Improving supply chain resilience at tetra pak using multi-stage supply chain

Due to the global expansion of Tetra Pak’s supply chain network, it is becoming more vulnerable to many disruptions. These disruptions often incur additional costs, require time to respond and recover. The base paper supply was identified as the most vulnerable area of the Tetra Pak Jurong and Asia...

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Bibliographic Details
Main Author: Hiu, Elsa Man Leung
Other Authors: Rajesh Piplani
Format: Thesis
Language:English
Published: 2014
Subjects:
Online Access:http://hdl.handle.net/10356/60538
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author Hiu, Elsa Man Leung
author2 Rajesh Piplani
author_facet Rajesh Piplani
Hiu, Elsa Man Leung
author_sort Hiu, Elsa Man Leung
collection NTU
description Due to the global expansion of Tetra Pak’s supply chain network, it is becoming more vulnerable to many disruptions. These disruptions often incur additional costs, require time to respond and recover. The base paper supply was identified as the most vulnerable area of the Tetra Pak Jurong and Asia Clusters’ supply chain; and a multi-stage supply chain was proposed to improve the supply chain’s resilience. A statistical model was constructed to select the optimal location of the central warehouse for the proposed multi-stage supply chain. After evaluating the resilience to disruptions and the cost effectiveness of potential supply chain designs, the multi-stage supply chain with central warehouse in Yantian, China was found to be overall most resilient and cost effective among all the supply chains. It also incurs a lower additional cost to recover in the event of a disruption such as changes demand forecast accuracy, demand surges and shipping disruptions. As a result, establishing this multi-stage supply chain is recommended.
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spelling ntu-10356/605382020-11-01T11:29:49Z Improving supply chain resilience at tetra pak using multi-stage supply chain Hiu, Elsa Man Leung Rajesh Piplani School of Mechanical and Aerospace Engineering Tetra Pak Singapore-MIT Alliance Programme DRNTU::Engineering::Manufacturing Due to the global expansion of Tetra Pak’s supply chain network, it is becoming more vulnerable to many disruptions. These disruptions often incur additional costs, require time to respond and recover. The base paper supply was identified as the most vulnerable area of the Tetra Pak Jurong and Asia Clusters’ supply chain; and a multi-stage supply chain was proposed to improve the supply chain’s resilience. A statistical model was constructed to select the optimal location of the central warehouse for the proposed multi-stage supply chain. After evaluating the resilience to disruptions and the cost effectiveness of potential supply chain designs, the multi-stage supply chain with central warehouse in Yantian, China was found to be overall most resilient and cost effective among all the supply chains. It also incurs a lower additional cost to recover in the event of a disruption such as changes demand forecast accuracy, demand surges and shipping disruptions. As a result, establishing this multi-stage supply chain is recommended. ​Master of Science (IMST) 2014-05-28T03:51:59Z 2014-05-28T03:51:59Z 2009 2009 Thesis http://hdl.handle.net/10356/60538 en 64 p. application/pdf
spellingShingle DRNTU::Engineering::Manufacturing
Hiu, Elsa Man Leung
Improving supply chain resilience at tetra pak using multi-stage supply chain
title Improving supply chain resilience at tetra pak using multi-stage supply chain
title_full Improving supply chain resilience at tetra pak using multi-stage supply chain
title_fullStr Improving supply chain resilience at tetra pak using multi-stage supply chain
title_full_unstemmed Improving supply chain resilience at tetra pak using multi-stage supply chain
title_short Improving supply chain resilience at tetra pak using multi-stage supply chain
title_sort improving supply chain resilience at tetra pak using multi stage supply chain
topic DRNTU::Engineering::Manufacturing
url http://hdl.handle.net/10356/60538
work_keys_str_mv AT hiuelsamanleung improvingsupplychainresilienceattetrapakusingmultistagesupplychain