Analysis of Bilinear Distillation Column Using Tubular Model

All studies on distillation columns aim at improving the process so that it can be run effectively and efficiently to yield better quality product with lower energy consumption.A good working model is needed as a basis for controller design.Tubular Columns means a column represented by a spatially d...

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Main Author: Ibrahim, Norazlin
Format: Thesis
Language:English
English
Published: 2004
Subjects:
Online Access:http://psasir.upm.edu.my/id/eprint/172/1/549505_T_fk_2004_69.pdf
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spelling my-upm-ir.1722013-05-27T06:46:13Z Analysis of Bilinear Distillation Column Using Tubular Model 2004-09 Ibrahim, Norazlin All studies on distillation columns aim at improving the process so that it can be run effectively and efficiently to yield better quality product with lower energy consumption.A good working model is needed as a basis for controller design.Tubular Columns means a column represented by a spatially distributed model.It has been modeled using Partial Differential Equation numerically.The advantage of using Partial Differential Equation is that it can analyze more than one independent variable and produce the output in a natural way. Numerically,the solution that has been used in this study is pdepe command line function on the Tubular columns model for rectifier and stripper section.A continuous spatially distributed Tubular equations had been derived and validated using pdepe function in two space dimension h’ and τ.It depends on the sensitivity of right boundary condition, and two parameters α and h’.The open loop and closed loop test is done throughout this study, shows the comprehensively output of composition and separation.The Tubular model now, is ready to be applied on any type of control method. Distillation Tubular steel structures 2004-09 Thesis http://psasir.upm.edu.my/id/eprint/172/ http://psasir.upm.edu.my/id/eprint/172/1/549505_T_fk_2004_69.pdf application/pdf en public masters Universiti Putra Malaysia Distillation Tubular steel structures Faculty of Engineering English
institution Universiti Putra Malaysia
collection PSAS Institutional Repository
language English
English
topic Distillation
Tubular steel structures

spellingShingle Distillation
Tubular steel structures

Ibrahim, Norazlin
Analysis of Bilinear Distillation Column Using Tubular Model
description All studies on distillation columns aim at improving the process so that it can be run effectively and efficiently to yield better quality product with lower energy consumption.A good working model is needed as a basis for controller design.Tubular Columns means a column represented by a spatially distributed model.It has been modeled using Partial Differential Equation numerically.The advantage of using Partial Differential Equation is that it can analyze more than one independent variable and produce the output in a natural way. Numerically,the solution that has been used in this study is pdepe command line function on the Tubular columns model for rectifier and stripper section.A continuous spatially distributed Tubular equations had been derived and validated using pdepe function in two space dimension h’ and τ.It depends on the sensitivity of right boundary condition, and two parameters α and h’.The open loop and closed loop test is done throughout this study, shows the comprehensively output of composition and separation.The Tubular model now, is ready to be applied on any type of control method.
format Thesis
qualification_level Master's degree
author Ibrahim, Norazlin
author_facet Ibrahim, Norazlin
author_sort Ibrahim, Norazlin
title Analysis of Bilinear Distillation Column Using Tubular Model
title_short Analysis of Bilinear Distillation Column Using Tubular Model
title_full Analysis of Bilinear Distillation Column Using Tubular Model
title_fullStr Analysis of Bilinear Distillation Column Using Tubular Model
title_full_unstemmed Analysis of Bilinear Distillation Column Using Tubular Model
title_sort analysis of bilinear distillation column using tubular model
granting_institution Universiti Putra Malaysia
granting_department Faculty of Engineering
publishDate 2004
url http://psasir.upm.edu.my/id/eprint/172/1/549505_T_fk_2004_69.pdf
_version_ 1747810166361817088