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An experimental study on individual walking speed during ship evacuation with the combined effect of heeling and trim

机译:侧倾与纵倾相结合对船舶撤离过程中个体行走速度的实验研究

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摘要

Ship listing and motion is one significant factor that affects safety evacuation in passenger ship by reducing individual walking speed. A ship corridor simulator was developed to investigate the combined effect of heeling and trim on individual walking speed when freely and fast walking circumstances were considered. The value of the heeling angle a considered in the experiment is 0, +/- 5, +/- 10, +/- 15 degrees, and the value of the trim angle beta is 0, +/- 5, +/- 10, +/- 15, +/- 20 degrees. It is found that average individual walking speed could be greatly attenuated, when the heeling and/or trim angles are considered. Compared to trim angles, heeling angles show less impact on average individual walking speed. When trim angle beta 0 degrees, the gradient of average individual walking speed along with the increasing heeling or trim angle is larger compared to that when trim angle beta 0 degrees. The maximum value for average individual speed could be achieved at the heeling angle a of 0 degrees, with trim angle l ranging from -15 degrees to -5 degrees, since the average individual walking speed increases obviously under gravity effect during trim-down conditions (alpha = 0 degrees) as the trim-down slope increases from 0 degrees to 10 degrees. The results will provide fundamental guidance to the practical ship evacuation.
机译:船舶挂牌和移动是通过降低个人步行速度来影响客船安全疏散的重要因素。开发了一种船舶走廊模拟器,以研究在考虑自由和快速行走情况时,横倾和纵倾对个人行走速度的综合影响。实验中考虑的横倾角a的值为0,+ /-5,+ /-10,+ /-15度,修整角beta的值为0,+ /-5,+ /-10 ,+ /-15,+ /-20度。已经发现,当考虑横倾角和/或纵倾角时,平均个人行走速度会大大降低。与纵倾角相比,横倾角对个人平均步行速度的影响较小。当装饰角β> 0度时,平均个人步行速度的梯度与增加的横倾角或装饰角相比,与装饰角β<0度时的梯度相比更大。平均个人速度的最大值可以在0度的后倾角a处获得,修剪角l在-15度至-5度的范围内,因为在修剪条件下,平均个人行走速度在重力作用下明显增加(修剪斜率从0度增加到10度时,α= 0度)。结果将为实际的船舶撤离提供基本指导。

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