976 resultados para Freight and freightage.


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Mode of access: Internet.

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Transportation Department, Office of Transportation Systems Analysis and Information, Washington, D.C.

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The Train Timetabling Problem (TTP) has been widely studied for freight and passenger rail systems. A lesser effort has been devoted to the study of high-speed rail systems. A modeling issue that has to be addressed is to model departure time choice of passengers on railway services. Passengers who use these systems attempt to travel at predetermined hours due to their daily life necessities (e.g., commuter trips). We incorporate all these features into TTP focusing on high-speed railway systems. We propose a Rail Scheduling and Rolling Stock (RSch-RS) model for timetable planning of high-speed railway systems. This model is composed of two essential elements: i) an infrastructure model for representing the railway network: it includes capacity constraints of the rail network and the Rolling-Stock constraints; and ii) a demand model that defines how the passengers choose the departure time. The resulting model is a mixed-integer programming model which objective function attempts to maximize the profit for the rail operator

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For decades, the development, construction, track ownership and operation of mainline railways in China have been overseen by the state-owned authorities. From mid-90’s, the mainline railway management has undergone revamps to revitalize the intra-modal competitiveness of railway transportation and to steer it toward the direction of modern business management. With the rapid economic growth; the large-scale expansion of the mainline network; and the increasing expectation on service, the mainline railways in China require further restructuring. Inevitably, a sustainable approach to ensure business viability and service quality in the next few decades is an imminent challenge. This paper reviews the operations and management of mainline railway in China and discusses the possibility of introducing open access market. Drawing the experiences on railway open markets outside China, the discussions include the need and feasibility of railway open market in China; and the suitability and limitations of different models. Particular considerations will be given to the unique characteristics of the mainline railways in China, where the developments across neighbouring regions are unbalanced; freight and passenger services are of similar demands; and the high-speed train operations are operated with low-speed ones in mixed traffic.

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Fiber Bragg grating (FBG) sensor technology has been attracting substantial industrial interests for the last decade. FBG sensors have seen increasing acceptance and widespread use for structural sensing and health monitoring applications in composites, civil engineering, aerospace, marine, oil & gas, and smart structures. One transportation system that has been benefitted tremendously from this technology is railways, where it is of the utmost importance to understand the structural and operating conditions of rails as well as that of freight and passenger service cars to ensure safe and reliable operation. Fiberoptic sensors, mostly in the form of FBGs, offer various important characteristics, such as EMI/RFI immunity, multiplexing capability, and very long-range interrogation (up to 230 km between FBGs and measurement unit), over the conventional electrical sensors for the distinctive operational conditions in railways. FBG sensors are unique from other types of fiber-optic sensors as the measured information is wavelength-encoded, which provides self-referencing and renders their signals less susceptible to intensity fluctuations. In addition, FBGs are reflective sensors that can be interrogated from either end, providing redundancy to FBG sensing networks. These two unique features are particularly important for the railway industry where safe and reliable operations are the major concerns. Furthermore, FBGs are very versatile and transducers based on FBGs can be designed to measure a wide range of parameters such as acceleration and inclination. Consequently, a single interrogator can deal with a large number of FBG sensors to measure a multitude of parameters at different locations that spans over a large area.

