48 resultados para Roof deconstruction

em Universidad Politécnica de Madrid


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La revisa búlgara Zeppelin publica el proyecto del Alberto Campo Baeza "Casa Rufo". El proyecto constituye una investigación en el uso del hormigón armado para la recreación de una nueva síntesis entre lo tectónico y lo estereotómico. El proyecto se presenta de manera exhaustiva mediante textos, dibujos planimétricos, fotografías y croquis.

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The use of photovoltaic experimental plants in engineering educational buildings contributes to an increase in acceptance of this technology by future engineers. There are some photovoltaic (PV) systems in educational buildings in Spain, but they are usually limited to buildings in relation to electrical technologies or research areas. They are not common in other educational or official buildings. This paper presents the project of a grid-connected solar plant with two main objectives. First, different PV module technologies will be compared. Second, an emphasis on agronomical areas in educational settings will be reviewed in an attempt to facilitate student engagement in the use of the power plant. The system is grid-connected in order to pay-back the investment in the plant. In fact the electricity generated by the plant will be used by the installations of the building, as it is the closest consumer. This work intends to approximate photovoltaic technology to university degrees not directly related with it and at the same time research in comparison of systems with different technologies. This is a good example of an solar plant for both optimum production and educational purposes.

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New PV self-orientating roof based on a balanced movement

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The new railway station of María Zambrano for AVE (Spanish high-speed trains) located in Malaga, has been inaugurated in November 2006, just on the site of the former railway station. The new railway station with an investment of 134.7 million Euros occupies a surface of 51.377 m2, five times the surface of the former station. The enclosure is the biggest intermodal transport and commercial center of Spain which comprises a parking of 21,000 m2 for 1,300 parking places, one commercial area and a hotel of 35 m height, with a total extension constructed of approximately 100,000 m2.

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High suction loads appear on roofs of low-height buildings. The use of parapets with appropriate height at the roof edges alleviates these loads. The performance of six parapet configurations to decrease the suction loads induced on roofs by oblique winds has been studied in a low speed wind tunnel. The studied parapet configurations include vertical wall parapets, either solid or porous, and cantilevered parapets formed by a small horizontal roof close to the building roof. Low-height parapets with a medium porosity and cantilevered parapets are more efficient than solid parapets to reduce the wind suctions generated on the roofs by conical vortices.

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The effect of an upstream building on the suction forces on the flat roof of a low-rise building placed in the wake of the former is analyzed. The analysis has been performed by wind tunnel testing of a flat roof, low-rise building model equipped with pressure taps on the roof and different block-type buildings (only configurations where the upstream building is as high or higher than the downstream one are considered in this paper). The influence of the distance between both buildings on the wind loads on the downstream building roof is analyzed, as well as the height of the upstream one and the wind angle of incidence. Experimental results reveal that the wind load increases as the relative height of the upstream building increases, the wind load being highest for intermediate distances between buildings, when a passage between them is formed.

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The design of a prestressed concrete roof is described. A special linear elastic analysis of non-prismatic folded structures has been applied. The obtained results have been compared to the results deducted from a small scale model test. Conclusions about the efficiency of these type of structures are shown.

