955 resultados para passenger terminal


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El presente proyecto de construcción define las actuaciones para la ejecución de la Nueva Terminal de pasajeros para el aeropuerto Federico García Lorca, Granada – Jaén, situado entre los términos municipales de Chauchina y Santa Fe, en la provincia de Granada. Estudios realizados por AENA, en colaboración con el Ministerio de Fomento, dejan constancia de los déficits en cuanto a capacidad de las instalaciones del aeropuerto se refiere, en múltiples facetas. En el caso de la terminal de pasajeros, sus principales elementos de servicio han sido sometidos a estudio, revelando claras faltas en numerosos puntos. El más relevante son las carencias en cuanto a capacidad, respecto a la demanda existente, y especialmente la demanda prevista para un cierto horizonte de estudio. Además, las nuevas normativas de aplicación en aeropuertos internacionales publicadas por la International Air Transport Association (IATA) entran en conflicto con ciertos parámetros de diseño de las instalaciones actuales. Se requiere una remodelación del conjunto para adaptarse a estas exigencias de validez internacional.

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El proyecto pretende principalmente cumplir con dos objetivos prioritarios para el desarrollo del Puerto de Algeciras: por un lado, contribuir a cubrir necesidades de suministro de combustibles para buques que ya existen en el Puerto y que se plantearán con más intensidad después de su ampliación, y por otro, ofrecer las mayores garantías ambientales y de seguridad para el entorno y la población, reduciendo además el riesgo de derrames de hidrocarburos en la Bahía, al restar cuota de mercado a las prácticas que vienen desarrollándose en Gibraltar sin las adecuadas garantías medioambientales y de seguridad.

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Particulate matter emissions from paved roads are currently one of the main challenges for a sustainable transport in Europe. Emissions are scarcely estimated due to the lack of knowledge about the resuspension process severely hampering a reliable simulation of PM and heavy metals concentrations in large cities and evaluation of population exposure. In this study the Emission Factors from road dust resuspension on a Mediterranean freeway were estimated per single vehicle category and PM component (OC, EC, mineral dust and metals) by means of the deployment of vertical profiles of passive samplers and terminal concentration estimate. The estimated PM10 emission factors varied from 12 to 47 mg VKT?1 (VKT: Vehicle Kilometer Traveled) with an average value of 22.7 ? 14.2 mg VKT?1. Emission Factors for heavy and light duty vehicles, passenger cars and motorbikes were estimated, based on average fleet composition and EPA ratios, in 187e733 mg VKT?1, 33e131 VKT?1, 9.4e36.9 VKT?1 and 0.8e3.3 VKT?1, respectively. These range of values are lower than previous estimates in Mediterranean urban roads, probably due to the lower dust reservoir on freeways. PM emitted material was dominated by mineral dust (9e10 mg VKT?1), but also OC and EC were found to be major components and approximately 14 e25% and 2e9% of average PM exhaust emissions from diesel passenger cars on highways respectively.

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Son generalmente aceptadas las tendencias actuales de maximización de la automatización para la adaptación de las terminales marítimas de contenedores a las cada vez mayores exigencias competitivas del negocio de transporte de contenedores. En esta investigación, se somete a consideración dichas tendencias a través de un análisis que tenga en cuenta la realidad global de la terminal pero también su propia realidad local que le permita aprovechar sus fortalezas y minimizar sus debilidades en un mercado continuamente en crecimiento y cambio. Para lo cual se ha desarrollado un modelo de análisis en el que se tengan en cuenta los parámetros técnicos, operativos, económicos y financieros que influyen en el diseño de una terminal marítima de contenedores, desde su concepción como ente dependiente para generar negocio, todos ellos dentro de un perímetro definido por el mercado del tráfico de contenedores así como las limitaciones físicas introducidas por la propia terminal. Para la obtención de dicho modelo ha sido necesario llevar a cabo un proceso de estudio del contexto actual del tráfico de contenedores y su relación con el diseño de las terminales marítimas, así como de las metodologías propuestas hasta ahora por los diferentes autores para abordar el proceso de dimensionamiento y diseño de la terminal. Una vez definido el modelo que ha de servir de base para el diseño de una terminal marítima de contenedores desde un planteamiento multicriterio, se analiza la influencia de las diversas variables explicativas de dicho modelo y se cuantifica su impacto en los resultados económicos, financieros y operativos de la terminal. Un paso siguiente consiste en definir un modelo simplificado que vincule la rentabilidad de una concesión de terminal con el tráfico esperado en función del grado de automatización y del tipo de terminal. Esta investigación es el fruto del objetivo ambicioso de aportar una metodología que defina la opción óptima de diseño de una terminal marítima de contenedores apoyada en los pilares de la optimización del grado de automatización y de la maximización de la rentabilidad del negocio que en ella se desarrolla. It is generally accepted current trends in automation to maximize the adaptation of maritime container terminals to the growing competitive demands of the business of container shipping. In this research, is submitted to these trends through an analysis taking into account the global reality of the terminal but also their own local reality it could exploit its strengths and minimize their weaknesses in a market continuously growing and changing. For which we have developed a model analysis that takes into account the technical, operational, financial and economic influence in the design of a container shipping terminal, from its conception as being dependent to generate business, all within a perimeter defined by the market of container traffic and the physical constraints introduced by the terminal. To obtain this model has been necessary to conduct a study process in the current context of container traffic and its relation to the design of marine terminals, as well as the methodologies proposed so far by different authors to address the process sizing and design of the terminal. Having defined the model that will serve as the basis for the design for a container shipping terminal from a multi-criteria approach, we analyze the influence of various explanatory variables of the model and quantify their impact on economic performance, financial and operational of the terminal. A next step is to define a simplified model that links the profitability of a terminal concession with traffic expected on the basis of the degree of automation and the kind of terminal. This research is the result of the ambitious target of providing a methodology to define the optimal choice of designing a container shipping terminal on the pillars of automation optimizing and maximizing the profitability of the business that it develops.

