The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition
In the present work, the contact heat transfer between the granular materials and heating plates inside plate rotary heat exchanger (PRHE) was investigated. The heat transfer coefficient is dominated by the contact heat transfer coefficient at hot wall surface of the heating plates and the heat pene...
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doaj-2e665eadd15f455a97caab287c51fcb22020-11-24T21:33:18ZengElsevierResults in Physics2211-37972018-03-018600609The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded conditionLuanfang Duan0Chonggang Qi1Xiang Ling2Hao Peng3Jiangsu Key Laboratory of Process Enhancement and New Energy Equipment Technology, School of Mechanical and Power Engineering, Nanjing Tech University, No. 30 Pu Zhu South Road, Nanjing 211816, PR ChinaJiangsu Key Laboratory of Process Enhancement and New Energy Equipment Technology, School of Mechanical and Power Engineering, Nanjing Tech University, No. 30 Pu Zhu South Road, Nanjing 211816, PR ChinaCorresponding authors.; Jiangsu Key Laboratory of Process Enhancement and New Energy Equipment Technology, School of Mechanical and Power Engineering, Nanjing Tech University, No. 30 Pu Zhu South Road, Nanjing 211816, PR ChinaCorresponding authors.; Jiangsu Key Laboratory of Process Enhancement and New Energy Equipment Technology, School of Mechanical and Power Engineering, Nanjing Tech University, No. 30 Pu Zhu South Road, Nanjing 211816, PR ChinaIn the present work, the contact heat transfer between the granular materials and heating plates inside plate rotary heat exchanger (PRHE) was investigated. The heat transfer coefficient is dominated by the contact heat transfer coefficient at hot wall surface of the heating plates and the heat penetration inside the solid bed. A plot scale PRHE with a diameter of Do = 273 mm and a length of L = 1000 mm has been established. Quartz sand with dp = 2 mm was employed as the experimental material. The operational parameters were in the range of ω = 1 – 8 rpm, and F = 15, 20, 25, 30%, and the effect of these parameters on the time-average contact heat transfer coefficient was analyzed. The time-average contact heat transfer coefficient increases with the increase of rotary speed, but decreases with the increase of the filling degree. The measured data of time-average heat transfer coefficients were compared with theoretical calculations from Schlünder’s model, a good agreement between the measurements and the model could be achieved, especially at a lower rotary speed and filling degree level. The maximum deviation between the calculated data and the experimental data is approximate 10%. Keywords: Rotary heat exchanger, Contact heat transfer, Granular material, Heating plate, Overloadedhttp://www.sciencedirect.com/science/article/pii/S2211379717311191 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Luanfang Duan Chonggang Qi Xiang Ling Hao Peng |
spellingShingle |
Luanfang Duan Chonggang Qi Xiang Ling Hao Peng The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition Results in Physics |
author_facet |
Luanfang Duan Chonggang Qi Xiang Ling Hao Peng |
author_sort |
Luanfang Duan |
title |
The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
title_short |
The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
title_full |
The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
title_fullStr |
The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
title_full_unstemmed |
The contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
title_sort |
contact heat transfer between the heating plate and granular materials in rotary heat exchanger under overloaded condition |
publisher |
Elsevier |
series |
Results in Physics |
issn |
2211-3797 |
publishDate |
2018-03-01 |
description |
In the present work, the contact heat transfer between the granular materials and heating plates inside plate rotary heat exchanger (PRHE) was investigated. The heat transfer coefficient is dominated by the contact heat transfer coefficient at hot wall surface of the heating plates and the heat penetration inside the solid bed. A plot scale PRHE with a diameter of Do = 273 mm and a length of L = 1000 mm has been established. Quartz sand with dp = 2 mm was employed as the experimental material. The operational parameters were in the range of ω = 1 – 8 rpm, and F = 15, 20, 25, 30%, and the effect of these parameters on the time-average contact heat transfer coefficient was analyzed. The time-average contact heat transfer coefficient increases with the increase of rotary speed, but decreases with the increase of the filling degree. The measured data of time-average heat transfer coefficients were compared with theoretical calculations from Schlünder’s model, a good agreement between the measurements and the model could be achieved, especially at a lower rotary speed and filling degree level. The maximum deviation between the calculated data and the experimental data is approximate 10%. Keywords: Rotary heat exchanger, Contact heat transfer, Granular material, Heating plate, Overloaded |
url |
http://www.sciencedirect.com/science/article/pii/S2211379717311191 |
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