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El programa Europeo HORIZON2020 en Futuras Ciudades Inteligentes establece como objetivo que el 20% de la energía eléctrica sea generada a partir de fuentes renovables. Este objetivo implica la necesidad de potenciar la generación de energía eólica en todos los ámbitos. La energía eólica reduce drásticamente las emisiones de gases de efecto invernadero y evita los riesgos geo-políticos asociados al suministro e infraestructuras energéticas, así como la dependencia energética de otras regiones. Además, la generación de energía distribuida (generación en el punto de consumo) presenta significativas ventajas en términos de elevada eficiencia energética y estimulación de la economía. El sector de la edificación representa el 40% del consumo energético total de la Unión Europea. La reducción del consumo energético en este área es, por tanto, una prioridad de acuerdo con los objetivos "20-20-20" en eficiencia energética. La Directiva 2010/31/EU del Parlamento Europeo y del Consejo de 19 de mayo de 2010 sobre el comportamiento energético de edificaciones contempla la instalación de sistemas de suministro energético a partir de fuentes renovables en las edificaciones de nuevo diseño. Actualmente existe una escasez de conocimiento científico y tecnológico acerca de la geometría óptima de las edificaciones para la explotación de la energía eólica en entornos urbanos. El campo tecnológico de estudio de la presente Tesis Doctoral es la generación de energía eólica en entornos urbanos. Específicamente, la optimization de la geometría de las cubiertas de edificaciones desde el punto de vista de la explotación del recurso energético eólico. Debido a que el flujo del viento alrededor de las edificaciones es exhaustivamente investigado en esta Tesis empleando herramientas de simulación numérica, la mecánica de fluidos computacional (CFD en inglés) y la aerodinámica de edificaciones son los campos científicos de estudio. El objetivo central de esta Tesis Doctoral es obtener una geometría de altas prestaciones (u óptima) para la explotación de la energía eólica en cubiertas de edificaciones de gran altura. Este objetivo es alcanzado mediante un análisis exhaustivo de la influencia de la forma de la cubierta del edificio en el flujo del viento desde el punto de vista de la explotación energética del recurso eólico empleando herramientas de simulación numérica (CFD). Adicionalmente, la geometría de la edificación convencional (edificio prismático) es estudiada, y el posicionamiento adecuado para los diferentes tipos de aerogeneradores es propuesto. La compatibilidad entre el aprovechamiento de las energías solar fotovoltaica y eólica también es analizado en este tipo de edificaciones. La investigación prosigue con la optimización de la geometría de la cubierta. La metodología con la que se obtiene la geometría óptima consta de las siguientes etapas: - Verificación de los resultados de las geometrías previamente estudiadas en la literatura. Las geometrías básicas que se someten a examen son: cubierta plana, a dos aguas, inclinada, abovedada y esférica. - Análisis de la influencia de la forma de las aristas de la cubierta sobre el flujo del viento. Esta tarea se lleva a cabo mediante la comparación de los resultados obtenidos para la arista convencional (esquina sencilla) con un parapeto, un voladizo y una esquina curva. - Análisis del acoplamiento entre la cubierta y los cerramientos verticales (paredes) mediante la comparación entre diferentes variaciones de una cubierta esférica en una edificación de gran altura: cubierta esférica estudiada en la literatura, cubierta esférica integrada geométricamente con las paredes (planta cuadrada en el suelo) y una cubierta esférica acoplada a una pared cilindrica. El comportamiento del flujo sobre la cubierta es estudiado también considerando la posibilidad de la variación en la dirección del viento incidente. - Análisis del efecto de las proporciones geométricas del edificio sobre el flujo en la cubierta. - Análisis del efecto de la presencia de edificaciones circundantes sobre el flujo del viento en la cubierta del edificio objetivo. Las contribuciones de la presente Tesis Doctoral pueden resumirse en: - Se demuestra que los modelos de turbulencia RANS obtienen mejores resultados para la simulación del viento alrededor de edificaciones empleando los coeficientes propuestos por Crespo y los propuestos por Bechmann y Sórensen que empleando los coeficientes estándar. - Se demuestra que la estimación de la energía cinética turbulenta del flujo empleando modelos de turbulencia RANS puede ser validada manteniendo el enfoque en la cubierta de la edificación. - Se presenta una nueva modificación del modelo de turbulencia Durbin k — e que reproduce mejor la distancia de recirculación del flujo de acuerdo con los resultados experimentales. - Se demuestra una relación lineal entre la distancia de recirculación en una cubierta plana y el factor constante involucrado en el cálculo de la escala de tiempo de la velocidad turbulenta. Este resultado puede ser empleado por la comunidad científica para la mejora del modelado de la turbulencia en diversas herramientas computacionales (OpenFOAM, Fluent, CFX, etc.). - La compatibilidad entre las energías solar fotovoltaica y eólica en cubiertas de edificaciones es analizada. Se demuestra que la presencia de los módulos solares provoca un descenso en la intensidad de turbulencia. - Se demuestran conflictos en el cambio de escala entre simulaciones de edificaciones a escala real y simulaciones de modelos a escala reducida (túnel de viento). Se demuestra que para respetar las limitaciones de similitud (número de Reynolds) son necesarias mediciones en edificaciones a escala real o experimentos en túneles de viento empleando agua como fluido, especialmente cuando se trata con geometrías complejas, como es el caso de los módulos solares. - Se determina el posicionamiento más adecuado para los diferentes tipos de aerogeneradores tomando en consideración la velocidad e intensidad de turbulencia del flujo. El posicionamiento de aerogeneradores es investigado en las geometrías de cubierta más habituales (plana, a dos aguas, inclinada, abovedada y esférica). - Las formas de aristas más habituales (esquina, parapeto, voladizo y curva) son analizadas, así como su efecto sobre el flujo del viento en la cubierta de un edificio de gran altura desde el punto de vista del aprovechamiento eólico. - Se propone una geometría óptima (o de altas prestaciones) para el aprovechamiento de la energía eólica urbana. Esta optimización incluye: verificación