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141.
Based on the Sutong GIL utility tunnel project, which is constructed by the shield machine under the river, and as for the overloading problem at the river bank slope during operating period, the refined threedimensional finite element model was established to study the deformation and cracking characteristics of the tunnel segment structure under different forms of overloading. The evolution laws of section convergence, joint opening and structural stress were analyzed, and the structure damage mechanisms were revealed under conditions of large area loading and local loading. The surface-surcharge control standard was proposed. For the big diameter shield tunneling crossing the silty clay, the research results show that: (1) the deformation failure process is divided into three stages under large area loading condition, taking the design load and compressive yield of rebars inside haunch as the critical points respectively. The first stage is characterized by the elastic stress, the second stage is in plastic state with fracture, and the third stage is accelerating deformation and instability stage. The vertical convergence is 110.5 mm with no opening of joints when rebars are yielded; (2)the deformation failure process under local loading condition is also divided into elasticity, plasticity and instability stages, taking the design load and tensile yield of rebars outside haunch as the critical points respectively. The vertical convergence is 152.6 mm with joint opening of 4.36 mm; (3) the early-warning values of additional stress on the ground under conditions of large area loading and local loading are 110 kPa and 70 kPa respectively. © 2018, Editorial Office of "Modern Tunnelling Technology". All right reserved. 相似文献
142.
143.
A new approach for improving the performance of freight train timetabling for single-track railways is proposed. Using the idea of a fixed-block signaling system, we develop a matrix representation to express the occupation of inter- and intra-station tracks by trains illustrating the train blocking time diagram in its entirety. Train departure times, dwell times, and unnecessary stopping are adjusted to reduce average train travel time and single train travel time. Conflicts between successive stations and within stations are identified and solved. A fuzzy logic system is further used to adjust the range of train departure times and checks are made to determine whether dwell times and time intervals can be adjusted for passenger and freight trains at congested stations to minimize train waiting times. By combining manual scheduling expertise with the fuzzy inference method, timetable efficiency is significantly improved and becomes more flexible. 相似文献
144.
文章针对高速铁路交叉隧道的分类和组合型式进行划分,分别阐述了其存在的关键动力学问题,并通过广泛的相关文献调研,总结了高速铁路交叉隧道在列车振动、空气动力效应以及地震震动等方面的研究现状与不足;指出了今后的研究重点:(1)考虑隧道结构、地层参数以及邻近交叉隧道的结构特征,建立高速列车-轨道-交叉隧道为一体的三维精细化分析模型,并用其开展定量安全评价;(2)开展车隧气动结构效应研究,提出保障隧道结构安全的工程措施,进而建立考虑列车气动荷载与其他动力荷载叠加作用下交叉隧道的安全性评估方法;(3)进行全方位的高速铁路交叉隧道地震动力响应研究,揭示交叉隧道结构本身的动力特性,提出相适应的抗震设计方法;(4)引入混凝土和岩石动力损伤本构关系,建立能考虑材料动态损伤的计算模型,以对结构在长期反复动力作用下的动力响应特性及其累积损伤效应开展深入研究。 相似文献
145.
Katharina ParryMartin L. Hazelton 《Transportation Research Part B: Methodological》2012,46(1):175-188
Estimation of origin-destination (OD) matrices from link count data is a challenging problem because of the highly indeterminate relationship between the observations and the latent route flows. Conversely, estimation is straightforward if we observe the path taken by each vehicle. We consider an intermediate problem of increasing practical importance, in which link count data is supplemented by routing information for a fraction of vehicles on the network. We develop a statistical model for these combined data sources and derive some tractable normal approximations thereof. We examine likelihood-based inference for these normal models under the assumption that the probability of vehicle tracking is known. We show that the likelihood theory can be non-standard because of boundary effects, and provide conditions under which such irregular behaviour will be observed in practice. For regular cases we outline connections with existing generalised least squares methods. We then consider estimation of OD matrices under estimated and/or misspecified models for the probability of vehicle tracking. Theoretical developments are complemented by simulation experiments and an illustrative example using a section of road network from the English city of Leicester. 相似文献
146.
Julie Paquette François Bellavance Jean-François Cordeau Gilbert Laporte 《Transportation》2012,39(3):539-564
In many countries, dial-a-ride services are provided by public authorities to elderly and handicapped people who cannot use
regular transit. Cost minimization is key to running these services, but one can observe a growing interest in quality measurement
and improvement. A first step in improving quality is to define a quality measurement scale specific to dial-a-ride services.
