CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD

Gas is becoming an increasingly important part of the global energy consumption that makes the exploitation of sour gas reservoir increasing rapidly. A major challenge to produce Sungai Kenawang Field as one of sour gas reservoir is reducing CO2 contents up to 5% mole. To reach that objective effect...

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Main Author: ANGGA SUWARDHANA (NIM : 22211005), ARI
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/19907
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:19907
spelling id-itb.:199072017-09-27T15:07:45ZCO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD ANGGA SUWARDHANA (NIM : 22211005), ARI Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/19907 Gas is becoming an increasingly important part of the global energy consumption that makes the exploitation of sour gas reservoir increasing rapidly. A major challenge to produce Sungai Kenawang Field as one of sour gas reservoir is reducing CO2 contents up to 5% mole. To reach that objective effectively, application of CO2 Removal System model with Rate Based approach as a tool to investigate field problem and future facility development becoming essential. <br /> <br /> CO2 Removal System model which appropriate with field facility utilized for sensitivity test and analysis that using Design of Experiment (DOE) method. With 3 stages of sensitivity levels each parameter: CO2 concentration (10%, 20%, 30%), MDEA concentration (2%, 4%, 5%), temperature (130oF, 106 oF, 81 oF) dan pressure (1106 psig, 1006 psig, 906 psig) the combination method that will be used is full factorial method which deliver 81 sensitivity data combination. <br /> <br /> Sensitivity test shows that the most influenced parameter is CO2 concentration of input stream which have directly proportional relationship with CO2 concentration output stream. On the other side, temperature and pressure of input stream tend to have not a huge effect to CO2 concentration of output stream. The optimum input stream configuration consist of 10% carbon dioxide concentration, 4% MDEA concentration with output stream temperature and presurre valued at 106,9o F and 1006 psig that will be resulted 4,8% CO2 of <br /> <br /> output stream. 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 Gas is becoming an increasingly important part of the global energy consumption that makes the exploitation of sour gas reservoir increasing rapidly. A major challenge to produce Sungai Kenawang Field as one of sour gas reservoir is reducing CO2 contents up to 5% mole. To reach that objective effectively, application of CO2 Removal System model with Rate Based approach as a tool to investigate field problem and future facility development becoming essential. <br /> <br /> CO2 Removal System model which appropriate with field facility utilized for sensitivity test and analysis that using Design of Experiment (DOE) method. With 3 stages of sensitivity levels each parameter: CO2 concentration (10%, 20%, 30%), MDEA concentration (2%, 4%, 5%), temperature (130oF, 106 oF, 81 oF) dan pressure (1106 psig, 1006 psig, 906 psig) the combination method that will be used is full factorial method which deliver 81 sensitivity data combination. <br /> <br /> Sensitivity test shows that the most influenced parameter is CO2 concentration of input stream which have directly proportional relationship with CO2 concentration output stream. On the other side, temperature and pressure of input stream tend to have not a huge effect to CO2 concentration of output stream. The optimum input stream configuration consist of 10% carbon dioxide concentration, 4% MDEA concentration with output stream temperature and presurre valued at 106,9o F and 1006 psig that will be resulted 4,8% CO2 of <br /> <br /> output stream.
format Theses
author ANGGA SUWARDHANA (NIM : 22211005), ARI
spellingShingle ANGGA SUWARDHANA (NIM : 22211005), ARI
CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
author_facet ANGGA SUWARDHANA (NIM : 22211005), ARI
author_sort ANGGA SUWARDHANA (NIM : 22211005), ARI
title CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
title_short CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
title_full CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
title_fullStr CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
title_full_unstemmed CO2 REMOVAL SYSTEM MODEL DESIGN WITH RATE BASED APPROACH AND INFLUENTIAL PARAMETERS SENSITIVITY ANALYSIS USING DESIGN OF EXPERIMENT METHOD
title_sort co2 removal system model design with rate based approach and influential parameters sensitivity analysis using design of experiment method
url https://digilib.itb.ac.id/gdl/view/19907
_version_ 1821119986077270016