Publication Cover
Maritime Policy & Management
The flagship journal of international shipping and port research
Volume 51, 2024 - Issue 5
231
Views
5
CrossRef citations to date
0
Altmetric
Research Article

Are output disaggregation and energy variables key when measuring container terminal efficiency?

, ORCID Icon & ORCID Icon

References

  • Acciaro, M., H. Ghiara, and M. Cusano. 2014. “Energy Management in Seaports: A New Role for Port Authorities.” Energy Policy 71: 4–12. doi:10.1016/j.enpol.2014.04.013.
  • Almawsheki, E. S., and M. Z. Shah. 2015. “Technical Efficiency Analysis of Container Terminals in the Middle Eastern Region.” The Asian Journal of Shipping and Logistics 31 (4): 477–486. doi:10.1016/j.ajsl.2016.01.006.
  • Azarkamand, S., G. Ferré, and R. M. Darbra. 2020. “Calculating the Carbon Footprint in Ports by Using a Standardized Tool.” Science of the Total Environment 734: 139407. doi:10.1016/j.scitotenv.2020.139407.
  • Bichou, K. 2011. “A Two-stage Supply Chain DEA Model for Measuring Container-terminal Efficiency.” International Journal of Shipping and Transport Logistics 3 (1): 6–26. doi:10.1504/IJSTL.2011.037817.
  • Bichou, K. 2013. “An Empirical Study of the Impacts of Operating and Market Conditions on Container-port Efficiency and Benchmarking.” Research in Transportation Economics 42 (1): 28–37. doi:10.1016/j.retrec.2012.11.009.
  • Budiyanto, M. A., T. Shinoda, F. A. Nugroho, and B. Wibowo. 2018. “Estimated of Energy Saving from the Application of Roof Shade on the Refrigerated Container Storage Yard.” Journal of Advanced Research in Fluid Mechanics and Thermal Sciences 46 (1): 114–121.
  • Chandrasekhar Iyer, K., and V. P. S. Nihar Nanyamb. 2021. “Technical Efficiency Analysis of Container Terminals in India.” The Asian Journal of Shipping and Logistics 37 (1): 61–72. doi:10.1016/j.ajsl.2020.07.002.
  • Chang, V., and B. Tovar. 2014a. “Efficiency and Productivity Changes for Peruvian and Chilean Ports Terminals: A Parametric Distance Functions Approach.” Transport Policy 31: 83–94. doi:10.1016/j.tranpol.2013.11.007.
  • Chang, V., and B. Tovar. 2014b. “Drivers Explaining the Inefficiency of Peruvian and Chilean Ports Terminals.” Transportation Research Part E 67: 190–203. doi:10.1016/j.tre.2014.04.011.
  • Chang, V., and B. Tovar. 2017a. “Heterogeneity Unobserved and Efficiency: A Latent Class Model for West Coast of South Pacific Port Terminals.” Journal of Transport Economics and Policy 51 (2): 139–156.
  • Chang, V., and B. Tovar. 2017b. “Metafrontier Analysis on Efficiency and Productivity for West Coast of South Pacific Terminals.” Transportation Research Part A: Policy and Practice 103: 118–134.
  • Chang, V., and B. Tovar. 2021. “Efficiency Drivers for the South Pacific West Coast Port Terminals: A Two-stage Non-convex Meta Frontier DEA Approach.” Operational Research. doi:10.1007/s12351-021-00626-5.
  • Charnes, A., W. W. Cooper, and E. Rhodes. 1978. “Measuring the Efficiency of Decision Making Units.” European Journal of Operational Research 2 (6): 429–444. doi:10.1016/0377-2217(78)90138-8.
  • Cullinane, K., D. W. Song, P. A. Ji, and T. F. Wang. 2004. “An Application of DEA Windows Analysis to Container Port Production Efficiency.” Review of Network Economics 3 (2): 1–23. doi:10.2202/1446-9022.1050.
  • Cullinane, K., D. W. A. Song, and T. Wang. 2005. “The Application of Mathematical Programming Approaches to Estimating Container Port Production Efficiency.” Journal of Productivity Analysis 24 (1): 73–92. doi:10.1007/s11123-005-3041-9.
  • Cullinane, K., T. F. Wang, D. W. Song, and P. Ji. 2006. “The Technical Efficiency of Container Ports: Comparing Data Envelopment Analysis and Stochastic Frontier Analysis.” Transportation Research Part A 40 (4): 354–374.
  • Dias, J. C. Q., S. G. Azevedo, J. Ferreira, and S. F. Palma. 2012. “Seaport Performance Comparison Using Data Envelopment Analysis: The Case of Iberian Container Terminals.” International Journal of Business Performance Management 13 (3/4): 426–449. doi:10.1504/IJBPM.2012.047304.
  • Dowd, T. J., and T. M. Leschine. 1990. “Container Terminal Productivity: A Perspective.” Maritime Policy & Management 17 (2): 107–112. doi:10.1080/03088839000000060.
