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最优减速带设计的基本实验方法。

A fundamental experimental approach for optimal design of speed bumps.

机构信息

Koc University, Istanbul Turkey.

Istanbul Technical University, Istanbul Turkey.

出版信息

Accid Anal Prev. 2018 Jul;116:53-68. doi: 10.1016/j.aap.2017.05.022. Epub 2017 Jun 2.

Abstract

Speed bumps and humps are utilized as means of calming traffic and controlling vehicular speed. Needless to say, bumps and humps of large dimensions in length and width force drivers to significantly reduce their driving speeds so as to avoid significant vehicle vertical acceleration. It is thus that this experimental study was conducted with the aim of determining a speed bump design that performs optimally when leading drivers to reduce the speed of their vehicles to safe levels. The first step of the investigation starts off by considering the following question: "What is the optimal design of a speed bump that will - at the same time - reduce the velocity of an incoming vehicle significantly and to a speed that resulting vertical acceleration does not jeopardize road safety? The experiment has been designed to study the dependent variables and collect data in order to propose an optimal design for a speed bump. To achieve this, a scaled model of 1:6 to real life was created to simulate the interaction between a car wheel and a speed bump. During the course of the experiment, a wheel was accelerated down an inclined plane onto a horizontal plane of motion where it was allowed to collide with a speed bump. The speed of the wheel and the vertical acceleration at the speed bump were captured by means of a Vernier Motion Detector.

摘要

减速带和凸起物被用作减缓交通和控制车辆速度的手段。不用说,长度和宽度较大的凸起物和减速带迫使驾驶员显著降低行驶速度,以避免车辆产生过大的垂直加速度。因此,进行这项实验研究的目的是确定一种减速带设计,当引导驾驶员将车辆速度降低到安全水平时,能达到最佳效果。研究的第一步从考虑以下问题开始:“什么样的减速带设计既能显著降低进入车辆的速度,又能将速度降低到不会危及道路安全的垂直加速度水平?该实验旨在研究因变量并收集数据,以便为减速带提出一个最佳设计。为了实现这一目标,创建了一个 1:6 的比例模型来模拟车轮和减速带之间的相互作用。在实验过程中,车轮被加速到一个倾斜平面上,然后进入一个水平运动平面,在那里它被允许与一个减速带碰撞。车轮的速度和减速带处的垂直加速度通过 Vernier 运动探测器进行捕获。

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