投资回收期
可再生能源
海岸
电
柴油发电机
工程类
环境科学
汽车工程
电气工程
柴油
海洋学
生产(经济)
经济
宏观经济学
地质学
作者
Ameen M. Bassam,Alexander B. Phillips,Stephen R. Turnock,P.A. Wilson
标识
DOI:10.1080/17445302.2023.2245187
摘要
ABSTRACTFor more sustainable shipping operation in coastal areas and port cities, shore side power (SSP) systems are attracting widespread interest as a solution to reduce ship auxiliary engine emissions, noise and vibration. The potential of these systems can be further improved by integrating renewable energy into the electricity grid. However, the majority of prior research has focused on investigating SSP systems for large ports in large shipping hub countries. Therefore, in this study, SSP technology is investigated for an inland waterway in Egypt on the Suez Canal utilising real ferries operational data. Green electricity from solar sunshade structures is generated for the SSP system utilising the Egyptian excellent solar energy potential. For this study, the ferry diesel generator, battery and solar systems are modelled in MATLAB/Simulink environment to investigate the proposed SSP system. Results indicate that the proposed SSP system could eliminate annually 1420 tonnes of emissions as well reduce the grid CO2 emissions by 1204 tonnes through the green electricity supplied to the grid. Moreover, the cash flow and net present value analyses have shown good profitability with a payback period between 7.4 and 12 years.KEYWORDS: Shore side powersolar energyphotovoltaic systemsMATLABSimulinkEgypt AcknowledgmentsThe authors would like to thank the Suez Canal Authorities for the assistance and the provision of data utilised in this study.Disclosure statementThe authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.Data availability statementThe data that support the findings of this study are available from the corresponding author, Ameen M. Bassam, upon reasonable request.
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