Resilience and complexity measurement for energy efficient global supply chains in disruptive events

dc.contributor.author Esra Ekinci
dc.contributor.author Sachin Kumar Kumar Mangla
dc.contributor.author Yigit Kazancoglu
dc.contributor.author P. R.S. Sarma
dc.contributor.author Muruvvet Deniz Sezer
dc.contributor.author Melisa Ozbiltekin-Pala
dc.date.accessioned 2025-10-06T17:49:57Z
dc.date.issued 2022
dc.description.abstract The whole world is faced with the COVID-19 epidemic that causes major disruptions in global supply chains. The aim of study is to evaluate the effects of COVID-19 on energy efficient global supply chains (SCs) and to model the global supply chain resilience and energy management affected during the COVID-19 considering trade between Turkey and China and Turkey and the EU. In this study firstly using System Dynamics (SD) model the behavior of countries against COVID-19 for a certain period of time is observed subsequently the increase in complexity is analyzed with entropy measurement to determine whether the systems are resilient or not and to mark the differences arising from reporting in the first and second wave of the pandemic in the developed model. It is determined that the second wave reporting differences is less than first wave reporting differences except Turkey. From the learning effect perspective it has been seen that the effect on the economy and foreign trade are less than first wave of pandemic even though the number of patients originating in the second wave are higher. It means that countries responded to the second wave of COVID-19 in a more resilient way. It is found that as a major finding of this study perceived complexity of the system decreases in the second wave because of the resilience of supply chain considering learning effect and centralized decision making ensure increasing resilience and resilience measure in global supply chains. The study is highly helpful for governments decision makers and managers to understand and manage the impacts of COVID-19 on global supply chains being resilient and energy efficient. © 2022 Elsevier B.V. All rights reserved.
dc.identifier.doi 10.1016/j.techfore.2022.121634
dc.identifier.issn 00401625
dc.identifier.issn 0040-1625
dc.identifier.uri https://www.scopus.com/inward/record.uri?eid=2-s2.0-85127340865&doi=10.1016%2Fj.techfore.2022.121634&partnerID=40&md5=5975d2f6a81c290ef5d29b96be2b3949
dc.identifier.uri https://gcris.yasar.edu.tr/handle/123456789/8706
dc.language.iso English
dc.publisher Elsevier Inc.
dc.relation.ispartof Technological Forecasting and Social Change
dc.source Technological Forecasting and Social Change
dc.subject Covid-19, Energy Management, Global Supply Chains, Resilience & Complexity, System Dynamics, Turkey-eu-china, Decision Making, Energy Efficiency, International Trade, Supply Chains, System Theory, Uncertainty Analysis, Complexity Measurement, Covid-19, Disruptive Event, Energy Efficient, Global Supply Chain, Learning Effects, Resilience & Complexity, Supply Chain Resiliences, System Dynamics Modelling, Turkey-eu-china, Energy Management, Complexity, Energy Efficiency, Energy Management, European Union, Pandemic, Resilience, Supply Chain Management, China, Europe, Turkey
dc.subject Decision making, Energy efficiency, International trade, Supply chains, System theory, Uncertainty analysis, Complexity measurement, COVID-19, Disruptive event, Energy efficient, Global supply chain, Learning effects, Resilience & complexity, Supply chain resiliences, System dynamics modelling, Turkey-EU-china, Energy management, complexity, energy efficiency, energy management, European Union, pandemic, resilience, supply chain management, China, Europe, Turkey
dc.title Resilience and complexity measurement for energy efficient global supply chains in disruptive events
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gdc.description.startpage 121634
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person.identifier.scopus-author-id Ekinci- Esra (57208255127), Kumar Mangla- Sachin Kumar (55735821600), Kazancoglu- Yigit (15848066400), Sarma- P. R.S. (55637251300), Sezer- Muruvvet Deniz (57218375408), Ozbiltekin-Pala- Melisa (57222809402)
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