Liu Yutong, Pan Binghong, Zhang Zelong, Zhang Ranyang, Shao Yang
Highway Academy, Chang'an University, Xi'an 710064, China.
School of Modern Posts (Logistics School), Xi'an University of Posts & Telecommunications, Xi'an 710061, China.
Entropy (Basel). 2022 Dec 8;24(12):1794. doi: 10.3390/e24121794.
With the continuous construction of transportation infrastructure, intersection nodes have been increasing rapidly, bringing growing numbers of tunnel- and exit-adjacent sections (TEAS) in mountain expressways in China. With the complex variation in the surrounding environment, drivers always face congestion and confusion on tunnel and the exit connecting sections (TECS) without adequate length, meanwhile excessively long TECS create detours. To better provide a sustainable design strategy for TEAS, based on a certain section of expressway in Shaanxi, China, this paper establishes a theoretical calculation model through analysis. The characteristics of traffic flow and drivers' light adaptation at tunnel exit are obtained through data collection and driving tests, and the length requirements of the tunnel and exit connecting sections (TECS) are discussed. A VISSIM microscopic simulation model is also built under various design schemes and entropy-based multi-attribute decision making (EBMADM) is used to objectively calculate the weights of the four selected evaluation indexes. Then, the design schemes of the TECS with different lengths have been comprehensively evaluated. The results show the match between the evaluation results of EBMADM with theoretical calculations under existing traffic conditions, which proves the rationality of EBMADM in such problems. For more cases, the results of the EBMADM evaluation show a positive correlation between the length of TECS for the best performing design scheme with traffic volume and diverging ratio.
随着交通基础设施的不断建设,交叉节点迅速增加,中国山区高速公路中与隧道和出口相邻的路段(TEAS)数量也日益增多。由于周边环境复杂多变,在长度不足的隧道及出口连接路段(TECS)上,驾驶员常常面临拥堵和困惑,而过长的TECS又会导致绕路。为了更好地为TEAS提供可持续的设计策略,本文以中国陕西某段高速公路为基础,通过分析建立了理论计算模型。通过数据收集和驾驶测试,得出了隧道出口处交通流特性和驾驶员光适应特性,并探讨了隧道及出口连接路段(TECS)的长度要求。还在不同设计方案下建立了VISSIM微观仿真模型,并采用基于熵的多属性决策(EBMADM)客观计算了四个选定评价指标的权重。然后,对不同长度的TECS设计方案进行了综合评价。结果表明,在现有交通条件下,EBMADM的评价结果与理论计算结果相匹配,证明了EBMADM在此类问题中的合理性。对于更多案例,EBMADM评价结果表明,性能最佳的设计方案的TECS长度与交通量和分流比之间呈正相关。