6 resultados para Transport infrastructures

em Universidad Politécnica de Madrid


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The increasing importance of pollutant noise has led to the creation of many new noise testing laboratories in recent years. For this reason and due to the legal implications that noise reporting may have, it is necessary to create procedures intended to guarantee the quality of the testing and its results. For instance, the ISO/IEC standard 17025:2005 specifies general requirements for the competence of testing laboratories. In this standard, interlaboratory comparisons are one of the main measures that must be applied to guarantee the quality of laboratories when applying specific methodologies for testing. In the specific case of environmental noise, round robin tests are usually difficult to design, as it is difficult to find scenarios that can be available and controlled while the participants carry out the measurements. Monitoring and controlling the factors that can influence the measurements (source emissions, propagation, background noise…) is not usually affordable, so the most extended solution is to create very effortless scenarios, where most of the factors that can have an influence on the results are excluded (sampling, processing of results, background noise, source detection…) The new approach described in this paper only requires the organizer to make actual measurements (or prepare virtual ones). Applying and interpreting a common reference document (standard, regulation…), the participants must analyze these input data independently to provide the results, which will be compared among the participants. The measurement costs are severely reduced for the participants, there is no need to monitor the scenario conditions, and almost any relevant factor can be included in this methodology

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To achieve sustainability in the area of transport we need to view the decision-making process as a whole and consider all the most important socio-economic and environmental aspects involved. Improvements in transport infrastructures have a positive impact on regional development and significant repercussions on the economy, as well as affecting a large number of ecological processes. This article presents a DSS to assess the territorial effects of new linear transport infrastructures based on the use of GIS. The TITIM ? Transport Infrastructure Territorial Impact Measurement ? GIS tool allows these effects to be calculated by evaluating the improvement in accessibility, loss of landscape connectivity, and the impact on other local territorial variables such as landscape quality, biodiversity and land-use quality. The TITIM GIS tool assesses these variables automatically, simply by entering the required inputs, and thus avoiding the manual reiteration and execution of these multiple processes. TITIM allows researchers to use their own GIS databases as inputs, in contrast with other tools that use official or predefined maps. The TITIM GIS-tool is tested by application to six HSR projects in the Spanish Strategic Transport and Infrastructure Plan 2005?2020 (PEIT). The tool creates all 65 possible combinations of these projects, which will be the real test scenarios. For each one, the tool calculates the accessibility improvement, the landscape connectivity loss, and the impact on the landscape, biodiversity and land-use quality. The results reveal which of the HSR projects causes the greatest benefit to the transport system, any potential synergies that exist, and help define a priority for implementing the infrastructures in the plan

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The bridge over the Mittellandkanal is located in the municipality of Braunschweig, a city of Low Saxony located in Mid-North Germany, between Berlin and Hannover, 50 km away from this last city. The city of Braunschwig has 248.867 inhabitants (December 2010). The orography of the zone is practically even, with some slopes in the surrounding area, with a no important variation of the ground elevation, characterized by a big uniformity and a great visual quality. In this zone the canal flows from west to east, from the Dortmundkanal until the Elbe river, so it has a length of 325,3 km. The normal flora from the zone is farmland with some little forests not very big and not very important. But the Mittellandkanal lies at the North of Brauschweig, that means that in the zone of the canal there is a change between the urban area and the rural area. For this reason in the zone of the bridge we start to find farmlands and forest, however the constructions and buildings are still present in this area. The railway line that is going to be built will unite the North-center of Germany with the North-East of Germany because some of the following factors: •Overstress of the only existing line in the moment that connects Berlin with the North-East extreme of Germany. •No direct connection with the North-Easth Germany with other important German cities from South and West of Germany. •Replacement of the old existing one way line in the area that has to be renewed. •Modernization of the old railway lines of Germany. Schedule order by the European Union and the German Government. The actual lines of the zone do not have the necessary conditions and characteristics to satisfy the demand of the travelers that want to travel all over Germany with the railway avoiding using other transports like plan or car. For these reasons the necessity of the replacement of the old railway line and the aim to create a union with the North-East Germany that has a deficit of transport infrastructures and connections with the rest of the country and Europe. Although the new railway line provokes some disadvantages when constructing it is indispensable to build this railway line. The pass of the railway line through Braunschweig has not been random. The zone Braunschweig-Wolfsburg is a very industrialized area because of some companies like Wolkswagen and too because this zone is an important pass of important line from Berlin, South and East Germany. For all of these reasons the railway line goes through Braunschweig and connects to the city of Wolfsburg first, and after the North-East Germany zone.

