过渡弯和超高对卡车在急弯上翻车临界状态的影响

Junxian Chen, Yonggang Wang
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摘要

急弯是翻车事故的易发路段。本研究旨在探讨过渡曲线和超高对卡车翻车临界速度和临界制动距离的影响。以不同的过渡类型(螺旋形曲线、布洛斯曲线和格拉博夫斯基曲线)和不同的超高值(6%,过渡长度 120 米;8%,160 米)为变量,使用 Trucksim 模拟并进行了匀速行驶和急刹车实验。然后就这些道路设计因素对车辆稳定性的影响提出了结论。格拉博夫斯基曲线允许最大临界翻车速度。不同过渡类型之间临界侧翻速度的差异仅取决于过渡段的长度。简单地延长过渡段的长度可提高螺旋曲线的临界翻车速度,同时降低布洛斯曲线和格拉博夫斯基曲线的临界速度。硬制动实验显示了完全不同的特性。随着初始速度的增加,只有螺旋曲线变得更加安全。由于目标速度、起始曲率和超高的变化不同,超高的增加使车辆的制动行为变得更加危险和充满不确定性。基于这些研究结果,我们为驾驶员和道路设计者提出了一些有用的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Transition Curves and Superelevation on the Critical States of Truck Rollovers on Sharp Curves
Sharp curves are vulnerable sections for rollover accidents. This study was conducted to investigate the effects of transition curve and superelevation on the critical speed and critical braking distance of truck rollovers. Using different transition types (spiral, Bloss and Grabowski curve) and different superelevation values (6%, 120 m transition length and 8%, 160 m) as variables, experiments of constant speed driving and hard braking were simulated and conducted by Trucksim. Conclusions regarding the influence of these road design factors on the stability of vehicles were then proposed. Grabowski curve allowed for the maximum critical rollover speed. The difference in critical rollover speed between different transition types was only determined by the length of the transition section. Simply extending the length of the transition section increased the critical rollover speed of spiral curve, at the same time decreasing the critical speed of Bloss and Grabowski curve. Hard braking experiments showed completely different characteristics. As the initial speed increased, only spiral curve became safer. Increasing superelevation made the braking behaviour of the vehicle more dangerous and fraught with uncertainties due to different target speed, starting curvature and changing superelevation. Based on these findings, a number of useful recommendations for drivers and road designers were put forward.
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