A second step is to incorporate quality measurements in mathematical models that serve as a basis for optimization algorithms.
To this end, an extensive survey of dial-a-ride users was conducted in Longueuil, the largest suburb of Montreal, Canada.
This paper describes the steps of the survey and presents its main conclusions: (1) 56 attributes were identified based on
interviews, (2) the questionnaire developed has proved to be reliable and valid, (3) an exploratory factor analysis allowed
us to determine 13 dimensions of quality in dial-a-ride services, (4) the most important criteria for users were identified,
and (5) population segmenting variables by which subgroups of users can be categorized were also determined. Managerial implications
of our results are also discussed. 相似文献
147.
Bi Yu Chen William H.K. Lam Agachai SumaleeQingquan Li Zhi-Chun Li 《Transportation Research Part A: Policy and Practice》2012,46(3):501-516
To assess the vulnerability of congested road networks, the commonly used full network scan approach is to evaluate all possible scenarios of link closure using a form of traffic assignment. This approach can be computationally burdensome and may not be viable for identifying the most critical links in large-scale networks. In this study, an “impact area” vulnerability analysis approach is proposed to evaluate the consequences of a link closure within its impact area instead of the whole network. The proposed approach can significantly reduce the search space for determining the most critical links in large-scale networks. In addition, a new vulnerability index is introduced to examine properly the consequences of a link closure. The effects of demand uncertainty and heterogeneous travellers’ risk-taking behaviour are explicitly considered. Numerical results for two different road networks show that in practice the proposed approach is more efficient than traditional full scan approach for identifying the same set of critical links. Numerical results also demonstrate that both stochastic demand and travellers’ risk-taking behaviour have significant impacts on network vulnerability analysis, especially under high network congestion and large demand variations. Ignoring their impacts can underestimate the consequences of link closures and misidentify the most critical links. 相似文献
148.
The robustness of questionnaire results to various forms of bias are explored in the context of a dual-mode (web and hardcopy)
survey of employers’ anticipations of levels of employee commuting and business travel activity under a range of future ICT
scenarios. The questionnaire incorporated several innovative features which, together with the dual-mode format, allowed an
unusually wide range of analyses. For example: the robustness of respondents’ opinions was tested by examining the effect
of incorporating alternative versions of a briefing text, one being very positive and one very negative, about the role of
ICT; instrument bias was identified via detailed comparison of the results from the two versions of the questionnaire; and
the impact of exogenous factors which are often ignored or taken as constant was assessed via special supplementary questions.
Analysis showed that the robustness of opinions and expectations varied and was influenced by respondent characteristics,
and that results from the two versions of the questionnaire differed significantly. It is concluded that opinions and expectations
are less robust, and questionnaire results are more subject to bias and myopic interpretation, than is generally recognised
and that web-based surveys seem particularly vulnerable to sampling bias. Methods are suggested for measuring robustness,
for reducing bias and for validating and contextualising results. The use of contrasting briefing texts is recommended as
a means of establishing the robustness of opinions and expectations while supplementary questions are recommended for validating
and contextualising SP and SE exercises.
Peter Bonsall Professor of Transport Planning at the Institute for Transport Studies, University of Leeds. His research interests include: use of innovative data sources, microsimulation, multi-criteria appraisal of policy interventions, travellers’ perception of modal attributes, their ability to cope with uncertainty and complexity and their response to new information and charges. Jeremy Shires Senior Research Fellow at the Institute for Transport Studies, University of Leeds. His research interests include behavioural modelling, the impact of “soft factors” on travel, stated preference design and public transport demand modelling. 相似文献
Peter BonsallEmail: |
Peter Bonsall Professor of Transport Planning at the Institute for Transport Studies, University of Leeds. His research interests include: use of innovative data sources, microsimulation, multi-criteria appraisal of policy interventions, travellers’ perception of modal attributes, their ability to cope with uncertainty and complexity and their response to new information and charges. Jeremy Shires Senior Research Fellow at the Institute for Transport Studies, University of Leeds. His research interests include behavioural modelling, the impact of “soft factors” on travel, stated preference design and public transport demand modelling. 相似文献
149.