  • Drewry Shipping Consultant Limited 2018. “Perishable Reefer Trade Growth to Remain Strong.” [online], [accessed July 2021]. https://www.drewry.co.uk/news/news/perishable-reefer-trade-growth-to-remainstrong
  • Geerlings, H., and J. H. R. Van Duin. 2011. “A New Method for Assessing CO2-emissions from Container Terminals: A Promising Approach Applied in Rotterdam.” Journal of Cleaner Production 19 (6–7): 657–666. doi:10.1016/j.jclepro.2010.10.012.
  • Gonzalez, M. M., and L. Trujillo. 2009. “Efficiency Measurement in the Port Industry: A Survey of the Empirical Evidence.” Journal of Transport Economics and Policy 43 (2): 157–192.
  • Guerrero, C., and T. Rivera. 2009. Mexico: Total Productivity Changes at the Principal Container Ports. Review: ECLAC.
  • Guimaraes, V. A., I. C. L. Junior, and P. A. A. Garcia. 2014. “Environmental Performance of Brazilian Container Terminals: A Data Envelopment Analysis Approach.” Social and Behavioral Sciences 160: 178–187.
  • Hangga, P., and T. Shinoda. 2015. “Motion-Based Energy Analysis Methodology for Hybrid Straddle Carrier Towards Eco-Friendly Container Handling System.” Journal of the Eastern Asia Society for Transportation Studies 11: 2412–2431.
  • He, J., Y. Huang, and W. Yan. 2015. “Yard Crane Scheduling in a Container Terminal for the Trade-off between Efficiency and Energy Consumption.” Advanced Engineering Informatics 29 (1): 59–75. doi:10.1016/j.aei.2014.09.003.
  • He, J., Y. Huang, W. Yan, and S. Wang. 2017. “Integrated Internal Truck, Yard Crane and Quay Crane Scheduling in a Container Terminal considering Energy Consumption.” Expert Systems with Applications 42 (5): 2464–2487. 0957-4174.10.1016/j.eswa.2014.11.016.
  • Iris, C., and J. S. L. Lam. 2019. “A Review of Energy Efficiency in Ports: Operational Strategies, Technologies and Energy Management Systems.” Renewable and Sustainable Energy Reviews 112 (C): 170–182. doi:10.1016/j.rser.2019.04.069.
  • Itoh, H. 2002. “Efficiency Changes at Major Container Ports in Japan: A Window Application of Data Envelopment Analysis.” Review of Urban & Regional Development Studies 14 (2): 133–152. doi:10.1111/1467-940X.00052.
  • Kuo, K. C., W. M. Lu, and M. H. Le. 2020. ““Exploring the Performance and Competitiveness of Vietnam Port Industry Using DEA.” The Asian Journal of Shipping and Logistics 36 (3): 136–144. doi:10.1016/j.ajsl.2020.01.002.
  • Li, -L.-L., Y.-J. Seo, and M.-H. Ha. 2021. “The Efficiency of Major Container Terminals in China: Super-efficiency Data Envelopment Analysis Approach.” Maritime Business Review 6 (2): 173–187. doi:10.1108/MABR-08-2020-0051.
  • Lim, S., H. Bae, and L. H. Lee. 2011. “A Study on the Selection of Benchmarking Paths in DEA.” Expert Systems with Applications 38 (6): 7665–7673. doi:10.1016/j.eswa.2010.12.148.
  • Lu, B., and X. Wang. 2012. “Application of DEA on the Measurement of Operating Efficiencies for East-Asia Major Container Terminals.” Journal of Systems and Management Sciences 2 (1): 1–18.
  • Martínez-Moya, J., B. Vazquez-Paja, and J. A. Gimenez Maldonado. 2019. “Energy Efficiency and CO2 Emissions of Port Container Terminal Equipment: Evidence from the Port of Valencia.” Energy Policy 131:312–319. 0301-4215. doi:10.1016/j.enpol.2019.04.044.
  • Mokhtar, K. 2013. “Technical Efficiency of Container Terminal Operations: A DEA Approach.” Journal of Operations and Supply Chain Management 6 (2): 1–19. doi:10.12660/joscmv6n2p1-19.
  • Munin, H. Z. 2020. “Does Higher Technical Efficiency Induce A Higher Service Level? A Paradox Association in the Context of Port Operations.” The Asian Journal of Shipping and Logistics 36 (4): 157–168. doi:10.1016/j.ajsl.2020.02.001.
  • Neufville, R. D., and K. Tsunokawa. 1981. “Productivity and Returns to Scale of Container Ports.” Maritime Policy & Management 8 (2): 121–129. doi:10.1080/03088838100000033.
  • Notteboom, T., C. Coeck, and J. van den Broeck. 2000. “Measuring and Explaining the Relative Efficiency of Container Terminals by Means of Bayesian Stochastic Frontier Models.” International Journal of Maritime Economics 2 (2): 83–106. doi:10.1057/ijme.2000.9.
