A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS

At present, the design and scale-up of fluidization reactor rely on the empirical process, where the fundamental knowledge about fluid-particle interaction and particle-particle interaction is still limited. Laboratory-scale experiment must take place, even though they are time-consuming and some...

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Main Author: Nu'man Fadhilah Rudiawan, Aufa
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/49336
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:49336
spelling id-itb.:493362020-09-14T19:40:00ZA STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS Nu'man Fadhilah Rudiawan, Aufa Indonesia Theses bed height, fluidization, linear regression, molecular dynamics, numerical simulation, statistical analysis. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/49336 At present, the design and scale-up of fluidization reactor rely on the empirical process, where the fundamental knowledge about fluid-particle interaction and particle-particle interaction is still limited. Laboratory-scale experiment must take place, even though they are time-consuming and sometimes very expensive. Numerical simulation can aid this problem, such as molecular dynamics method. Fluid and particle phase were governed by the discrete model and fluid-particle interaction were determined by the collision between particles. Statistical analysis can be useful too, such as multiple linear regression method. The hydrodynamics behavior of fluidization are predicted through relation between variables. This Thesis consist of numerical simulation and statistical analysis to observe the bed height in a two-phase fluidization. Two-phase fluidization are consist of gas fluidization (gas-solid) and liquid fluidization (liquid-solid). Numerical simulation result shows that bed height increase for zeolite sand at fluid velocity 3.200 m/s, alumina and active sand at fluid velocity 6.400 m/s, and silica sand at fluid velocity 8.000 m/s at gas fluidization. At liquid fluidization, bed height increase for zeolite sand at fluid velocity 2 m/s, alumina and active sand at fliuid velocity 8 m/s, and silica sand at fluid velocity 10 m/s. Statistical analysis result shows that at gas fluidization, the bed height are affected by initial height and spherisity and at liquid fluidization, the bed height are affected by initial height, diameter, spherisity, and density. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description At present, the design and scale-up of fluidization reactor rely on the empirical process, where the fundamental knowledge about fluid-particle interaction and particle-particle interaction is still limited. Laboratory-scale experiment must take place, even though they are time-consuming and sometimes very expensive. Numerical simulation can aid this problem, such as molecular dynamics method. Fluid and particle phase were governed by the discrete model and fluid-particle interaction were determined by the collision between particles. Statistical analysis can be useful too, such as multiple linear regression method. The hydrodynamics behavior of fluidization are predicted through relation between variables. This Thesis consist of numerical simulation and statistical analysis to observe the bed height in a two-phase fluidization. Two-phase fluidization are consist of gas fluidization (gas-solid) and liquid fluidization (liquid-solid). Numerical simulation result shows that bed height increase for zeolite sand at fluid velocity 3.200 m/s, alumina and active sand at fluid velocity 6.400 m/s, and silica sand at fluid velocity 8.000 m/s at gas fluidization. At liquid fluidization, bed height increase for zeolite sand at fluid velocity 2 m/s, alumina and active sand at fliuid velocity 8 m/s, and silica sand at fluid velocity 10 m/s. Statistical analysis result shows that at gas fluidization, the bed height are affected by initial height and spherisity and at liquid fluidization, the bed height are affected by initial height, diameter, spherisity, and density.
format Theses
author Nu'man Fadhilah Rudiawan, Aufa
spellingShingle Nu'man Fadhilah Rudiawan, Aufa
A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
author_facet Nu'man Fadhilah Rudiawan, Aufa
author_sort Nu'man Fadhilah Rudiawan, Aufa
title A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
title_short A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
title_full A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
title_fullStr A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
title_full_unstemmed A STUDY OF THE BED HEIGHT IN A TWO-PHASE FLUIDIZATION: NUMERICAL SIMULATION AND STATISTICAL ANALYSIS
title_sort study of the bed height in a two-phase fluidization: numerical simulation and statistical analysis
url https://digilib.itb.ac.id/gdl/view/49336
_version_ 1822272008302362624