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31.
带转向延误的非对称多模式用户平衡模型及算法 总被引:6,自引:0,他引:6
为了在网络建模中更精确地反映交通网络和出行行为的复杂特征,从多模式用户平衡原理出发,综合考虑多模式和转向延误因素以及不同模式、路段和转向之间的非对称作用,利用变分不等式理论建立了带转向延误的非对称多模式用户平衡模型,并在精简对角化算法的框架内设计了求解算法。该模型集成了交通网络的诸多特征,且能直接刻画转向延误与转向流量之间的互动关系,避免了传统扩展网络法的缺陷。算例表明:该模型及其算法对问题的描述与求解是有效的。 相似文献
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通过建立国际平整度指数(IR I)的数字地面模型来描述基于道路面状的IRI指标概念。在分析研究几类数字地面模型的曲面函数内插方法的基础上,给出了IRI的二元双一次曲面乘积型逼近模型。最后给出了定义和描述同一段道路路面不同时段IRI变化量的乘积型重积分求积公式、IRI均值和标准差、IRI值的变化差均值及IRI值变化差的标准差、IRI值单位时间变化速率等数值解法。 相似文献
34.
大型充泥袋结构在黄骅港一期工程引堤工程中的应用 总被引:2,自引:0,他引:2
重点介绍黄骅港引堤工程采用大型充泥袋结构方案的研究应用情况,并对设计、施工中的某些技术问题进行探讨并提出建议。 相似文献
35.
王军 《铁道标准设计通讯》2014,(1):117-118
四显示自动闭塞区段,车站计算机联锁一般需要3个闭塞分区作为接近轨道,当两站之间距离较短,少于3个闭塞分区时,则需要对接近轨的逻辑电路进行特殊处理。以神头站至大新站短区间为例,介绍以大新站进站信号机至出站信号机之间作为神头站的1JG、大新站出站信号机至1LQG为神头站的2JG的特殊情况,详细分析接近轨道电路的原理,并对具体工程应用进行说明。 相似文献
36.
通过对几个已建工程的回顾,归纳了我国插入式大圆筒岸壁水工建筑物通常的设计思路,并结合前苏联(俄罗斯联邦)、日本、英国等国家的相关结构设计规范或标准以及格型钢板桩(管)岸壁结构的设计思路或计算方法,对插入式大圆筒岸壁结构的使用条件、设计思路进行了统计归纳和对比分析。在总结现有设计与施工技术经验的基础上,提出了插入式大圆筒岸壁结构的使用条件和结构设计的新思路,希望起到抛砖引玉之作用。 相似文献
38.
刘先斌 《西南交通大学学报》1998,33(2):115-121
研究了随机有限元方法的理论基础-随机变分方程解的合理性问题,证明了一般形式的随机变分方程解的存在与唯一性定性,明确了在随机扰动算子不足以破坏均值微分算子的强制性条件-不会导致方程类型变异的前提下,Fredholm择一定理的第二个结果成立,此时在概率1的意义上变分解存在而且唯一。 相似文献
39.
Fred Wegman 《国际交通安全学会研究报告》2017,40(2):66-71
Estimates by the World Health Organization suggest that, on a yearly basis, road crashes kill 1.25 million people—nearly 3400 road fatalities per day—and injure up to 50 million. Traffic injuries are not equally spread over the world, however; some countries are hit harder than others, and the chance of being killed in a road crash depends on where one lives. Almost 90% of all traffic casualties occur in low- and middle-income countries (LMIC). Globally, the number of fatalities per 100,000 population (mortality rate) ranges from less than 3 to almost 40. The rate is less than 9 in high-income countries (HIC) but averages around 20 in LMIC, with the African region demonstrating the highest rate (26.6). While road safety trends have been positive in HIC over the last few decades, trends in LMIC are not telling a positive story: road fatalities are expected to increase to almost 2 million road fatalities per year by 2020.The United Nations has adopted several resolutions on road safety and proposes actions to tackle the global road safety crisis. Considering the current level of road safety to be unacceptable, the UN has taken several initiatives. One effort, the Decade of Action for Road Safety 2011–2020, has generated substantial activity around the world over the last couple of years. Furthermore, it is very encouraging that the UN included road safety in the Sustainable Development Goals that it laid out in September 2015. Road safety is part of the public health agenda and the urban development agenda. Measured in “real actions,” however, the responses so far from the overall global community and individual countries do not suggest that we are already on the right track to bringing down the death toll on roads.The future of road safety is uncertain and definitely not the same for all regions of the world. Countries with a mature road safety approach and an ambition to make further progress are expected to move in the direction of a pro-active approach: a Safe System approach. It is reported that many LMIC, meanwhile, are on the brink of designing road safety strategies and implementing action plans. The international community is willing to support LMIC, but LMIC cannot simply copy successful HIC strategies because local circumstances differ. The principles of successful HIC strategies are applicable, but the priorities and action plans should take root in and align with local conditions. 相似文献
40.
Luis Baeza David J. Thompson Giacomo Squicciarini Francisco D. Denia 《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2018,56(11):1734-1746
This work presents a robust methodology for calculating inter-penetration areas between railway wheel and rail surfaces, the profiles of which are defined by a series of points. The method allows general three-dimensional displacements of the wheelset to be considered, and its characteristics make it especially suitable for dynamic simulations where the wheel–rail contact is assumed to be flexible. The technique is based on the discretisation of the geometries of the surfaces in contact, considering the wheel as a set of truncated cones and the rail as points. By means of this approach, it is possible to reduce the problem to the calculation of the intersections between cones and lines, the solution for which has a closed-form expression. The method has been used in conjunction with the CONTACT algorithm in order to solve the static normal contact problem when the lateral displacement of the wheelset, its yaw angle and the vertical force applied in the wheelset centroid are prescribed. The results consist of smooth functions when the dependent coordinates are represented as a function of the independent ones, lacking the jump discontinuities that are present when a rigid contact model is adopted. Example results are shown and assessed for the normal contact problem for different lateral and yaw positions of the wheelset on the track. 相似文献