Optimising petrochemical logistics

This study presents a maritime collaboration with the petrochemical logistics that aims to research on the logistics optimization models to incorporate the petrochemical market knowledge and the identified literature gaps into the existing models to optimize logistics in an integrated petrochemical...

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Main Author: Soh, Linda Xiao Yu.
Other Authors: Lam Siu Lee
Format: Final Year Project
Language:English
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10356/39029
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-390292023-03-03T17:20:09Z Optimising petrochemical logistics Soh, Linda Xiao Yu. Lam Siu Lee School of Civil and Environmental Engineering DRNTU::Engineering::Maritime studies::Maritime management and business This study presents a maritime collaboration with the petrochemical logistics that aims to research on the logistics optimization models to incorporate the petrochemical market knowledge and the identified literature gaps into the existing models to optimize logistics in an integrated petrochemical supply chain so as to enhance their core capabilities- integrated supply chain management. Based on relevant literature reviews, interviews were conducted in January 2010 with a ship chartering manager and with a process engineer of a petrochemical company to incorporate the market practices and norms into the optimization models. After the incorporations, sensitivity analysis and solutions report was generated to better understand how this model can be used to improve the optimization in the logistics area. From the results, several findings can be drawn from the model. Firstly, the temporary ship storage solution is feasible for application during a single period where there is a surge in demand. And secondly, the analysis shows that the smaller the vessel capacity, the higher the utilization rate of the storage capacities. This would suggest that the smaller vessel size provides flexibility to sudden surges in demands in a single period. The findings eventually lead the team to the conclusion that during a single period uncertainty, additional facilities of smaller capacity will aid in alleviating the shortage problems in the petrochemical logistics. Due to time and resource constraints, the models created are not able to provide an optimal answer because of the complexity of the model to be solved under linear programming and the nature of the Evolutionary Solver. The Evolutionary Solver though unable to provide optimized answers, it provides a good guide to the users. Furthermore, the 2 models are linked only by a derived voyage day, which confines the team to perform individual model analysis. For future development, our team suggests more researches can be done in the area on the mathematical aspect between the storage capacity and the production rate in multiple periods. Bachelor of Science (Maritime Studies) 2010-05-21T04:22:46Z 2010-05-21T04:22:46Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/39029 en Nanyang Technological University 68 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Maritime studies::Maritime management and business
spellingShingle DRNTU::Engineering::Maritime studies::Maritime management and business
Soh, Linda Xiao Yu.
Optimising petrochemical logistics
description This study presents a maritime collaboration with the petrochemical logistics that aims to research on the logistics optimization models to incorporate the petrochemical market knowledge and the identified literature gaps into the existing models to optimize logistics in an integrated petrochemical supply chain so as to enhance their core capabilities- integrated supply chain management. Based on relevant literature reviews, interviews were conducted in January 2010 with a ship chartering manager and with a process engineer of a petrochemical company to incorporate the market practices and norms into the optimization models. After the incorporations, sensitivity analysis and solutions report was generated to better understand how this model can be used to improve the optimization in the logistics area. From the results, several findings can be drawn from the model. Firstly, the temporary ship storage solution is feasible for application during a single period where there is a surge in demand. And secondly, the analysis shows that the smaller the vessel capacity, the higher the utilization rate of the storage capacities. This would suggest that the smaller vessel size provides flexibility to sudden surges in demands in a single period. The findings eventually lead the team to the conclusion that during a single period uncertainty, additional facilities of smaller capacity will aid in alleviating the shortage problems in the petrochemical logistics. Due to time and resource constraints, the models created are not able to provide an optimal answer because of the complexity of the model to be solved under linear programming and the nature of the Evolutionary Solver. The Evolutionary Solver though unable to provide optimized answers, it provides a good guide to the users. Furthermore, the 2 models are linked only by a derived voyage day, which confines the team to perform individual model analysis. For future development, our team suggests more researches can be done in the area on the mathematical aspect between the storage capacity and the production rate in multiple periods.
author2 Lam Siu Lee
author_facet Lam Siu Lee
Soh, Linda Xiao Yu.
format Final Year Project
author Soh, Linda Xiao Yu.
author_sort Soh, Linda Xiao Yu.
title Optimising petrochemical logistics
title_short Optimising petrochemical logistics
title_full Optimising petrochemical logistics
title_fullStr Optimising petrochemical logistics
title_full_unstemmed Optimising petrochemical logistics
title_sort optimising petrochemical logistics
publishDate 2010
url http://hdl.handle.net/10356/39029
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