969 resultados para Intermodal transportation.
Resumo:
Firm location patterns emerge as a consequence of multiple factors, including firm considerations, labor force availability, market opportunities, and transportation costs. Many of these factors are influenced by changes in accessibility wrought by new transportation infrastructure. In this paper we use spatial statistical techniques and a micro-level data base to evaluate the effects of Madrid?s metro line 12 (known as Metrosur) expansion on business location patterns. The case study is the municipality of Alcorcon, which is served by the new metro line since 2003. Specifically, we explore the location patterns by different industry sectors, to evaluate if the new metro line has encouraged the emergence of a ?Metrosur spatial economy?. Our results indicate that the pattern of economic activity location is related to urban accessibility and that agglomeration, through economies of scale, also plays an important role. The results presented in this paper provide evidence useful to inform efficient transportation, urban, and regional economic planning.
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An integrated approach composed of a random utility-based multiregional input-output model and a road transport network model was developed for evaluating the application of a fee to heavy-goods vehicles (HGVs) in Spain. For this purpose, a distance-based charge scenario (in euros per vehicle kilometer) for HGVs was evaluated for a selected motorway network in Spain. Although the aim of this charging policy was to increase the efficiency of transport, the approach strongly identified direct and indirect impacts on the regional economy. Estimates of the magnitude and extent of indirect effects on aggregated macroeconomic indicators (employment and gross domestic product) are provided. The macroeconomic effects of the charging policy were found to be positive for some regions and negative for other regions.
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In this demo paper we describe an iOS-based application that allows visualizing live bus transport data in Madrid from static and streaming RDF endpoints, reusing the Web services provided by the bus transport authority in the city and wrapping them using SPARQLStream
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Transportation modes produce many external costs such as congestion, accidents, and environmental impacts (pollution, noise and so on). From the microeconomic theory it is well known that in order to maximize social welfare, transportation modes should internalize the marginal costs they produce. Allocative efficiency is achieved when all transportation modes are priced at their social marginal cost. The objective of this research is to evaluate to what extent different passenger transport modes internalize their social marginal costs. This analysis is important since it affects the competitiveness of the different transport modes for a given OD pair. The case study analyzed is the corridor Madrid-Barcelona in Spain and the different transport modes have been considered (cars, buses, high-speed train and air). The research calculates the marginal social cost per user for each transportation mode, and it compares it with the average fare—allowing for the effect of discriminatory taxes—currently paid by the users. The external costs are calculated according to the guidelines established by the European Union. The gap between the marginal social cost and the price paid by users will provide the extra cost per passenger that each transport mode should have to pay for internalizing the external cost it produces. The research shows that external costs already produced by road and air transport modes are much higher than those produced by rail. However, the results show that road transport already internalizes every external costs it produces because users pay high fuel taxes. In other words, although rail transportation produces lower external costs, road transportation pays more than it should on the basis of the social marginal costs. The results of this work might be of help for Europ ean policy actions to be undertaken in the future.
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This paper describes a theoretical model based primarily on transaction costs, for comparing the various tendering mechanisms used for transportation Public-Private Partnership (PPP) projects. In particular, the model contrasts negotiated procedures with the open procedure, as defined by the current European Union legislation on public tendering. The model includes both ex ante transaction costs (borne during the tendering stage) and ex post transaction costs (such as enforcement costs, re-negotiation costs, and costs arising from litigation between partners), explaining the trade-off between them. Generally speaking, it is assumed that the open procedure implies lower transaction costs ex ante, while the negotiated procedure reduces the probability of the appearance of new contingencies not foreseen in the contract, hence diminishing the expected value of transaction costs ex post. Therefore, the balance between ex ante and ex post transaction costs is the main criterion for deciding whether the open or negotiated procedure would be optimal. Notwithstanding, empirical evidence currently exists only on ex ante transaction costs in transportation infrastructure projects. This evidence has shown a relevant difference between the two procedures as far as ex ante costs are concerned, favouring the open procedure. The model developed in this paper also demonstrates that a larger degree of complexity in a contract does not unequivocally favour the use of a negotiated procedure. Only in those cases dealing with very innovative projects, where important dimensions of the quality of the asset or service are not verifiable, may we observe an advantage in favour of the negotiated procedure. The bottom line is that we find it difficult to justify the employment of negotiated procedures in most transportation PPP contracts, especially in the field of roads. Nevertheless, the field remains open for future empirical work and research on the levels of transaction costs borne ex post in PPP contracts, as well as on the probabilities of such costs appearing under any of the procurement procedures.
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In this work, we present a novel interferometer based on liquid crystal and photonic crystal fiber technology. The objective of this project is the development of a tunable (switchable) modal (Mach-Zehnder) interferometer for optical communications or sensing. This interferometer has been manufactured splicing a short portion (between 15 and 30 mm) of photonic crystal fiber with two single mode fiber pigtails. The study shows a high sensitivity of the interferometer to the polarization of the launching light.
