Maritime Policy & Management海事政策与管理

Maritime Policy & Management(英文缩写 MARIT POLICY MANAG),ISSN 0308-8839,eISSN 1464-5254,中文译名:海事政策与管理 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
4.400
JCR 分区
Q2
CAS 分区
B3
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0308-8839 · eISSN: 1464-5254 · 缩写: MARIT POLICY MANAG ·中文: 海事政策与管理

期刊介绍

选择期刊介绍栏目

期刊简介

《Maritime Policy & Management》是一本聚焦海运与港口领域政策、管理与运营问题的国际期刊。内容涵盖航运经济、港口治理、海事安全、物流供应链及海洋环境政策等方向,强调管理实践与政策分析的结合。读者群包括航运企业管理者、港口与海事主管部门人员、物流与供应链研究者,以及交通经济与公共政策领域的学者。

研究方向

主要发表海运政策、港口管理、航运经济、海事安全与保安、海洋环境治理、多式联运与供应链管理等方面的研究。论文类型以实证研究、案例分析和政策评估为主,也接受理论综述与建模范文,关注行业现实问题与管理决策支持。

期刊特色

研究取向偏应用与政策导向,重视数据支撑和现实管理含义,常见定量建模、比较制度分析与行业调研。论文通常要求清晰的问题界定和政策启示。适合海事管理、物流经济、交通政策领域的研究者、研究生及行业分析人员阅读参考。

投稿难度

投稿难度中等偏上,对选题的行业相关性、方法严谨性和政策贡献要求较高。建议先明确研究问题与目标读者,强化数据与论证,避免仅描述现象。若被拒,可根据审稿意见补充案例或调整分析框架后改投。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20213.167Q3
20223.500Q3
20233.700Q2
20243.600Q2
20254.400Q2

Maritime Policy & Management 最新收录文献

  1. JCR分区: Q2 CAS分区: B3 影响因子: 4.4

    1. Optimising the resilience of shipping networks to climate vulnerability.

    作者:
    Mark Ching-Pong Poo, Zaili Yang
    日期:
    2024-01-01

    Climate extremes are threatening transportation infrastructures and hence require new methods to address their vulnerability and improve their resilience. However, existing studies have yet to examine the climate impacts on transportation networks systematically rather than independently assessing the infrastructures at a component level. Therefore, it is crucial to configure alternative shipping routes from a systematic perspective to reduce climate vulnerabilities and optimise the resilience of the whole shipping network. This paper aims to assess the global shipping network focusing on climate resilience by a methodology that combines climate risk indicators, centrality analysis and ship routing optimisation. The methodology is designed for overviewing the climate vulnerability of the current and future scenarios for comparison. First, a multi-centrality assessment defines the global shipping hubs and network vulnerabilities. Secondly, a shipping model is built for finding the optimal shipping route between ports, considering the port disruption days caused by climate change (e.g. extreme weather) based on the climate vulnerability analysis result from the first step. It contributes to a new framework combining the global and local seaport climate vulnerabilities. Furthermore, it recommends changing shipping routes by a foreseeable increase in port disruptions caused by extreme weather for climate adaptation.

  2. JCR分区: Q2 CAS分区: B3 影响因子: 4.4

    2. Alignment of port policy to the context of the Physical Internet.

    作者:
    Patrick B M Fahim, Gerjan Mientjes, Jafar Rezaei, Arjan van Binsbergen, Benoit Montreuil, Lorant Tavasszy
    日期:
    2024-01-01

    The Physical Internet (PI) is a paradigm-changing and technology-driven vision, which is expected to significantly impact the development of the freight transport and logistics (FTL) system of today. However, the development of the FTL system towards the PI creates much uncertainty for its current stakeholders. Ports are one of those stakeholders that are expected to be profoundly affected by these developments. However, research that focuses on port policy, under the uncertain developments towards the PI, is still lacking. By providing port authorities with insights and recommendations on robust policy areas, we address this void in literature. We conduct a scenario analysis in combination with multi-criteria decision analysis (MCDA) to determine the importance of port performance indicators and policy areas in different scenarios. The most significant, uncertain, and orthogonal factors for the development of the PI are technological development and institutional development. We find that for a proper alignment with the PI vision, in three out of four scenarios, ports should prioritize the implementation of digital solutions and standards, as opposed to an infrastructure focused policy.

  3. JCR分区: Q2 CAS分区: B3 影响因子: 4.4

    3. Maritime cybersecurity: are onboard systems ready?

    作者:
    Kamlesh Kanwal, Wenming Shi, Christos Kontovas, Zaili Yang, Chia-Hsun Chang
    日期:
    2024-01-01

    Recent maritime cybersecurity accidents reveal that shipping is facing increased exposure to cyber threats, especially due to the fast-growing digitalisation of the sector, leaving vessels and their onboard systems vulnerable to cyberattacks. This research aims at evaluating the relationship among the critical dimensions influencing cybersecurity performance in the maritime industry. To achieve this, six critical dimensions related to cybersecurity preparedness are first identified through literature review, namely 'regulations', 'company procedures' from a managerial perspective and 'shipboard systems readiness', 'training and awareness', 'human factor' and 'compliance monitoring' at an operation level. A Likert-scale questionnaire is designed and used to collect empirical data from 133 seafarers and shore-based staff. Structural Equation Modelling (SEM) is applied to examine the causal relationships between the six dimensions and shipboard cybersecurity performance. The results show that 'regulations' positively influence shipping companies' cybersecurity-related 'procedures', which in turn positively affects 'shipboard systems readiness', 'training and awareness', and 'monitoring'. Further, 'training and awareness' positively influences the cybersecurity performance of ships. The results have profound implications for the shipping industry on how to strengthen their cyber practices in order to improve their cybersecurity performance. Recommendations for future academic research related to maritime cybersecurity are also provided.

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