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271.
272.
高速公路危险点控制管理研究 总被引:2,自引:0,他引:2
针对高速公路交通安全管理的特征和需要,引入危险点控制管理的思想,比较详细地阐述了危险点控制管理的概念,性质,特点和原则,探讨了危险点评价,确定,分级和系统综合分析的方法,并在此基础上,就危险点控制管理机制建设提出了一定的设想和建议。 相似文献
273.
本文就新的交通理论在环路建设中的运用情况 ,从快速路系统整体构思角度 ,对立交、出入口、交织和路网之间的关系进行了论述。文中分析了立交及出入口设计中存在的一些问题 ,并对快速路设计中值得借鉴或需深入研究的问题提出建议。 相似文献
274.
275.
应用有限元法研究车架结构的耐撞性 总被引:1,自引:0,他引:1
本文应用有限地对车辆正面碰撞过程中车架结构的大变形过程进行了计算机模拟。文中介绍了非线性有限元分析的基本方程,运用微机版DYNA3D软件,在合理简化的基础上,建立了车呆结构的有限元模型,通过计算机模拟,预测了车辆正碰过程中车架的变形位置和变形形式。针对存在的问题,对车架结构进行了改进设计。实车碰撞试验表明:改进后,车架结构的耐撞性有明显提高。 相似文献
276.
Nobuyoshi?FukuchiEmail author Changhong?Hu 《Journal of Marine Science and Technology》2004,8(4):177-184
In order to prevent the spread of marine compartment fires, it is necessary to understand the governing factors or characteristics of fire-spread phenomena. We present a pseudofield model approach to this problem. We first described a field model of turbulent heat convection based on a standard k – turbulence model. Two-dimensional numerical simulations of a two-linked compartment fire were carried out in order to predict the turbulent convection flow induced by the heat released from the fire. Then a more complicated fire-spread problem of multilinked compartment fires was analyzed by means of a zone model, in which the amounts of oxygen consumption and gas generation were solved by a gas-balance equations system. The effect of threshold conditions on fire propagation and the effect of the thickness of the heat insulation were investigated with numerical simulations. 相似文献
277.
针对公路隧道照明安全与节能之间的矛盾,特别是低交通量下“无车照明”的能耗浪费现象,采用微波车检实时探测交通流技术,提出一种在低交通量下实施“车来灯亮、车走灯暗”的“与车随行”智能控制技术。根据安全视距和人眼视觉反应驰豫时间要求,确定该控制技术下“车来灯亮”以及无来车时“车走灯暗”亮度水平和间隔时间规定。由该技术制定的应用方案用于实际工程,不仅可保证隧道照明安全性,更可在现有规范基础上进一步降低隧道照明能耗,实现低交通量下实时动态的智慧节能照明控制。根据实际工程照明效果测试,所采用的方案可降低隧道照明年运营费用达72%。该技术对提升隧道照明安全和节能水平,推动隧道提质升级和公路交通绿色低碳水平具有积极的促进作用。 相似文献
278.
279.
《铁道标准设计通讯》2013,(10)
针对目前160 km/h普速列车上线高速铁路运行的需求,进行技术方案可行性分析,从普速列车运行到动车组安全防护、过走防护进行研究。最后以兰新第二双线为例,提出适应实际工程的普速列车上线运行的技术方案。 相似文献
280.
The use of mobile phones while driving—one of the most common driver distractions—has been a significant research interest during the most recent decade. While there has been a considerable amount research and excellent reviews on how mobile phone distractions influence various aspects of driving performance, the mechanisms by which the interactions with mobile phone affect driver performance is relatively unexamined. As such, the aim of this study is to examine the mechanisms involved with mobile phone distractions such as conversing, texting, and reading and the driving task, and subsequent outcomes. A novel human-machine framework is proposed to isolate the components and various interactions associated with mobile phone distracted driving. The proposed framework specifies the impacts of mobile phone distraction as an inter-related system of outcomes such as speed selection, lane deviations and crashes; human-car controls such as steering control and brake pedal use and human-environment interactions such as visual scanning and navigation. Eleven literature-review/meta-analyses papers and 62 recent research articles from 2005 to 2015 are critically reviewed and synthesised following a systematic classification scheme derived from the human-machine system framework. The analysis shows that while many studies have attempted to measure system outcomes or driving performance, research on how drivers interactively manage in-vehicle secondary tasks and adapt their driving behaviour while distracted is scant. A systematic approach may bolster efforts to examine comprehensively the performance of distracted drivers and their impact over the transportation system by considering all system components and interactions of drivers with mobile phones and vehicles. The proposed human-machine framework not only contributes to the literature on mobile phone distraction and safety, but also assists in identifying the research needs and promising strategies for mitigating mobile phone-related safety issues. Technology based countermeasures that can provide real-time feedback or alerts to drivers based on eye/head movements in conjunction with vehicle dynamics should be an important research direction. 相似文献