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One of the main problems in urban areas is the steady growth in car ownership and traffic levels. Therefore, the challenge of sustainability is focused on a shift of the demand for mobility from cars to collective means of transport. For this end, buses are a key element of the public transport systems. In this respect Real Time Passenger Information (RTPI) systems help citizens change their travel behaviour towards more sustainable transport modes. This paper provides an assessment methodology which evaluates how RTPI systems improve the quality of bus services in two European cities, Madrid and Bremerhaven. In the case of Madrid, bus punctuality has increased by 3%. Regarding the travellers perception, Madrid raised its quality of service by 6% while Bremerhaven increased by 13%. On the other hand, the users ́ perception of Public Transport (PT) image increased by 14%.

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Esta Tesis analiza, en primer lugar, las posibilidades y condiciones de los puertos españoles de Algeciras, Valencia y Barcelona para acoger en el futuro una terminal totalmente automatizada (robotizada) de contenedores con una capacidad aproximada de 1,3-1,4 millones de contenedores/año o 2 millones de TEU/año. Entre las posibles amenazas y oportunidades que pueden afectar al actual tráfico de esos puertos, la Tesis se centra en el desvío del tráfico de contenedores de transbordo, la sustitución de los tráficos marinos por tráficos ferroviarios, la posibilidad de convertir al Mediterráneo español en la puerta de entrada de productos asiáticos, el cambio de la ruta Asia-Europa a través del Canal de Suez por la ruta Asia-Europa a través del Ártico, la posibilidad de circunvalar África para evitar el Canal de Suez y la próxima apertura de nuevo Canal de Panamá ampliado. La Tesis describe el Estado del Arte de la tecnología para las terminales de contenedores automatizadas que pudiera ser aplicada en nuestro país y desarrolla una terminal automatizada con la capacidad ya mencionada de 2 millones de TEU/año. El tema del ferrocarril en las terminales de contenedores, como futura lanzadera para la proyección de la influencia de los puertos, está desarrollado como una parte esencial de una terminal de contenedores. Se investiga, también, la automatización total o parcial en la transferencia de mercancía buque-ferrocarril La Tesis también desarrolla una metodología para desglosar los costes e ingresos de una terminal automatizada. A través de esos costes e ingresos se va desarrollando, mediante la utilización de hojas Excel relacionadas, el método para mostrar la estructuración de los hitos económicos fundamentales hasta llegar al VAN, TIR y Periodo de Retorno de la Inversión como elementos clave para la calificación de la terminal como proyecto de inversión. La Tesis realiza la misma metodología para la terminal convencional de contenedores más habitual en el Mediterráneo español: la terminal que utiliza sistemas de grúas sobre ruedas (RTG) en el patio de contenedores. Por último, la Tesis establece la comparativa entre los dos tipos de terminales analizadas: la convencional y la automatizada, basándose en el coste de la mano de obra portuaria como elemento clave para dicha comparativa. Se establece la frontera que determina en qué niveles de coste del personal portuario la terminal automatizada es mejor proyecto de inversión que la terminal convencional con RTG. Mediante la creación de la metodología descrita, la Tesis permite: - La comparativa entre diferentes tipos de terminales - La posibilidad de analizar un modelo de terminal variando sus parámetros fundamentales: costes de los estibadores, nuevas tecnologías de manipulación, diferentes rendimientos, variación de los ingresos, etc. - Descubrir el modelo más rentable de una futura terminal mediante la comparación de las diferentes tecnologías que se puedan emplear para la construcción de dicha terminal ABSTRACT This Thesis examines, first, the possibilities and conditions of the Spanish ports of Algeciras, Valencia and Barcelona to host in the future a fully automated container terminal (robotized) with a capacity of approximately 1.3-1.4 million containers/year or 2 million TEU/year. Among the potential threats and opportunities that may affect the current traffic of these ports, the thesis focuses on the diversion of container transhipment traffic, the replacing of marine traffic by rail traffic, the possibility of converting the Spanish Mediterranean in the door input of Asian products, the changing of the Asia-Europe route through the Suez Canal by the Asia-Europe route through the Arctic, the possibility of circumnavigating Africa to avoid the Suez Canal and the upcoming opening of the new expanded Canal of Panama. The Thesis describes the state-of-the-art technology for automated container terminals that could be applied in our country and develops an automated terminal with the listed capacity of 2 million TEUs / year. The use of the railway system in container terminals to be used as future shuttle to the projection of the influence of the ports is developed as an essential part of a container terminal. We also investigate the total or partial automation in transferring goods from ship to rail. The Thesis also develops a methodology to break down the costs and revenues of an automated terminal. Through these costs and revenues is developed, using linked Excel sheets, the method to show the formation of structured key economic milestones until the NPV, IRR and Period of Return of Investment as key to determining the terminal as an investment project. The Thesis takes the same methodology for the conventional container terminal more common in the Spanish Mediterranean: the terminal using rubber tyred cranes (RTG) in the container yard. Finally, the Thesis provides a comparison between the two types of analyzed terminals: conventional and automated, based on the cost of stevedores labor as a key point for that comparison. It establishes the boundary that determines what levels of stevedore costs make automated terminal to be better investment project than a conventional terminal using RTG. By creating the above methodology, the Thesis allows: - The comparison between different types of terminals - The possibility of analyzing a model of terminal varying its key parameters: stevedores costs, new technologies of container handling, different loading/unloading rates, changes in incomes and so on - Unveil the most profitable model for a future terminal by comparing the different technologies that can be employed for the construction of that terminal

