Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed

This report presents the results of heat transfer analysis of a fluidised bed by using different type of fluidised bed sands. Academic version of FLUENT 15.0 was used in performing the simulations. Eulerian-Eulerian two-fluid granular model is used as the multiphase flow model to solve this simulati...

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Main Author: Tan, Yong Sin
Format: Thesis
Language:English
Published: 2015
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Online Access:http://eprints.intimal.edu.my/102/1/BMEGI%20-%2043.pdf
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spelling my-inti-eprints.1022016-04-06T09:49:32Z http://eprints.intimal.edu.my/102/ Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed Tan, Yong Sin TJ Mechanical engineering and machinery This report presents the results of heat transfer analysis of a fluidised bed by using different type of fluidised bed sands. Academic version of FLUENT 15.0 was used in performing the simulations. Eulerian-Eulerian two-fluid granular model is used as the multiphase flow model to solve this simulation. 2-D axisymmetric fluidised bed (2.5cm X 50cm), glass beads and stainless steel beads of 1 mm and 0.5mm in diameter are used in the simulations. Thermal conductivity of the material is calculated using the standard approach used by Kuipers et al. (1992). Gidaspow model is used for the drag equation and Gunn’s model (1978) is used in the calculation fir interphase heal transfer coefficient. In order to analyse the heat transfer of different material and different sizes heat transfer is evaluated by comparing the IITC measured in (he simulation. It is found out that stainless steel beads is better in heat transfer compared to glass beads as it has higher heat transfer coefficient, interphase HTC and wall to bed HTC. Nevertheless, the temperature rise of the glass beads is higher than stainless steel beads after 30 seconds. It is also found out that temperature rise for small diameter granular solids is much higher than that of the larger diameter granular solids. 2015 Thesis NonPeerReviewed text en http://eprints.intimal.edu.my/102/1/BMEGI%20-%2043.pdf Tan, Yong Sin (2015) Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed. Other thesis, INTI International University.
institution INTI International University
building INTI Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider INTI International University
content_source INTI Institutional Repository
url_provider http://eprints.intimal.edu.my
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Tan, Yong Sin
Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
description This report presents the results of heat transfer analysis of a fluidised bed by using different type of fluidised bed sands. Academic version of FLUENT 15.0 was used in performing the simulations. Eulerian-Eulerian two-fluid granular model is used as the multiphase flow model to solve this simulation. 2-D axisymmetric fluidised bed (2.5cm X 50cm), glass beads and stainless steel beads of 1 mm and 0.5mm in diameter are used in the simulations. Thermal conductivity of the material is calculated using the standard approach used by Kuipers et al. (1992). Gidaspow model is used for the drag equation and Gunn’s model (1978) is used in the calculation fir interphase heal transfer coefficient. In order to analyse the heat transfer of different material and different sizes heat transfer is evaluated by comparing the IITC measured in (he simulation. It is found out that stainless steel beads is better in heat transfer compared to glass beads as it has higher heat transfer coefficient, interphase HTC and wall to bed HTC. Nevertheless, the temperature rise of the glass beads is higher than stainless steel beads after 30 seconds. It is also found out that temperature rise for small diameter granular solids is much higher than that of the larger diameter granular solids.
format Thesis
author Tan, Yong Sin
author_facet Tan, Yong Sin
author_sort Tan, Yong Sin
title Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
title_short Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
title_full Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
title_fullStr Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
title_full_unstemmed Heat Transfer Analysis of Laboratory Scale Reactor of Fast Pyrolysis Fluidised Bed
title_sort heat transfer analysis of laboratory scale reactor of fast pyrolysis fluidised bed
publishDate 2015
url http://eprints.intimal.edu.my/102/1/BMEGI%20-%2043.pdf
http://eprints.intimal.edu.my/102/
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