This paper looks at the first and second best jointly optimal toll and road capacity investment problems from both policy
and technical oriented perspectives. On the technical side, the paper investigates the applicability of the constraint cutting
algorithm for solving the second best problem under elastic demand which is formulated as a bilevel programming problem. The
approach is shown to perform well despite several problems encountered by our previous work in Shepherd and Sumalee (Netw.
Spat. Econ., 4(2): 161–179, 2004). The paper then applies the algorithm to a small sized network to investigate the policy implications of the first and second
best cases. This policy analysis demonstrates that the joint first best structure is to invest in the most direct routes while
reducing capacities elsewhere. Whilst unrealistic this acts as a useful benchmark. The results also show that certain second
best policies can achieve a high proportion of the first best benefits while in general generating a revenue surplus. We also
show that unless costs of capacity are known to be low then second best tolls will be affected and so should be analysed in
conjunction with investments in the network.
Andrew Koh Prior to joining the Institute for Transport Studies in December 2005, Andrew was employed for number of years as a consultant in highway assignment modelling. He is an economist with wide ranging research interests in transport economics as well as evolutionary computation heuristics such as genetic algorithms, particle swarm optimisation and differential evolution. Simon Shepherd At the Institute for Transport Studies since 1989, he gained his doctorate in 1994 applying state-space methods to the problem of traffic responsive signal control in over-saturated conditions. His expertise lies in modelling and policy optimisation ranging from detailed simulation models through assignment to strategic land use transport models. Recently he has focussed on optimisation of road user charging schemes and is currently working on optimal cordon design and system dynamics approaches to strategic modelling. Agachai Sumalee Agachai is currently an Assistant Professor at Department of Civil and Structural Engineering, Hong Kong Polytechnic University (). He obtained a Ph.D degree with the thesis entitled “Optimal Road Pricing Scheme Design” at Leeds University in 2004. His research areas cover transport network modeling and optimization, stochastic network modeling, network reliability analysis, and road pricing. Agachai is currently an associate editor of Networks and Spatial Economics. 相似文献
Agachai SumaleeEmail: |
Andrew Koh Prior to joining the Institute for Transport Studies in December 2005, Andrew was employed for number of years as a consultant in highway assignment modelling. He is an economist with wide ranging research interests in transport economics as well as evolutionary computation heuristics such as genetic algorithms, particle swarm optimisation and differential evolution. Simon Shepherd At the Institute for Transport Studies since 1989, he gained his doctorate in 1994 applying state-space methods to the problem of traffic responsive signal control in over-saturated conditions. His expertise lies in modelling and policy optimisation ranging from detailed simulation models through assignment to strategic land use transport models. Recently he has focussed on optimisation of road user charging schemes and is currently working on optimal cordon design and system dynamics approaches to strategic modelling. Agachai Sumalee Agachai is currently an Assistant Professor at Department of Civil and Structural Engineering, Hong Kong Polytechnic University (). He obtained a Ph.D degree with the thesis entitled “Optimal Road Pricing Scheme Design” at Leeds University in 2004. His research areas cover transport network modeling and optimization, stochastic network modeling, network reliability analysis, and road pricing. Agachai is currently an associate editor of Networks and Spatial Economics. 相似文献
150.
Dongjoo Park Laurence R. Rilett Byron J. Gajewski Clifford H. Spiegelman Changho Choi 《Transportation》2009,36(1):77-95
With the recent increase in the deployment of ITS technologies in urban areas throughout the world, traffic management centers
have the ability to obtain and archive large amounts of data on the traffic system. These data can be used to estimate current
conditions and predict future conditions on the roadway network. A general solution methodology for identifying the optimal
aggregation interval sizes for four scenarios is proposed in this article: (1) link travel time estimation, (2) corridor/route
travel time estimation, (3) link travel time forecasting, and (4) corridor/route travel time forecasting. The methodology
explicitly considers traffic dynamics and frequency of observations. A formulation based on mean square error (MSE) is developed
for each of the scenarios and interpreted from a traffic flow perspective. The methodology for estimating the optimal aggregation
size is based on (1) the tradeoff between the estimated mean square error of prediction and the variance of the predictor,
(2) the differences between estimation and forecasting, and (3) the direct consideration of the correlation between link travel
time for corridor/route estimation and forecasting. The proposed methods are demonstrated using travel time data from Houston,
Texas, that were collected as part of the automatic vehicle identification (AVI) system of the Houston Transtar system. It
was found that the optimal aggregation size is a function of the application and traffic condition.
相似文献
Changho ChoiEmail: |