10732020-02-01135102810.3390/en13051028en13051028A New Design for Wood Stoves Based on Numerical Analysis and Experimental ResearchPrzemysław Motyl0Marcin Wikło1Julita Bukalska2Bartosz Piechnik3Rafał Kalbarczyk4Faculty of Mechanical Engineering, Kazimierz Pulaski University of Technology and Humanities in Radom, Stasieckiego 54, 26-600 Radom, PolandFaculty of Mechanical Engineering, Kazimierz Pulaski University of Technology and Humanities in Radom, Stasieckiego 54, 26-600 Radom, PolandKratki.pl Marek Bal, W. Gombrowicza 4, 26-660 Wsola, PolandKratki.pl Marek Bal, W. Gombrowicza 4, 26-660 Wsola, PolandKratki.pl Marek Bal, W. Gombrowicza 4, 26-660 Wsola, PolandThis work proposes a comprehensive approach to modifying the design of wood stoves with a heating power up to 20 kW, including design works, simulations, and experimental research. The work is carried out in two stages. In the first part, a numerical model is proposed of the fireplace insert including fluid flow, the chemical combustion reaction, and heat exchange (FLUENT software is applied to solve the problem). The results of the simulation were compared with the experiment carried out on the test bench. A comparison of the experimental and numerical results was made for the temperature distribution along with the concentration of CO, CO<sub>2</sub>, and O<sub>2</sub>. Construction changes were proposed in the second stage, together with numerical simulations whose goal was an increase in the efficiency of the heating devices. The results obtained show that the average temperature in the chimney flue, which has a low value that is a determinant of the higher efficiency of the heating devices, was reduced relative to the initial design of the fireplace intake by 11%−16% in all cases. The retrofit enhanced stable heat release from the wood stove, which increased the efficiency and reduced the harmful components of combustion.https://www.mdpi.com/1996-1073/13/5/1028cfdcombustion simulationstovethermal measurements |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Przemysław Motyl Marcin Wikło Julita Bukalska Bartosz Piechnik Rafał Kalbarczyk |
spellingShingle |
Przemysław Motyl Marcin Wikło Julita Bukalska Bartosz Piechnik Rafał Kalbarczyk A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research Energies cfd combustion simulation stove thermal measurements |
author_facet |
Przemysław Motyl Marcin Wikło Julita Bukalska Bartosz Piechnik Rafał Kalbarczyk |
author_sort |
Przemysław Motyl |
title |
A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research |
title_short |
A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research |
title_full |
A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research |
title_fullStr |
A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research |
title_full_unstemmed |
A New Design for Wood Stoves Based on Numerical Analysis and Experimental Research |
title_sort |
new design for wood stoves based on numerical analysis and experimental research |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-02-01 |
description |
This work proposes a comprehensive approach to modifying the design of wood stoves with a heating power up to 20 kW, including design works, simulations, and experimental research. The work is carried out in two stages. In the first part, a numerical model is proposed of the fireplace insert including fluid flow, the chemical combustion reaction, and heat exchange (FLUENT software is applied to solve the problem). The results of the simulation were compared with the experiment carried out on the test bench. A comparison of the experimental and numerical results was made for the temperature distribution along with the concentration of CO, CO<sub>2</sub>, and O<sub>2</sub>. Construction changes were proposed in the second stage, together with numerical simulations whose goal was an increase in the efficiency of the heating devices. The results obtained show that the average temperature in the chimney flue, which has a low value that is a determinant of the higher efficiency of the heating devices, was reduced relative to the initial design of the fireplace intake by 11%−16% in all cases. The retrofit enhanced stable heat release from the wood stove, which increased the efficiency and reduced the harmful components of combustion. |
topic |
cfd combustion simulation stove thermal measurements |
url |
https://www.mdpi.com/1996-1073/13/5/1028 |
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