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A metrópole de São Paulo é a maior e mais importante aglomeração urbana do Brasil e está entre as dez maiores áreas urbanas do mundo. No entanto, a forma como acessibilidade espacial ocorre gera um fardo para a população e para a atividade econômica. Este trabalho pretende contribuir para a discussão de como melhorar a acessibilidade na Região Metropolitana de São Paulo estudando as características e impactos de estruturas espaciais urbana, analisando criticamente a estrutura espacial da metrópole e proporcionando sugestões de melhorias a fim de proporcionar uma mobilidade mais sustentável. Os procedimentos metodológicos incluem uma revisão bibliográfica sobre o tema e uma caracterização da estrutura espacial da Região Metropolitana de São Paulo, considerando a alocação de população, alocação de empregos e os padrões de deslocamento para os modais individual, coletivo e não motorizado. Apresentamos um relato da evolução recente, com dados das pesquisas de origem e destino realizadas pelo Metrô em 1997 e 2007 e da pesquisa de mobilidade de 2012. Também realizamos uma caracterização mais aprofundada com os dados da pesquisa de 2007. As cidades se desenvolvem com base no trade-off entre proximidade e mobilidade: a fim de maximizar as possibilidades de interação, as pessoas e as empresas tendem a se localizar onde o deslocamento necessário para executar essas interações requer menos custos financeiros, perda de tempo e desconforto. Esse processo molda a alocação espacial de atividades, que define parcialmente os hábitos de transporte. A estrutura espacial urbana pode ser caracterizada por sua escala (padrões compacto ou disperso), arranjo de densidades (padrão disperso ou clusterizado) e arranjo de atividade (padrão monocêntrico ou policêntrico). Estruturas espaciais com padrão mais compacto apresentam menores distâncias de viagem, reduzindo o impacto ambiental das viagens e viabilizando o transporte não motorizado e coletivo, e levam a um uso mais eficiente da terra, menor custo de infraestrutura e maior equidade no acesso ao transporte. Já estruturas clusterizadas policêntricas são associadas com maior facilidade de acesso à terra. Existe um debate sobre a capacidade de estruturas policêntricas resultarem em uma aproximação generalizada de empregos e residências. A Região Metropolitana de São Paulo apresenta um padrão monocêntrico na escala metropolitana, com fortes movimentos pendulares da periferia para o centro expandido da iii capital. Durante o período de análise, foi observada uma realocação da população para áreas mais centrais da cidade e uma centralização dos empregos ainda mais forte, resultando no agravamento dos movimentos pendulares. Existe uma clara divisão modal por renda: as classes mais altas utilizam majoritariamente automóveis, enquanto as classes mais baixas utilizam majoritariamente transporte coletivo e não motorizado. Para o futuro, o novo plano diretor tem o mérito de caminhar na direção do desenvolvimento urbano orientado pelo transporte sustentável, porém os níveis de densidade máxima permitidos ainda são parecidos com o do plano anterior e a largura dos eixos de adensamento é restrita. Acreditamos ser vantajoso um aumento do adensamento em áreas próximas dos empregos; geração de polos de adensamento em áreas mais afastadas dos empregos, mas próximas das infraestruturas de transporte coletivo de alta velocidade, e desencorajamento do adensamento em áreas com baixa acessibilidade. Também é necessária uma gestão integrada dos transportes, provendo infraestrutura para viagens não motorizadas e viagens intermodais, e uma gestão dos impactos negativos do adensamento.
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Since the passage of the Federal-Aid Highway Act of 1956, the automobile has become the primary form of transportation on the Mississippi Gulf Coast. As the rate of motor vehicle use continues to rise faster than population growth, the benefits of the current transportation system are coming at a price that rivals annual household expenditures for housing. Furthermore, the automobile-centric transportation system incurs environmental costs. Carbon dioxide emissions, motor fuel use, health care costs for chronic illness, and the loss and impairment of natural resources due to sprawling development, continue to escalate. This project analyzes the environmental costs associated with automobile-centric planning for the urbanized area of the Mississippi Gulf Coast and compares these costs to those of alternative transportation modes.
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Utah lacks a NEPA-equivalent environmental law for state funded projects. UDOT policies provide guidance on complying with NEPA but not on environmental reviews of state funded transportation projects. These projects are either not evaluated for impacts or are evaluated without a formal process, resulting in inconsistent and inadequate consideration of resources and project alternatives, with limited public involvement. This capstone provides a standard policy for UDOT. The policy incorporates elements from other state DOT polices and is based on federal NEPA, CEQ regulations, FHWA technical guidance, and existing UDOT procedures. Implementation will ensure consideration of project impacts to resources, analysis of project alternatives, encourage meaningful public involvement, and improve interagency coordination.
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An extensive and growing road system in the United States bisects vital wildlife habitat and is causing deleterious ecological effects on many wildlife species. The primary impacts include collisions between wildlife and vehicles, altered movement patterns within habitat, and/or the complete blockage of movements between vital habitats. The increasing size of the road network and number of vehicles will only intensify the problem unless proactive wildlife mitigation measures are developed to minimize these adverse effects. Therefore, this capstone project examines the role of citizen advocacy for promoting wildlife protection in the planning and development of wildlife-sensitive transportation projects in the United States. Based upon a data analysis of 21 questionnaires from qualified participants, it was determined that citizen participation is an important component associated with the development of wildlife-sensitive transportation projects. However, four major barriers to facilitating effective citizen participation processes were identified. 1) A lack of awareness. Citizens are only minimally aware of wildlife and transportation issues, including: a) the ecological impacts of roads, b) the solutions available to mitigate these impacts, and c) the opportunities to advocate for the protection of wildlife during transportation planning processes; 2) Public apathy or a lack of citizen interest in wildlife and transportation issues; 3) Ineffective citizen participation techniques and processes; and 4) Poor communication with citizens. Four recommendations were provided to assist in overcoming these barriers and to help define a better role for citizen advocacy in protecting wildlife from the growing road network.