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Este proyecto estudia la realización de la nueva terminal de ferries y cruceros en el muelle de Maliaño, en el Puerto de Santander. Tiene dos objetivos fundamentales. En primer lugar, la liberación de los muelles de Albareda y Almirante para su integración con la ciudad prevista en el “Proyecto del Frente Marítimo Portuario de Santander” y su traslado al muelle de Maliaño, en el puerto de Santander. El otro objetivo es la correspondiente adecuación de dicha terminal a las nuevas necesidades tanto actuales como futuras, que permita la coincidencia de varios buques en puerto y su adecuación para los nuevos tipos de buques

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Experimental research on imposed deformation is generally conducted on small scale laboratory experiments. The attractiveness of field research lies in the possibility to compare results obtained from full scale structures to theoretical prediction. Unfortunately, measurements obtained from real structures are rarely described in literature. The structural response of integral edifices depends significantly on stiffness changes and constraints. The New Airport Terminal Barajas in Madrid, Spain provides with large integral modules, partially post?tensioned concrete frames, cast monolithically over three floor levels and an overall length of approx. 80 m. The field campaign described in this article explains the instrumentation of one of these frames focusing on the influence of imposed deformations such as creep, shrinkage and temperature. The applied monitoring equipment included embedded strain gages, thermocouples, DEMEC measurements and simple displacement measurements. Data was collected throughout construction and during two years of service. A complete data range of five years is presented and analysed. The results are compared with a simple approach to predict the long?term shortening of this concrete structure. Both analytical and experimental results are discussed.

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This paper shows how the methodologies used in current practice might lead to an underestimation of energy consumption by different passenger transport modes, and also offers recommendations for improvements to these methodologies. The first recommendation is related to energy consumption rates. The studies reviewed use traditional energy consumption rates based on transportation demand, such as kilowatts-hour per vehicle-kilometre or kilowatts-hour per passenger-kilometre, and include other rates based on transportation supply which might prove useful. Second, energy consumption rates are dependent on factors, and the introduction of homogeneous units which are independent of these factors therefore offers a significant improvement when comparing transport modes. Third, the use of a vehicle energy consumption equation will improve the quality of the assessments. Fourth, we propose that the coefficients which define the energy consumption equation should be broken down to determine market niches and sources for improvements in energy consumption in the vehicle categories.