de las geometrías estudiadas en el estado del arte, análisis de la influencia de las aristas de la cubierta en el flujo del viento, estudio del acoplamiento entre la cubierta y las paredes, análisis de sensibilidad del grosor de la cubierta, exploración de la influencia de las proporciones geométricas de la cubierta y el edificio, e investigación del efecto de las edificaciones circundantes (considerando diferentes alturas de los alrededores) sobre el flujo del viento en la cubierta del edificio objetivo. Las investigaciones comprenden el análisis de la velocidad, la energía cinética turbulenta y la intensidad de turbulencia en todos los casos. ABSTRACT The HORIZON2020 European program in Future Smart Cities aims to have 20% of electricity produced by renewable sources. This goal implies the necessity to enhance the wind energy generation, both with large and small wind turbines. Wind energy drastically reduces carbon emissions and avoids geo-political risks associated with supply and infrastructure constraints, as well as energy dependence from other regions. Additionally, distributed energy generation (generation at the consumption site) offers significant benefits in terms of high energy efficiency and stimulation of the economy. The buildings sector represents 40% of the European Union total energy consumption. Reducing energy consumption in this area is therefore a priority under the "20-20-20" objectives on energy efficiency. The Directive 2010/31/EU of the European Parliament and of the Council of 19 May 2010 on the energy performance of buildings aims to consider the installation of renewable energy supply systems in new designed buildings. Nowadays, there is a lack of knowledge about the optimum building shape for urban wind energy exploitation. The technological field of study of the present Thesis is the wind energy generation in urban environments. Specifically, the improvement of the building-roof shape with a focus on the wind energy resource exploitation. Since the wind flow around buildings is exhaustively investigated in this Thesis using numerical simulation tools, both computational fluid dynamics (CFD) and building aerodynamics are the scientific fields of study. The main objective of this Thesis is to obtain an improved (or optimum) shape of a high-rise building for the wind energy exploitation on the roof. To achieve this objective, an analysis of the influence of the building shape on the behaviour of the wind flow on the roof from the point of view of the wind energy exploitation is carried out using numerical simulation tools (CFD). Additionally, the conventional building shape (prismatic) is analysed, and the adequate positions for different kinds of wind turbines are proposed. The compatibility of both photovoltaic-solar and wind energies is also analysed for this kind of buildings. The investigation continues with the buildingroof optimization. The methodology for obtaining the optimum high-rise building roof shape involves the following stages: - Verification of the results of previous building-roof shapes studied in the literature. The basic shapes that are compared are: flat, pitched, shed, vaulted and spheric. - Analysis of the influence of the roof-edge shape on the wind flow. This task is carried out by comparing the results obtained for the conventional edge shape (simple corner) with a railing, a cantilever and a curved edge. - Analysis of the roof-wall coupling by testing different variations of a spherical roof on a high-rise building: spherical roof studied in the litera ture, spherical roof geometrically integrated with the walls (squared-plant) and spherical roof with a cylindrical wall. The flow behaviour on the roof according to the variation of the incident wind direction is commented. - Analysis of the effect of the building aspect ratio on the flow. - Analysis of the surrounding buildings effect on the wind flow on the target building roof. The contributions of the present Thesis can be summarized as follows: - It is demonstrated that RANS turbulence models obtain better results for the wind flow around buildings using the coefficients proposed by Crespo and those proposed by Bechmann and S0rensen than by using the standard ones. - It is demonstrated that RANS turbulence models can be validated for turbulent kinetic energy focusing on building roofs. - A new modification of the Durbin k — e turbulence model is proposed in order to obtain a better agreement of the recirculation distance between CFD simulations and experimental results. - A linear relationship between the recirculation distance on a flat roof and the constant factor involved in the calculation of the turbulence velocity time scale is demonstrated. This discovery can be used by the research community in order to improve the turbulence modeling in different solvers (OpenFOAM, Fluent, CFX, etc.). - The compatibility of both photovoltaic-solar and wind energies on building roofs is demonstrated. A decrease of turbulence intensity due to the presence of the solar panels is demonstrated. - Scaling issues are demonstrated between full-scale buildings and windtunnel reduced-scale models. The necessity of respecting the similitude constraints is demonstrated. Either full-scale measurements or wind-tunnel experiments using water as a medium are needed in order to accurately reproduce the wind flow around buildings, specially when dealing with complex shapes (as solar panels, etc.). - The most adequate position (most adequate roof region) for the different kinds of wind turbines is highlighted attending to both velocity and turbulence intensity. The wind turbine positioning was investigated for the most habitual kind of building-roof shapes (flat, pitched, shed, vaulted and spherical). - The most habitual roof-edge shapes (simple edge, railing, cantilever and curved) were investigated, and their effect on the wind flow on a highrise building roof were analysed from the point of view of the wind energy exploitation. - An optimum building-roof shape is proposed for the urban wind energy exploitation. Such optimization includes: state-of-the-art roof shapes test, analysis of the influence of the roof-edge shape on the wind flow, study of the roof-wall coupling, sensitivity analysis of the roof width, exploration of the aspect ratio of the building-roof shape and investigation of the effect of the neighbouring buildings (considering different surrounding heights) on the wind now on the target building roof. The investigations comprise analysis of velocity, turbulent kinetic energy and turbulence intensity for all the cases.

