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151.
152.
公路隧道通风中射流风机纵向最小间距研究 总被引:1,自引:1,他引:1
射流风机纵向最小间距的确定对于风机正常经济的运行起着十分重要的作用。通过对射流风机工作原理和隧道内流态进行分析,依据射流力学的有关原理找到了影响射流风机纵向最小间距的因素和计算方法。确定射流风机纵向最小间距的计算方法通过工程类比和CFD软件数值模拟验证,符合真实情况,可为今后射流风机纵向最小间距的确定提供指导。 相似文献
153.
山区公路选线关键问题探讨 总被引:1,自引:0,他引:1
以山西临汾某新建二级公路为例,总结一些经验和教训,提出几点山区公路选线需要注意的问题。 相似文献
154.
董岗 《交通运输系统工程与信息》2013,13(3):111-114
综合考虑托运人面对集卡运输服务和货运代理报价两大顾客选择因素,构建由多个竞争性集卡运营商和一个货运代理商组成的集装箱道路运输市场竞争模型,通过逆向归纳法求解博弈均衡并以上海港进行算例分析.研究发现:若集卡运营商采取提供增值服务策略,则一方面由于承担了增值服务所需成本而导致集卡运营商利润下降;另一方面,集装箱道路运输市场需求的满足程度不断提高,集卡运营商和货运代理商的整体利润也呈现增加趋势.因此,通过对集装箱运输链建立合理的利益分配机制,就能激励集卡运营商主动提供增值服务,从而改变当前集装箱道路运输市场在基本运输服务方面进行恶性价格竞争的局面,实现集卡运营商和集装箱运输链的健康发展. 相似文献
155.
研究波浪与淤泥海床相互作用导致的海床液化、体积冲刷和高浓度近底悬沙的层移输运问题。采用de Wit提出的液化判别条件及计算方法,结合连云港近岸波浪和淤泥力学特征,计算不同来波条件下淤泥质海床的液化深度;进一步考虑浑水中含沙量对流速的折减影响,计算液化层运移速度分布。计算结果表明,大浪条件下,淤泥质海床可能有较大的液化深度,但层移厚度不大。由于层移含沙量较高,在近底水流驱动下仍能形成较大的输沙率和一定规模的大风天航道骤淤。有关研究成果为海床稳定性分析和输沙计算提供了新的思路和方法。 相似文献
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157.
Public Transport (PT) systems rely more and more on online information extracted from both operator’s intelligent equipment and user’s smartphone applications. This allows for a better fit between supply and demand of the multimodal PT system, especially through the use of PT real-time control actions/tactics. In doing so there is also an opportunity to consider environmental-related issues to approach energy saving and reduced pollution. This study investigates and analyses the benefits of using real-time PT operational tactics in reducing the undesirable environmental impacts. A tactic-based control (TBC) optimization model is used to minimize total passenger travel time and maximize direct transfers (without waiting). The model consists of a control policy built upon a combination of three tactics: holding, skip-stops, and boarding limit. The environmental-related measure is the global warming potential (GWP) using the life cycle assessment technique. The methodology developed is applied to a real life case study in Auckland, New Zealand. Results show that TBC could reduce the GWP by means of reduction of total passenger travel times and vehicle travel cycle time. That is, the TBC model results in a 5.6% reduction in total GWP per day compared with an existing no-tactic scenario. This study supports the use of real-time control actions to maintain a reliable PT service, reducing greenhouse gas emissions and subsequently moving towards greener PT systems. 相似文献
158.
Transport models are used to evaluate new infrastructure and public transport services, varied levels of demand, and new ideas for demand management. Exploring these proposals virtually is easier than implementation and testing in situ. However, existing models are based around traditional forms of transportation. As part of a feature analysis using a case study approach, three different simulation packages (a simple custom-developed package, traffic microsimulation, and agent-based simulation) are used to develop and demonstrate simulations of demand-responsive transportation (DRT) and analyze the advantages and disadvantages of each simulation approach for evaluating DRT. While the simulations display some relational replication (meaning they produce similar relational patterns with respect to certain variables), they do not show distributional replication (that is, the value of the results is not statistically similar), meaning that under- or over-estimation of predicted travel could occur. Recommendations for the application of each modeling approach are made. 相似文献
159.
Anny-del-Mar Agamez-Arias 《运输评论》2017,37(6):782-807
There has been significant growth in research on intermodal transport in freight distribution since the 1990s. Differentiating itself from previously published literature reviews, this paper evaluates the current state of this research using Systematic Literature Review methodology. The complementary aims are: (a) to identify the research lines developed and to propose a criterion for classifying the literature, and (b) to discuss the empirical evidence that identifies existing interrelationships. The analysis has enabled three main lines of research to be identified. The first research line, basic principles of intermodal transport, groups together works related to the definition of intermodal transport and the results obtained using this transportation system. The second, improvements to the way that intermodal transport systems work, frames elements and variables that impact intermodal transport systems’ logistics efficiency, such as quality of service, information and communication systems, and freight planning and linkages among system operators to provide an adequate service. Finally, the third line, intermodal transport system modelling, identifies the main variables used to optimise these transport systems, the different focuses and approaches used in modelling, and the advantages and disadvantages of each focus. These research lines take in more specific sublines that incorporate articles that develop related research questions. Lastly, the discussion of the content of each of these research sublines enables us to identify gaps in the literature and comment on directions for future research. 相似文献
160.
Michiel C. J. Bliemer Mark P. H. Raadsen Luuk J. N. Brederode Michael G. H. Bell Luc J. J. Wismans Mike J. Smith 《运输评论》2017,37(1):56-78
This paper presents a review and classification of traffic assignment models for strategic transport planning purposes by using concepts analogous to genetics in biology. Traffic assignment models share the same theoretical framework (DNA), but differ in capability (genes). We argue that all traffic assignment models can be described by three genes. The first gene determines the spatial capability (unrestricted, capacity restrained, capacity constrained, and capacity and storage constrained) described by four spatial assumptions (shape of the fundamental diagram, capacity constraints, storage constraints, and turn flow restrictions). The second gene determines the temporal capability (static, semi-dynamic, and dynamic) described by three temporal assumptions (wave speeds, vehicle propagation speeds, and residual traffic transfer). The third gene determines the behavioural capability (all-or-nothing, one shot, and equilibrium) described by two behavioural assumptions (decision-making and travel time consideration). This classification provides a deeper understanding of the often implicit assumptions made in traffic assignment models described in the literature. It further allows for comparing different models in terms of functionality, and paves the way for developing novel traffic assignment models. 相似文献