Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations

Problem statement: In Part I of this research, the main features of the fluidization behaviorand characteristic velocities had been reported. Approach: In the present research, the mixturescharacteristic velocity profiles for various sand sizes, palm shell sizes and weight percents werepresented. It...

Full description

Bibliographic Details
Main Authors: Chok, Vui, Gorin, Alexander, Chua, Han
Format: Journal Article
Published: Science Publications 2010
Subjects:
Online Access:http://hdl.handle.net/20.500.11937/18757
_version_ 1848749836246974464
author Chok, Vui
Gorin, Alexander
Chua, Han
author_facet Chok, Vui
Gorin, Alexander
Chua, Han
author_sort Chok, Vui
building Curtin Institutional Repository
collection Online Access
description Problem statement: In Part I of this research, the main features of the fluidization behaviorand characteristic velocities had been reported. Approach: In the present research, the mixturescharacteristic velocity profiles for various sand sizes, palm shell sizes and weight percents werepresented. It was recognized that there are instances where the characteristic values remain nearlyunchanged from its pure sand values. This regime of constant values can be observed in bothcompartments and can be established depending on the bed properties. The term ?Critical loading? isthen selected to define the maximum palm shell content (size and weight percent) that can be presentin the mixtures where the characteristic velocities remain absolutely of pure sand values. Results: Thecritical loading increases with the increase of sand size but decreases with the increase of palm shellsize. Moreover, it can be observed that the critical loading generally decreases with the increase inparticle size ratio, although exception is sighted in the combustor for the mixture with the largest sandsize. Overall, the largest sand size has the highest critical loading. Meanwhile, the selected correlationsare able to describe the qualitative variation in the characteristic velocities. However, quantitatively,these correlations are unsatisfactory as they are either over-estimate or under-estimate.Conclusion/Recommendations: It is desirable to establish the regime of critical loading since the mixture characteristic velocities can be pre-determined using bed material properties made up frompure sand (inert) values. Within this regime, a single operational velocity can be set for respectivecompartment that is independent from variation of palm shell size and weight percent in the mixtures(especially during combustion or gasification). Ultimately, the state of fluidization (e.g., bubbling orvigorously fluidized) and mixing/segregation condition that depend on relative magnitude ofoperational and characteristic velocities can be identified and maintained.
first_indexed 2025-11-14T07:27:16Z
format Journal Article
id curtin-20.500.11937-18757
institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:27:16Z
publishDate 2010
publisher Science Publications
recordtype eprints
repository_type Digital Repository
spelling curtin-20.500.11937-187572017-01-30T12:09:49Z Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations Chok, Vui Gorin, Alexander Chua, Han Biomass mixing binary correlations fluidization velocity Problem statement: In Part I of this research, the main features of the fluidization behaviorand characteristic velocities had been reported. Approach: In the present research, the mixturescharacteristic velocity profiles for various sand sizes, palm shell sizes and weight percents werepresented. It was recognized that there are instances where the characteristic values remain nearlyunchanged from its pure sand values. This regime of constant values can be observed in bothcompartments and can be established depending on the bed properties. The term ?Critical loading? isthen selected to define the maximum palm shell content (size and weight percent) that can be presentin the mixtures where the characteristic velocities remain absolutely of pure sand values. Results: Thecritical loading increases with the increase of sand size but decreases with the increase of palm shellsize. Moreover, it can be observed that the critical loading generally decreases with the increase inparticle size ratio, although exception is sighted in the combustor for the mixture with the largest sandsize. Overall, the largest sand size has the highest critical loading. Meanwhile, the selected correlationsare able to describe the qualitative variation in the characteristic velocities. However, quantitatively,these correlations are unsatisfactory as they are either over-estimate or under-estimate.Conclusion/Recommendations: It is desirable to establish the regime of critical loading since the mixture characteristic velocities can be pre-determined using bed material properties made up frompure sand (inert) values. Within this regime, a single operational velocity can be set for respectivecompartment that is independent from variation of palm shell size and weight percent in the mixtures(especially during combustion or gasification). Ultimately, the state of fluidization (e.g., bubbling orvigorously fluidized) and mixing/segregation condition that depend on relative magnitude ofoperational and characteristic velocities can be identified and maintained. 2010 Journal Article http://hdl.handle.net/20.500.11937/18757 Science Publications restricted
spellingShingle Biomass mixing
binary correlations
fluidization velocity
Chok, Vui
Gorin, Alexander
Chua, Han
Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title_full Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title_fullStr Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title_full_unstemmed Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title_short Minimum and Complete Fluidization Velocity for Sand-Palm Shell Mixtures, Part II: Characteristic Velocity Profiles, Critical Loading and Binary Correlations
title_sort minimum and complete fluidization velocity for sand-palm shell mixtures, part ii: characteristic velocity profiles, critical loading and binary correlations
topic Biomass mixing
binary correlations
fluidization velocity
url http://hdl.handle.net/20.500.11937/18757