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Exploring effects of ship traffic characteristics and environmental conditions on ship collision frequency

机译:探索船舶交通特性与环境条件对船舶碰撞频率的影响

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摘要

This study aims to model the complex relationship among the traffic characteristics (i.e. traffic flow, traffic speed, traffic density), environmental conditions (i.e. darkness condition, weather condition and traffic lane width) and frequency of ship collisions in the Yangtze River estuary areas. Taking into account the effects of ship approach angle, ship type, relative speed and darkness condition on the capability of ship collision avoidance, a dynamic ship domain model has been presented to measure ship collision frequency. Considering the big variation associated with the collision frequency, the measured ship collision frequency is further modeled as a loglogistic-distributed function of traffic characteristics and environmental conditions. Results show that the collision frequency is greater for (i) the bigger traffic flow; (ii) the bigger traffic density; (iii) the narrower traffic lane width; and (iv) the adverse weather condition. The darkness condition is the influencing factor that produces the biggest effect on the ship collision frequency.
机译:本研究旨在模拟交通特性(即,交通流量,交通,交通密度),环境条件(即黑暗条件,天气状况和交通车道宽度)和长江河口地区船舶碰撞频率之间的复杂关系。考虑到船舶接近角度,船舶类型,相对速度和黑暗条件对船舶碰撞避免能力的影响,已经提出了一种动态船域模型来测量船舶碰撞频率。考虑到与碰撞频率相关的大变化,测量的船舶碰撞频率进一步建模为流量特性和环境条件的逻辑分布式功能。结果表明,碰撞频率越大,(i)交通流量越大; (ii)交通密度更大; (iii)较窄的交通车道宽度;和(iv)恶劣的天气状况。黑暗条件是影响船舶碰撞频率最大影响的影响因素。

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