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Railway is one of the most important, reliable and widely used means of transportation, carrying freight, passengers, minerals, grains, etc. Thus, research on railway tracks is extremely important for the development of railway engineering and technologies. The safe operation of a railway track is based on the railway track structure that includes rails, fasteners, pads, sleepers, ballast, subballast and formation. Sleepers are very important components of the entire structure and may be made of timber, concrete, steel or synthetic materials. Concrete sleepers were first installed around the middle of last century and currently are installed in great numbers around the world. Consequently, the design of concrete sleepers has a direct impact on the safe operation of railways. The "permissible stress" method is currently most commonly used to design sleepers. However, the permissible stress principle does not consider the ultimate strength of materials, probabilities of actual loads, and the risks associated with failure, all of which could lead to the conclusion of cost-ineffectiveness and over design of current prestressed concrete sleepers. Recently the limit states design method, which appeared in the last century and has been already applied in the design of buildings, bridges, etc, is proposed as a better method for the design of prestressed concrete sleepers. The limit states design has significant advantages compared to the permissible stress design, such as the utilisation of the full strength of the member, and a rational analysis of the probabilities related to sleeper strength and applied loads. This research aims to apply the ultimate limit states design to the prestressed concrete sleeper, namely to obtain the load factors of both static and dynamic loads for the ultimate limit states design equations. However, the sleepers in rail tracks require different safety levels for different types of tracks, which mean the different types of tracks have different load factors of limit states design equations. Therefore, the core tasks of this research are to find the load factors of the static component and dynamic component of loads on track and the strength reduction factor of the sleeper bending strength for the ultimate limit states design equations for four main types of tracks, i.e., heavy haul, freight, medium speed passenger and high speed passenger tracks. To find those factors, the multiple samples of static loads, dynamic loads and their distributions are needed. In the four types of tracks, the heavy haul track has the measured data from Braeside Line (A heavy haul line in Central Queensland), and the distributions of both static and dynamic loads can be found from these data. The other three types of tracks have no measured data from sites and the experimental data are hardly available. In order to generate the data samples and obtain their distributions, the computer based simulations were employed and assumed the wheel-track impacts as induced by different sizes of wheel flats. A valid simulation package named DTrack was firstly employed to generate the dynamic loads for the freight and medium speed passenger tracks. However, DTrack is only valid for the tracks which carry low or medium speed vehicles. Therefore, a 3-D finite element (FE) model was then established for the wheel-track impact analysis of the high speed track. This FE model has been validated by comparing its simulation results with the DTrack simulation results, and with the results from traditional theoretical calculations based on the case of heavy haul track. Furthermore, the dynamic load data of the high speed track were obtained from the FE model and the distributions of both static and dynamic loads were extracted accordingly. All derived distributions of loads were fitted by appropriate functions. Through extrapolating those distributions, the important parameters of distributions for the static load induced sleeper bending moment and the extreme wheel-rail impact force induced sleeper dynamic bending moments and finally, the load factors, were obtained. Eventually, the load factors were obtained by the limit states design calibration based on reliability analyses with the derived distributions. After that, a sensitivity analysis was performed and the reliability of the achieved limit states design equations was confirmed. It has been found that the limit states design can be effectively applied to railway concrete sleepers. This research significantly contributes to railway engineering and the track safety area. It helps to decrease the failure and risks of track structure and accidents; better determines the load range for existing sleepers in track; better rates the strength of concrete sleepers to support bigger impact and loads on railway track; increases the reliability of the concrete sleepers and hugely saves investments on railway industries. Based on this research, many other bodies of research can be promoted in the future. Firstly, it has been found that the 3-D FE model is suitable for the study of track loadings and track structure vibrations. Secondly, the equations for serviceability and damageability limit states can be developed based on the concepts of limit states design equations of concrete sleepers obtained in this research, which are for the ultimate limit states.

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Hazard site surveillance is a system for post-border detection of new pest incursions, targeting sites that are considered potentially at high risk of such introductions. Globalisation, increased volumes of containerised freight and competition for space at domestic ports means that goods are increasingly being first opened at premises some distance from the port of entry, thus dispersing risk away from the main inspection point. Hazard site surveillance acts as a backstop to border control to ensure that new incursions are detected sufficiently early to allow the full range of management options, including eradication and containment, to be considered. This is particularly important for some of the more cryptic forest pests whose presence in a forest often is not discovered until populations are already high and the pest is well established. General requirements for a hazard site surveillance program are discussed using a program developed in Brisbane, Australia, in 2006 as a case study. Some early results from the Brisbane program are presented. In total 67 species and 5757 individuals of wood-boring beetles have been trapped and identified during the program to date. Scolytines are the most abundant taxa, making up 83% of the catch. No new exotics have been trapped but 19 of the species and 60% of all specimens caught are exotics that are already established in Australia.

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A importância do transporte aquaviário é dada pelos diferentes modos de navegação, podendo ser por meio fluvial, lacustre e navegação marítima. Para a logística e economia brasileira, este é um modal extremamente importante, haja vista a pluralidade de transporte pelo fato das relações de exportação e importação ocorrerem especialmente por este tipo de modal. No Brasil há cinco modalidades de transportes: o aquaviário, o rodoviário, o aeroviário, o ferroviário e o dutoviário. Serão descritas nos próximos capítulos as características de cada tipo de modal, especificamente dos modais rodoviário e aquaviário, em especial a cabotagem, objeto principal deste estudo. O objetivo deste trabalho é analisar a atual situação do transporte marítimo no Brasil, especialmente a cabotagem. Através de três parâmetros - custos, tempo de viagem e segurança -, procurar-se-á avaliar o nível de qualidade do modal, visando à identificação da existência de pontos críticos e sugerir possíveis soluções baseadas na logística e na tecnologia, ferramentas fundamentais para a busca da eficácia na redução dos custos de transportes, contribuindo para um melhor resultado dos custos logísticos finais. Para uma reflexão sobre o transporte nacional de mercadorias por via marítima através da cabotagem, serão apresentadas as características principais do transporte marítimo, com suas vantagens e desvantagens e sua importância para a economia brasileira. A crítica envolverá a questão do frete marítimo e suas interrelações, discutindo variáveis que compõem o preço do frete. Ferramentas tecnológicas fundamentais para a eficácia das operações também serão abordadas durante este trabalho. Serão descritas as características dos portos brasileiros, em especial as dos portos do Rio Grande (RS), Santos (SP), Suape (PE) e Rio de Janeiro (RJ), a distancia entre o porto do Rio de Janeiro (RJ) e os demais, bem como o tempo de viagem relacionado entre eles. Explorado pela União diretamente ou mediante concessão (precedida de licitação), o porto organizado, construído e aparelhado para atender necessidades da navegação e da movimentação é administrado pelo Conselho de Autoridade Portuária - CAP -, contando ainda com a figura do OGMO Orgão Gestor de Mão de Obra que controla a força de trabalho nas áreas portuárias, organismos instituídos pela Lei n. 8.630, de 25 de fevereiro de 1993, chamada da Lei de Modernização dos Portos. Por fim serão analisadas as variáveis custo, tempo de viagem e segurança no intuito de contribuir para uma reflexão para o crescimento do transporte de cabotagem no Brasil, procurando identificar um ganho substancial na economia brasileira, através da economia de escala, observados todos os parâmetros necessários para o bom desenvolvimento da logística de transporte de mercadorias por via marítima. Este trabalho abordará a Gestão do Transporte Marítimo de Cargas no Brasil, em especial a cabotagem.

