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Performance modeling and risk analysis of transit vessel traffic in the Istanbul Strait: Studies on queues with multiple types of interruptions.

机译:伊斯坦布尔海峡过境船只交通的性能建模和风险分析:对具有多种中断类型的队列的研究。

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摘要

The Istanbul Strait, the narrow waterway separating Europe from Asia, holds a strategic importance in maritime transportation as it links the Black Sea to the Mediterranean. It is considered one of the world's most dangerous waterways to navigate. Over 50,000 transit vessels pass through the Strait annually, 20% of which carry dangerous cargo.;In this research, we have developed a mathematical risk analysis model to analyze the risks involved in the transit vessel traffic system in the Istanbul Strait. In the first step of the risk analysis, the transit vessel traffic system is analyzed and a simulation model is developed to mimic and study the system behavior. In addition to vessel traffic and geographical conditions, the current vessel scheduling practices are modeled using a scheduling algorithm. This algorithm is developed through discussions with the Turkish Straits Vessel Traffic Services (VTS) to mimic their decisions on sequencing vessel entrances as well as coordinating vessel traffic in both directions. Furthermore, a scenario analysis is performed to evaluate the impact of several parameters on the system performance.;Risk analysis is performed by incorporating a probabilistic accident risk model into the simulation model. A mathematical model is developed based on probabilistic arguments and historical data and subject matter expert opinions. We have also performed a scenario analysis to evaluate the characteristics of the accident risk. This analysis allows us to investigate how various factors impact risk. These factors include vessel arrivals, scheduling policies, pilotage, overtaking, and local traffic density. Policy indications are made based on results.;Finally, complexity of the operations at the Strait has motivated us to model congestion at the waterway entrances through queueing analysis. We have developed queueing models subject to various operation-independent interruptions. We have used waiting time arguments and service completion time analysis to approximate the expected waiting time of a vessel in the aforementioned queue for various cases of service interruptions. These cases include the single-class models with non-simultaneous and possibly simultaneous interruptions, the multi-class priority queueing model with k possibly simultaneous class-independent interruptions, and the two-class priority queueing model with k possibly simultaneous class-dependent interruptions.
机译:伊斯坦布尔海峡是连接欧洲和亚洲的狭窄水道,在海上交通中具有重要的战略意义,因为它连接了黑海和地中海。它被认为是世界上最危险的航道之一。每年有超过50,000艘过境船只通过海峡,其中20%载有危险货物。在本研究中,我们开发了数学风险分析模型来分析伊斯坦布尔海峡过境船只交通系统所涉及的风险。在风险分析的第一步中,对过境船只交通系统进行了分析,并开发了一个仿真模型来模拟和研究系统行为。除船只交通和地理条件外,还使用调度算法对当前的船舶调度实践进行建模。该算法是通过与土耳其海峡船只交通服务(VTS)进行讨论而开发的,以模仿他们对船只入口排序以及双向协调船只交通的决策。此外,还进行了情景分析以评估几个参数对系统性能的影响。通过将概率事故风险模型纳入仿真模型来进行风险分析。基于概率论证和历史数据以及主题专家的意见,开发了一个数学模型。我们还进行了情景分析,以评估事故风险的特征。这种分析使我们能够研究各种因素如何影响风险。这些因素包括船只到达,调度政策,领航,超车和当地交通密度。最后,海峡两岸运营的复杂性促使我们通过排队分析对水路入口处的拥堵进行建模。我们开发了排队模型,该模型受到各种与操作无关的中断的影响。我们使用了等待时间参数和服务完成时间分析来估计上述各种服务中断情况下队列中船只的预期等待时间。这些情况包括具有非同时中断和可能同时中断的单类模型,具有k个可能同时与类无关的中断的多类优先级排队模型以及具有k个可能同时与类相关的中断的两类优先级排队模型。

著录项

  • 作者

    Uluscu Tutun, Ozgecan S.;

  • 作者单位

    Rutgers The State University of New Jersey - New Brunswick.;

  • 授予单位 Rutgers The State University of New Jersey - New Brunswick.;
  • 学科 Engineering Industrial.;Engineering Marine and Ocean.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 423 p.
  • 总页数 423
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;海洋工程;
  • 关键词

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