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The paper shows the design process of Nagele, a Dutch modernist agrarian settlement designed during the Post-Second World War period by the internationally recognized group of architects De 8 en Opbouw: Rietveld, Van Eesteren, Merkelbach, van Eyck, Bakema, Stam, Ruys, etc. It is located in the Noordoostpolder (NOP), in the Flevoland province, which was entirely reclaimed from the sea. The country planning of the Noodoostpolder reveals a high rationalization in the disposal of roads, canals, cities, agrarian land and forests, which can be an inspiration for the cities of today. The configurational elements of Nagele must be understood in terms of their relationship to the overall system of the polder. Important territorial principles in structure, form and landscape can be seen in the project of Nagele. This relationship is an additional example of the continuing transformation that the entire length and breadth of The Netherlands in subjected to. The research developed to date reveals a plan which shows the evolution of functionalistic paradigm at the CIAM postwar congresses. The particular case of Nagele points to the incorporation of human scale, green design and social co-existence. The source of these theories mainly came from Aldo van Eyck, who played an important role during the second phase of design. The research will be developed analyzing his drawings and texts and will show the way his theories appear in the project. Can Nagele be a materialization of Van Eyck¿s ideas? Nagele constitutes one of the most outstanding contributions to modern urban planning as far as both urbanism and landscape, are at the service of human well-being. Not only were urban independently designed parts, but their relationships also formed a perfect urban whole.