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According to UN provisions in the period from 2007 to 2050 world population will grow up to 9200 million people. In fact, for the first time in history, in the year 2008 world urban population became higher than rural population. The increase of urban areas and their transport infrastructures has influenced agricultural land use due to their irreversible change, especially when they remain as periurban vacant land, losing their character and identity. In the Europe of the nineties, the traditional urban-rural gradient, characterized by a neat contact between both land types, has become so complex that it has change to a gradient in which it is difficult to separate urban and rural land uses. [Antrop 2004]. A literature review has been made on methodologies used for the urban-rural gradient analysis. One of these methodologies was selected that integrates ecological characterization based on the use of spatial metrics and geographical characterization based on spatial components. Cartographical sources used were Corine Land Cover at 1: 100000 scale and the Spanish Land Use Information System at 1:25000 scale. Urban-rural gradient paradigm is an analysis methodology, coming from landscape ecology, which enables to investigate how urbanization provokes changes in ecological patterns and processes into landscape. [Hahs and McDonnell 2006].The present research adapt this methodology to study the urban-rural gradient in the outskirts of Madrid, Toledo and Guadalajara. Both scales (1:25000 and 1:100000) were simultaneously used to reach the next objectives: 1) Analysis of landscape pattern dynamics in relation to distance to the town centre and major infrastructures. 2) Analysis of landscape pattern dynamics in the fringe of protected areas. The paper presents a new approach to the urban-rural relationship which allows better planning and management of urban áreas.

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La inclusión de las variables ambientales en el proceso de toma de decisiones relacionado con las grandes infraestructuras de transporte debe estar basada en los resultados obtenidos después de evaluarlas científicamente. El paisaje visual, entendido como el resultado de la interacción entre el observador y su entorno, toma cada vez más importancia como aspecto ambiental a tener en cuenta, tanto para las autoridades como para la sociedad. La evaluación del paisaje permite integrar las variables territoriales y su relación con el observador. Es necesario profundizar en el conocimiento de la relación del paisaje con las infraestructuras de transporte, en concreto con las autopistas, para desarrollar metodologías y herramientas científicas necesarias para su correcta evaluación. El objetivo de esta tesis es aportar una metodología que permita que el paisaje se integre como elemento estructural y funcional en el diseño de las autopistas. La investigación realizada ha permitido analizar en profundidad las variables que influyen en la percepción del paisaje propio de las autopistas, cuantificar en qué grado las intervenciones de integración paisajística mejoran dicha percepción y aportar una metodología que permite evaluar el carácter y la calidad visual del paisaje empleando fotografías e indicadores que se calculan con la ayuda de un sistema de información geográfica.ABSTRACT The inclusion of environmental variables in the decision making process related to major transport infrastructures should be based on the results obtained after scientific evaluation. The visual landscape, understood as the result of the interaction between the observer and the environment, is becoming more important as an environmental aspect to consider, both for the authorities and society. Landscape evaluation integrates territorial variables and their relationship to the viewer. This thesis deepens the knowledge of the relationship between landscape and transport infrastructures, in particular the highways. The objective of this thesis is to provide a methodology that allows the landscape to be integrated as a structural and functional element in the design of highways. This research has allowed to analyze in depth the variables that influence the perception of the highways’ landscape, to quantify the extent to which integration measures improve landscape perception and to provide a methodology to assess the character and visual quality of the landscape using photographs and indicators calculated by geographic information systems.

