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Optimization on Design Parameters of Road Longitudinal Slope Based on Truck Dynamics

机译:基于卡车动态的道路纵向坡面设计参数优化

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In recent years, with major cities turning to the stock development stage, the development and construction of underground space has gradually become an important strategy for sustainable urban development. The construction of underground passages at freight transport hubs will help the separation of passenger and cargo, which will greatly alleviate urban traffic jam and improve transport efficiency. However, due to the restriction on urban land use and construction cost, it is difficult to achieve gentle slope design for all of underground passages, longitudinal slopes with large gradient are unavoidable. Generally, trucks have quite large gross weight, its uphill speed reduction and downhill brake disc temperature rise would affect road capacity and traffic safety greatly. Therefore, it is quite necessary to propose optimal design of longitudinal slopes given the consideration of truck dynamic performance and its driving safety. Truck models were established in TruckSim, they were used to simulate vehicle driving status uphill and downhill then. Speed reduction and brake disc temperature rise were used to obtain suitable slope gradient and length based on simulation. It was concluded that slope gradient and vehicle output power ratio have great influence on truck climbing ability. Using speed reduction of 20 km/h between vehicle uphill original speed and its stable uphill speed for reference, the maximum slope length for uphill with different gradient could be obtained. Slope gradient and vehicle gross weight have giant impact on brake disc temperature rise. Using brake disc temperature of 200 and 260 °C for reference, suitable slope length for downhill with different gradient were obtained.
机译:近年来,随着股票开发阶段的主要城市,地下空间的发展和建设逐渐成为可持续城市发展的重要战略。货运集线器的地下段落的建设将有助于分离乘客和货物,这将极大地减轻城市交通堵塞,提高运输效率。但是,由于对城市土地利用和施工成本的限制,难以实现所有地下通道的轻柔倾斜设计,较大梯度的纵向斜坡是不可避免的。通常,卡车具有相当大的毛重重量,其上坡减速和下坡制动盘温度升高会影响道路容量和交通安全。因此,考虑到卡车动态性能及其驾驶安全性,这非常有必要提出纵向斜坡的最佳设计。卡车模型是在Trucksim建立的,它们用于模拟上坡和下坡的车辆驾驶状态。减速和制动盘温度升高用于基于模拟获得合适的斜坡梯度和长度。得出结论,坡度梯度和车辆输出功率比对卡车攀岩能力有很大影响。在车辆上坡升高的速度和其稳定上坡速度之间使用速度减少20公里/小时,可以获得具有不同梯度的上坡的最大斜率长度。坡度梯度和车辆总重量对制动盘温度升高产生巨大影响。使用200和260℃的制动盘温度参考,获得具有不同梯度的下坡的合适的斜率长度。

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