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The analysis of the wind flow around buildings has a great interest from the point of view of the wind energy assessment, pollutant dispersion control, natural ventilation and pedestrians wind comfort and safety. Since LES turbulence models are computationally time consuming when applied to real geometries, RANS models are still widely used. However, RANS models are very sensitive to the chosen turbulence parametrisation and the results can vary according to the application. In this investigation, the simulation of the wind flow around an isolated building is performed using various types of RANS turbulence models in the open source code OpenFOAM, and the results are compared with benchmark experimental data. In order to confirm the numerical accuracy of the simulations, a grid dependency analysis is performed and the convergence index and rate are calculated. Hit rates are calculated for all the cases and the models that successfully pass a validation criterion are analysed at different regions of the building roof, and the most accurate RANS models for the modelling of the flow at each region are identified. The characteristics of the wind flow at each region are also analysed from the point of view of the wind energy generation, and the most adequate wind turbine model for the wind energy exploitation at each region of the building roof is chosen.

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The European program HORIZON2020 aims to have 20% of electricity produced by renewable sources. The building sector represents 40% of the European Union energy consumption. Reducing energy consumption in buildings is therefore a priority for energy efficiency. The present investigation explores the most adequate roof shapes compatible with the placement of different types of small wind energy generators on high-rise buildings for urban wind energy exploitation. The wind flow around traditional state-of-the-art roof shapes is considered. In addition, the influence of the roof edge on the wind flow on high-rise buildings is analyzed. These geometries are investigated, both qualitatively and quantitatively, and the turbulence intensity threshold for horizontal axis wind turbines is considered. The most adequate shapes for wind energy exploitation are identified, studying vertical profiles of velocity, turbulent kinetic energy and turbulence intensity. Curved shapes are the most interesting building roof shapes from the wind energy exploitation point of view, leading to the highest speed-up and the lowest turbulence intensity.

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A historical study and a construction pathology survey were conducted prior to proposing a solution for restoring the upper windows on the south side of Old San Carlos College at Saragossa (16th-17th centuries), wich had been forteited to add a third storey to the cloister. Althought initially designed to a simple large hall format, the church is a harmonius blend of Aragonese Gothic architecture and typical Jesuit scheme, consisting in a central nave flanket by chapel-confessional and raised galleries for the community. A subsequent enlargement of the roof, wich rests on the original framing over the central nave, reduced the mechanical strength of the principal rafters on the opposite side, prompting a concomitant imbalance of forces that has affected the entire structure. In view of the foregoing, in addition to restituting the upper window, the proposal solution envisages restoring the roof over the central nave to its original design, and with the interior lighting in the church.

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Canonical test cases for sloshing wave impact problems are pre-sented and discussed. In these cases the experimental setup has been simpli?ed seeking the highest feasible repeatability; a rectangular tank subjected to harmonic roll motion has been the tested con?guration. Both lateral and roof impacts have been studied, since both cases are relevant in sloshing assessment and show speci?c dynamics. An analysis of the impact pressure of the ?rst four impact events is provided in all cases. It has been found that not in all cases a Gaussian ?tting of each individual peak is feasible. The tests have been conducted with both water and oil in order to obtain high and moderate Reynolds number data; the latter may be useful as simpler test cases to assess the capabilities of CFD codes in simulating sloshing impacts. The re-peatability of impact pressure values increases dramatically when using oil. In addition, a study of the two-dimensionality of the problem using a tank con?guration that can be adjusted to 4 di?erent thicknesses has been carried out. Though the kinemat-ics of the free surface does not change signi cantly in some of the cases, the impact pressure values of the ?rst impact events changes substantially from the small to the large aspect ratios thus meaning that attention has to be paid to this issue when reference data is used for validation of 2D and 3D CFD codes.

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Proof carrying code (PCC) is a general is originally a roof in ñrst-order logic of certain vermethodology for certifying that the execution of an un- ification onditions and the checking process involves trusted mobile code is safe. The baste idea is that the ensuring that the certifícate is indeed a valid ñrst-order code supplier attaches a certifícate to the mobile code proof. which the consumer checks in order to ensure that the The main practical difñculty of PCC techniques is in code is indeed safe. The potential benefit is that the generating safety certiñeates which at the same time: i) consumer's task is reduced from the level of proving to allow expressing interesting safety properties, ii) can be the level of checking. Recently, the abstract interpre- generated automatically and, iii) are easy and efficient tation techniques developed, in logic programming have to check. In [1], the abstract interpretation techniques been proposed as a basis for PCC. This extended ab- [5] developed in logic programming1 are proposed as stract reports on experiments which illustrate several is- a basis for PCC. They offer a number of advantages sues involved in abstract interpretation-based certifica- for dealing with the aforementioned issues. In particution. First, we describe the implementation of our sys- lar, the xpressiveness of existing abstract domains will tem in the context of CiaoPP: the preprocessor of the be implicitly available in abstract interpretation-based Ciao multi-paradigm programming system. Then, by code certification to deñne a wide range of safety propermeans of some experiments, we show how code certifi- ties. Furthermore, the approach inherits the automation catión is aided in the implementation of the framework. and inference power of the abstract interpretation en- Finally, we discuss the application of our method within gines used in (Constraint) Logic Programming, (C)LP. the área, of pervasive systems