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La presente tesis se enmarca dentro de los trabajos realizados en el Proyecto CENIT OASIS (Operación de Autopistas Seguras Inteligentes y Sostenibles) sobre el impacto y la integración paisajística de las autopistas, y en los trabajos realizados por el grupo de trabajo GT 13 (paisaje) dentro del comité técnico nacional CTN 157 (proyectos) para normalización del Paisaje en España, del que la doctoranda es secretaria técnica. El objetivo principal de esta tesis es desarrollar una Metodología que permita la normalización del paisaje en España. Por ello, establece las bases para el desarrollo científico y profesional en el ámbito del paisaje, a través de la caracterización de la actividad científica y de la actividad normalizadora internacional. Para después elaborar una propuesta de documentos normativos para su regulación en España. Por último, se pone en práctica la única de las normas aplicables a un caso real, concretamente en la AP-7 a su paso por la provincia de Gerona. La caracterización de la actividad científica en el ámbito del paisaje proporciona una visión global que sirve de referencia a las futuras investigaciones en la materia, no existente hasta la fecha. Entre los múltiples resultados, se identifican las áreas de conocimiento y disciplinas afines desde las que se aborda el paisaje, se analiza la evolución de las temáticas y líneas de investigación en el campo, se determina la distribución e impacto de la producción científica, destacando los países y centros de investigación punteros y sus colaboraciones, y se determinan las publicaciones más destacadas en la materia. La caracterización de la actividad normativa internacional hasta la fecha supone un referente en este campo, habiendo traducido, analizado y clasificado decenas de documentos sobre temas como la terminología, la profesión de paisajista, las reglas generales para las intervenciones en el paisaje, las normas para la protección del paisaje y normas para la evaluación del impacto paisajístico. La tesis desarrolla tres documentos normativos, que se espera sean el germen de los futuros documentos legales para normalización del Paisaje en España. El principal objetivo de la normalización es dotar a los profesionales de las herramientas necesarias para desarrollar sus intervenciones en el paisaje. Para ello, se ha elaborado un documento normativo sobre terminología del concepto clave y los términos asociados en castellano, que sirva de referencia para un futuro documento normativo; un documento normativo que regule los estudios de integración e impacto paisajístico en España, definiendo una serie de pautas que ayuden a los profesionales a desarrollar los proyectos de intervención en el paisaje; un documento que regule y defina la profesión de arquitecto paisajista, identificando sus capacidades, formaciones y competencias. Por último, el documento de impacto e integración paisajística se aplica a un caso concreto de infraestructuras del transporte, dentro del proyecto OASIS, sirviendo como ejemplo a los profesionales de la materia para desarrollar futuras intervenciones. El enfoque de este documento coincide con el de paisaje ecológico, el análisis del paisaje se aborda desde lo visible (fenosistema) y desde los procesos que lo conforman (criptosistema). Y las medidas de integración pretenden conseguir que la infraestructura forme parte del paisaje y de los procesos que ocurren en él, lo que en la tesis se define como Infraestructuras Verdes. ABSTRACT The thesis is within the framework of the CENIT OASIS Project (Operation of Safe, Intelligent and Sustainable Highways) about the landscape impact and integration of highways, and the work done by the working group GT 13 (landscape) in the national technical committee CTN 157 (projects) for landscape standardization in Spain, of which the PhD is technical secretary. The main objective of this thesis is to develop a Methodology that allows the landscape standardization in Spain. Therefore, it establishes the basis for the scientific and professional development in the landscape field, through the characterization of scientific and international normalizing activity. It concludes with the proposal of regulatory documents for its use in Spain. Finally, it implements the only of the rules applicable to a real case, specifically in the AP- 7 passing through the Gerona province. The characterization of scientific activity in the landscape field provides an overview that is a reference in the researches in this field, non-existent to date. Among the many results, the areas of knowledge and related disciplines, from which the landscape is addressed, are identified; the evolution of topics and lines of research in the field are analyzed; the distribution and impact of scientific production is determined, highlighting the countries and leading research centers and collaborations; and the leading publications in the field are determined. The characterization of the international regulatory activity to date is a model in this field, having translated, analyzed and classified dozens of papers about terminology, the landscapist profession, general rules for intervention in the landscape, standards for the landscape protection and rules for the assessment of landscape impact. The thesis develops three normative documents, which are expected to be the germ of future legal documents for standardization landscape in Spain. The main objective of standardization is to provide the necessary tools for professionals who work developing interventions in the landscape. To do this, it has been developed a normative document about terminology on the key concept and the associated terms in Castilian, as a reference for a future normative document; a normative document that regulates studies of landscape integration and impact in Spain, defining a set of guidelines to help professionals to develop intervention projects in the landscape; a document to regulate and define the activities developed by the professionals, defining the profession of landscape architect, their capabilities and competencies. Finally, the document of landscape impact and integration is applied to a particular case of transport infrastructures within the OASIS project, serving as an example to professionals in the field to develop future interventions. The focus of this document coincides with the ecological landscape; the landscape analysis is approached from the visible (fenosystem) and from the processes that shape it (cryptosystem); and integration measures aim to achieve that the infrastructure take part of the landscape and its existing processes, which in this thesis is defined as Green Infrastructures.