The mechanism of spontaneous corrugation on the snowy and icy roads produced by the moving vehicles in cold regions

Hao Zheng, Yu Cao, Chongqian Ma, Shunji Kanie
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Abstract

Traffic safety in cold regions is seriously affected by the snow and ice brought by the extreme climate. The snowy and icy road cannot provide enough friction for the safe operation of vehicles due to its smooth and uneven surface. In this research, we are going to focus on the uneven corrugation occurred on snowy and icy roads and to investigate the formation mechanism of this spontaneous corrugation which can seriously threaten the traffic safety. According to field observations, we found that the corrugation phenomenon generated by moving vehicles is a complicated thermal–mechanical coupled process. In order to simplify this complicated process, we are going to focus on the mechanical process of the formation of spontaneous corrugation only at this stage. Field observation by time-lapse cameras has been conducted to disclose its forming process directly. Then, we adopted sand as the material to reproduce the spontaneous corrugation in the laboratory which can eliminate the influence of the thermal process. By considering the compressibility and mobility of the surface material comprehensively, a numerical model has been successfully constructed for imitating the forming process of corrugation. Then based on this proposed numerical model, a preliminary discussion on the influence of natural frequency on the number of the corrugation has been conducted. The relationship between the natural frequency which is decided by the vehicle itself and the corrugation is promising to be utilized in optimizing the vehicle design to improve the performance on the snowy and icy roads.
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寒冷地区行驶车辆在冰雪路面上产生自发波纹的机理
极端气候带来的冰雪严重影响了寒冷地区的交通安全。由于冰雪路面光滑不平,无法为车辆的安全行驶提供足够的摩擦力。在本研究中,我们将重点关注冰雪路面上出现的不平整波纹,并研究这种会严重威胁交通安全的自发波纹的形成机理。根据实地观察,我们发现车辆行驶时产生的波纹现象是一个复杂的热力-机械耦合过程。为了简化这一复杂过程,现阶段我们将只关注自发波纹形成的机械过程。通过延时摄影机进行实地观察,直接揭示其形成过程。然后,我们采用沙子作为材料,在实验室中再现自发波纹,这样可以消除热过程的影响。通过综合考虑表面材料的可压缩性和流动性,我们成功地构建了一个模仿波纹形成过程的数值模型。在此基础上,初步探讨了固有频率对波纹数量的影响。由车辆本身决定的固有频率与波纹之间的关系有望用于优化车辆设计,以提高车辆在冰雪路面上的性能。
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来源期刊
CiteScore
5.70
自引率
0.00%
发文量
0
审稿时长
13 weeks
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