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One of the main problems in urban areas is the steady growth in car ownership and traffic levels. Therefore, the challenge of sustainability is focused on a shift of the demand for mobility from cars to collective means of transport. For this purpose, buses are a key element of the public transport systems. In this respect Real Time Passenger Information (RTPI) systems help people change their travel behaviour towards more sustainable transport modes. This paper provides an assessment methodology which evaluates how RTPI systems improve the quality of bus services performance in two European cities, Madrid and Bremerhaven. In the case of Madrid, bus punctuality has increased by 3%. Regarding the travellers perception, Madrid raised its quality of service by 6% while Bremerhaven increased by 13%. On the other hand, the users¿ perception of Public Transport (PT) image increased by 14%.

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After a criticism on today’s model for electrical noise in resistors, we pass to use a Quantum-compliant model based on the discreteness of electrical charge in a complex Admittance. From this new model we show that carrier drift viewed as charged particle motion in response to an electric field is unlike to occur in bulk regions of Solid-State devices where carriers react as dipoles against this field. The absence of the shot noise that charges drifting in resistors should produce and the evolution of the Phase Noise with the active power existing in the resonators of L-C oscillators, are two effects added in proof for this conduction model without carrier drift where the resistance of any two-terminal device becomes discrete and has a minimum value per carrier that is the Quantum resistance RK/(2pi)

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Este proyecto tiene por objeto el diseño de la protección catódica contra la corrosión de las boyas y las tuberías sumergidas en agua de mar de un terminal portuario de descarga de crudo. La protección catódica consiste en la igualación de los potenciales de las áreas anódicas y catódicas del material por el flujo de electrones suministrado. En el proyecto se han empleado los métodos de ánodos de sacrificio y de corriente impresa para analizar la protección catódica más adecuada de cada componente. Para los cálculos de los ánodos necesarios para la protección catódica se utilizó el procedimiento de la masa, seleccionando así el método, ánodos de sacrificio o corriente impresa, y los ánodos más apropiados para la protección catódica de las boyas y de las tuberías. ABSTRACT The aim of this project was to design the cathodic protection against corrosion of a crude oil unloading port terminal’s buoys and under sea water pipelines. The cathodic protection consists in the equating of anodic and cathodic material areas by the electrons flow supplied. In this project, sacrificial anodes and impressed current methods were used for analyze the most suitable cathodic protection for each component. For the cathodic protection required anodes calculations, the weight procedure was used, thereby selecting the method, sacrificial anodes or impressed current, and the most appropriate anodes, for the cathodic protection of the buoys and pipelines

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Sustainable development in its three dimensions – economic, social and environmental – has become a major concern on an international scale. The problem is global, but must be solved locally. Most of the world’s population lives in cities that act as centres of economic growth and productivity, but which – if they develop in the wrong direction – can cause social inequalities, or irreversibly harm the environment. Urban transport causes a number of negative impacts that can affect sustainability targets. The objective of this study is to propose an analysis of sustainability of urban passenger transport systems based on available indicators in most cities. This will serve to benchmark the practices of different cities and manage their transport systems. This work involves the creation of composite indicators (CI) to measure the sustainability of urban passenger transport systems. The methodology is applied to 23 European cities. The indicators are based on a benchmarking approach, and the evaluation of each aspect in each case therefore depends on the performance of the whole sample. The CI enabled us to identify which characteristics have the greatest influence on the sustainability of a city’s transport system, and to establish transport policies that could potentially improve its shortcomings. Finally, the cities are clustered according to the values obtained from the CIs, and thus according to the weaknesses and strengths of their transport systems.

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This paper presents a method to segment airplane radar tracks in high density terminal areas where the air traffic follows trajectories with several changes in heading, speed and altitude. The radar tracks are modelled with different types of segments, straight lines, cubic spline function and shape preserving cubic function. The longitudinal, lateral and vertical deviations are calculated for terminal manoeuvring area scenarios. The most promising model of the radar tracks resulted from a mixed interpolation using straight lines for linear segments and spline cubic functions for curved segments. A sensitivity analysis is used to optimise the size of the window for the segmentation process.

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La nueva Terminal T2A del Aeropuerto de Heathrow se resuelve prácticamente en su totalidad mediante estructura metálica. En esta primera fase consta de, aproximadamente, 200 m2 construidos, con unas dimensiones en planta de 217x190 m. sin juntas. Como elementos singulares destacan la cubierta ondulada, que se resuelve mediante vigas principales tipo Vierendeel cada 18 m., y la fachada suspendida. La estabilidad horizontal del conjunto se resuelve mediante una docena de núcleos, distribuidos en el interior del edificio, y un arriostramiento en la fachada oeste.