  • Park, J., B. K. Lee, and J. M. W. Low. 2020. ““A Two-stage Parallel Network DEA Model for Analysing the Operational Capability of Container Terminals.” Maritime Policy & Management 1–22. doi:10.1080/03088839.2020.1859148.
  • Pérez-Reyes, R. A., and B. Tovar. 2009. “Measuring Efficiency and Productivity Change (PTF) in the Peruvian Electricity Distribution Companies after Reforms.” Energy Policy 37 (6): 2249–2261. doi:10.1016/j.enpol.2009.01.037.
  • Pjevčević, D., I. Vladisavljević, K. Vukadinović, and D. Teodorović. 2011. “Application of DEA to the Analysis of AGV Fleet Operations in a Port Container Terminal.” Procedia-Social and Behavioral Sciences 20: 816–825. doi:10.1016/j.sbspro.2011.08.090.
  • Rios, L. R., and A. C. G. Maçada. 2006. “Analysing the Relative Efficiency of Container Terminals of Mercosur Using DEA.” Maritime Economics & Logistics 8 (4): 331–346. doi:10.1057/palgrave.mel.9100168.
  • Roll, Y., and Y. Hayuth. 1993. “Port Performance Comparison Applying Data Envelopment Analysis (DEA).” Maritime Policy & Management 20 (2): 153–161. doi:10.1080/03088839300000025.
  • Sharma, M., and S. Yu. 2010. “Benchmark Optimization and Attribute Identification for Improvement of Container Terminals.” European Journal of Operational Research 201 (2): 568–580. doi:10.1016/j.ejor.2009.03.021.
  • Spengler, T., and G. Wilmsmeier. 2019. “Sustainable Performance and Benchmarking in Container Terminals—The Energy Dimension.” In Green Ports: Inland and Seaside Sustainable Transportation Strategies, edited by J. Monios and R. Bergqvist, 125–154, Elsevier.
  • Tongzon, J. 2001. “Efficiency Measurement of Selected Australian and Other International Ports Using Data Envelopment Analysis.” Transportation Research Part A 35: 113–128.
  • Tovar, B., and A. Wall. 2015. “Can Ports Increase Traffic while Reducing Inputs? Technical Efficiency of Spanish Port Authorities Using a Directional Distance Function Approach.” Transportation. Research Part A 71: 128–144.
  • Van Duin, J. H. R., H. Geerlings, A. Verbraeck, and T. Nafde. 2018. “Cooling Down: A Simulation Approach to Reduce Energy Peaks of Reefers at Terminals.” Journal of Cleaner Production 192: 72–86. doi:10.1016/j.jclepro.2018.04.258.
  • Wang, T., and K. Cullinane. 2015. “The Efficiency of European Container Terminals and Implications for Supply Chain Management.” In Port Management. Palgrave Readers in Economics, edited by H. E. Haralambides. London: Palgrave Macmillan. pp.253–272.
  • Wiegmans, B., and P. Witte. 2017. “Efficiency of Inland Waterway Container Terminals: Stochastic Frontier and Data Envelopment Analysis to Analyse the Capacity Design- and Throughput Efficiency.” Transportation Research Part A: Policy and Practice 106: 12–21.
  • Wilmsmeier, G. 2020. “Climate Change Adaptation and Mitigation in Ports.” Maritime Transport and Regional Sustainability 133–150. doi:10.1016/b978-0-12-819134-7.00008-3.
  • Wilmsmeier, G., J. Froese, A. Zotz, and A. Meyer. 2014. Energy Consumption and Efficiency: Emerging Challenges from Reefer Trade in South American Container Terminals. Chile: FAL Bulletin 329, ECLAC.
  • Wilmsmeier, G., and T. Spengler. 2016. Energy Consumption and Container Terminal Efficiency. Chile: FAL Bulletin 350, ECLAC.
  • Wilmsmeier, G., B. Tovar, and R. J. Sánchez. 2013. “The Evolution of Container Terminal Productivity and Efficiency under Changing Economic Environments.” Research in Transportation Business & Management 8: 50–66. doi:10.1016/j.rtbm.2013.07.003.
  • Woo, S.-H., S. J. Pettit, D.-W. Kwak, and A. K. C. Beresford. 2011. “Seaport Research: A Structured Literature Review on Methodological Issues since the 1980s.” Transportation Research Part A 45: 667–685.
  • Yang, Y.-C., and W.-M. Chang. 2013. “Impacts of Electric Rubber-tired Gantries on Green Port Performance.” Research in Transportation Business & Management 8: 67–76. doi:10.1016/j.rtbm.2013.04.002.
  • Yang, X., and T. L. Yip. 2019. “Sources of Efficiency Changes at Asian Container Ports.” Maritime Business Review 4 (1): 71–93. doi:10.1108/MABR-10-2018-0043.
  • Yip, T. L., X. Y. Sun, and J. J. Liu. 2011. “Group and Individual Heterogeneity in a Stochastic Frontier Model: Container Terminal Operators.” European Journal of Operational Research 213 (3): 517–525. doi:10.1016/j.ejor.2011.03.040.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.