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Environmental concerns relating to gaseous emissions from transport have led to growth in the use of compressed natural gas vehicles worldwide with an estimated 13 million Natural Gas Vehicles (NGVs) currently in operation. Across Europe, many countries are replacing traditional diesel oil in captive fleets such as buses used for public transport and heavy and light goods vehicles used for freight and logistics with CNG vehicles. Initially this was to reduce localised air pollution in urban environments. However, with the need to reduce greenhouse gas emissions CNG is seen as a cleaner more energy efficient and environmental friendly alternative. This paper briefly examines the growth of NGVs in Europe and worldwide. Then a case study on CNG the introduction in Spain and Italy is presented. As part of the case study, policy interventions are examined. Finally, a statistical analysis of private and public refuelling stations in both countries is also provided. CNG can also be mixed with biogas. This study and the role of CNG is relevant because of the existing European Union Directive 2009/28/EC target, requiring that 10% of transport energy come from renewable sources, not alone biofuels such as biogas. CNG offers another alternative transport fuel.

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The origins of Upper Lakes Shipping can be traced back to 1931, when Gordon Leitch, the general manager of Toronto elevators, sent Captain Bruce Angus to scout for potential ships that could be used to transport grain. The ship Sarnian was purchased as a result. It soon became apparent that more ships would be needed by the business, and Leitch subsequently partnered with James Norris of the Norris Grain Company, in order to transport their products more economically. The Upper Lakes and St. Lawrence Transportation Company (which later become known as Upper Lakes Shipping), was incorporated in 1932. In 1956, the company bought Port Weller Dry docks. At this point, the company began constructing new vessels designed to meet specific freight and classification needs.

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Receipt from Jas. D. Tait, St. Catharines for various items such as cab hire, duty on freight and beadle for flowers, Jan. 1888.

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Teniendo en cuenta la importancia de la infraestructura de transporte en el desarrollo económico, ya que de esta depende el intercambio de bienes y servicios dentro y fuera del país, y dado el entorno de globalización de mercados, se hace relevante hacer un diagnóstico de la evolución de la inversión en infraestructura de transportes en Colombia durante los últimos años. El análisis de la actividad de transporte dentro del Producto Interno Bruto Nacional a lo largo del periodo 2002 - 2010, muestra un aporte importante al mismo, confirmando así la relevancia que tiene el sector de transporte en la economía del país. El modo de transporte que cobra más importancia es el transporte por carreteras pues es el medio más utilizado en Colombia, tanto para mercancías como para pasajeros, por lo cual se enfatiza en la inversión y evolución de la infraestructura vial. En este contexto se presenta un estudio de la legislación del sector, los principales proyectos ejecutados durante la última década, los objetivos propuestos por cada uno de estos y el estado actual de los mismos.

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El perfil logístico del sector hidrocarburos parte de una caracterización mundial y nacional del mismo en el que se resalta la posición del país respecto a la región en cuanto a la participación en consumo y producción de petróleo, además de contar con un análisis del comportamiento de los principales indicadores como lo son los históricos del precio del barril de petróleo, producción diaria, participación en el PIB, Inversión Extranjera Directa o IED y Balanza Comercial. Luego se presentan las principales problemáticas del sector en cuanto a medio ambiente, infraestructura, conflicto armado, disminución de reservas, alternativas energéticas, etc., que presentan un obstáculo para el desarrollo y competitividad del sector. A continuación se encuentra la información asociada con la cadena de suministro de los hidrocarburos, se caracteriza el producto y se trata eslabón por eslabón comenzando por los proveedores, pasando por producción, almacenamiento, distribución, transporte clientes, logística inversa y finalizando con un mapa de agregación de valor o VSM por sus siglas en inglés. A partir de esto se analiza el estado de productividad y competitividad del sector; se dan a conocer las principales asociaciones y agremiaciones del mismo, se realiza un análisis especial a la situación de fletes y transporte. Todo con el fin de dar a conocer una fotografía del estado actual de los hidrocarburos en Colombia.