Shore-power capacity allocation in a container shipping network under ships’ strategic behaviors

IF 5.8 1区 工程技术 Q1 ECONOMICS
Zhijia Tan, Dian Sheng, Yafeng Yin
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Abstract

Shore power (SP) is an effective way to cut carbon emissions at ports by replacing fuel oil for docked ships. The adoption of SP by ships hinges on the onboard transformer setup cost and the cost saving from SP utilization in comparison with fuel oil. The allocation of SP capacity at ports influences the availability of SP-equipped berths and, along with conventional berths, incurs potential service delays. Misallocation can actually increase port emissions. This paper addresses the SP capacity allocation problem in a general container shipping network with multiple ports and a ship fleet. The service congestion or capacity-dependent waiting time at berths is considered, which results in strategic choices or choice equilibrium of ships on SP adoption. The emission quantity at each port is affected by the choice equilibrium of ships. For the benchmark case with a single port, we analytically identify a threshold SP capacity above which emissions decrease, below which a counterintuitive increase occurs. For the general shipping network, assuming government covers transformer setup costs, we develop an exact method to determine the critical level for each port to ensure emission reductions. A case study based on the Yangtze River is conducted to illustrate the analytical results.
船舶战略行为下的集装箱航运网络岸电容量分配
岸电(SP)替代停靠船舶的燃油,是减少港口碳排放的有效途径。船舶采用SP取决于船上变压器的设置成本以及与燃油相比使用SP节省的成本。港口SP容量的分配影响到配备SP的泊位的可用性,并与传统泊位一起,导致潜在的服务延迟。分配不当实际上会增加港口的排放量。本文研究了具有多个港口和船队的一般集装箱航运网络的SP容量分配问题。考虑泊位服务拥塞或泊位容量依赖等待时间,对船舶采用SP进行策略选择或选择均衡。各港口的排放量受船舶选择均衡的影响。对于单端口的基准情况,我们分析确定了一个阈值SP容量,超过该容量排放量减少,低于该容量排放量会出现违反直觉的增加。对于一般航运网络,假设政府承担变压器设置成本,我们开发了一种精确的方法来确定每个港口的临界水平,以确保减排。最后以长江流域为例,对分析结果进行了说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transportation Research Part B-Methodological
Transportation Research Part B-Methodological 工程技术-工程:土木
CiteScore
12.40
自引率
8.80%
发文量
143
审稿时长
14.1 weeks
期刊介绍: Transportation Research: Part B publishes papers on all methodological aspects of the subject, particularly those that require mathematical analysis. The general theme of the journal is the development and solution of problems that are adequately motivated to deal with important aspects of the design and/or analysis of transportation systems. Areas covered include: traffic flow; design and analysis of transportation networks; control and scheduling; optimization; queuing theory; logistics; supply chains; development and application of statistical, econometric and mathematical models to address transportation problems; cost models; pricing and/or investment; traveler or shipper behavior; cost-benefit methodologies.
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