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Esta tesis analiza las acciones de los pobladores en la creación, consolidación y transformación de su hábitat y en su relación con la política pública de vivienda y barrio en Chile. A partir de la observación directa en terreno y de la revisión de material proveniente de diversas fuentes afirmamos que, aunque los pobladores han hecho un trabajo de producción del hábitat de gran magnitud y generalizado, las políticas públicas no han reconocido suficientemente su papel en la construcción de la ciudad, no han incorporado a cabalidad las potencialidades e innovaciones surgidas de sus prácticas y estrategias, y nunca les han abierto un espacio claro en la toma de decisiones y en la puesta en obra de los programas habitacionales. En el contexto latinoamericano, la política habitacional chilena de los últimos 20 años se ha considerado un éxito y un ejemplo a seguir, puesto que ha demostrado ser eficaz en la disminución del déficit habitacional. Sin embargo, ha tenido efectos urbanos y sociales nefastos, como la construcción de extensos bolsones periféricos de pobreza que se degradan aceleradamente, y la desintegración social que genera la expulsión de los sin casa a la periferia, donde pierden sus redes familiares y sociales. Desde una trinchera opuesta, los allegados, los sin casa que viven al alero de otras familias y representan la mayoría de la demanda por vivienda, exigen quedarse en barrios ya consolidados y evitan las periferias, en parte por mantener una red familiar y social que se sustenta en la proximidad física, en parte por los equipamientos y servicios con que cuentan estos barrios y la cercanía a las fuentes de empleo. Al mismo tiempo, los responsables de diseñar la política habitacional no han buscado establecer una forma de colaboración con los pobladores —principales receptores de la política— con el fin ajustar los programas públicos a las necesidades de las familias de bajos ingresos y a las realidades socioculturales de sus barrios. Por el contrario, han privilegiado una alianza con el sector privado, que conoce muy limitadamente las demandas de las familias. Así, en lugar de construir ciudades más justas, la política habitacional ha alimentado un mercado inmobiliario sustentado en la especulación del suelo y fomentado la industria de la construcción. La pregunta que guía esta investigación es cómo incorporar el conocimiento acumulado y los procedimientos probados por los pobladores al diseño y la implementación de programas habitacionales y urbanos que promuevan procesos de regeneración de las poblaciones y mejoren la distribución de la vivienda social en la ciudad. Sostenemos que los pobladores, a lo largo de una trayectoria de más de medio siglo, han adquirido y consolidado todas las competencias para construir vivienda, mejorar sus barrios e incorporarse a la discusión sobre ordenamiento territorial. Así, hoy están capacitados para asumir un papel protagónico en la definición de políticas públicas que apunte a la construcción de ciudades más sostenibles y equitativas. La producción social del hábitat vinculada al derecho a la ciudad y a la participación de los pobladores «desde abajo» está bastante documentada en la literatura latinoamericana. En Chile se han escrito numerosos trabajos y evaluaciones sobre la política habitacional, pero los estudios sobre el movimiento de pobladores, enfocados desde las ciencias sociales o multidisciplinares, tienen un auge primero, durante los años 60 y principios de los 70 y luego, en la segunda mitad de los 80, pero posteriormente dejan de publicarse, a excepción de algunas investigaciones de historia urbana o social. En cuanto a los estudios que abordan las acciones de los pobladores desde una mirada puesta en los resultados de la producción y la gestión habitacional y urbana, estos han sido especialmente escasos y ninguno abarca un período largo. La tesis aborda entonces las acciones específicas que emprenden los pobladores a distintas escalas territoriales —el conjunto, el barrio, la población, la ciudad y el país—, su relación con la política habitacional y su articulación con los demás actores que intervienen en la producción material del hábitat. Lo realizado por los pobladores se estudia a la luz del largo plazo, desde la promulgación de la primera ley de vivienda en 1906 hasta nuestros días, con el énfasis puesto entre los años 1990 y 2010, período de producción masiva y sostenida de vivienda social, financiada por el Estado y construida por el sector privado en la periferia urbana, y más detalladamente entre 2006 y 2010, cuando los pobladores irrumpen con la «gestión vecinal» y la «autogestión» como medios para implementar los programas habitacionales del gobierno. Para ello se recorre toda la trayectoria y se complementa con procesos particulares, a la manera de un lente de acercamiento con el cual se focalizan y amplifican trece casos de estudios, para ilustrar modos de producción y gestión concretos y mostrar cómo estos se inscriben en modos de hacer genéricos de los pobladores. Finalmente, con el lente centrado en el último ciclo de este proceso escribimos el capítulo inédito de los últimos veinte años de esta historia. Primero se realiza la reconstrucción de tres casos de estudio «en profundidad», que incluyen la génesis, la consolidación y las transformaciones del conjunto o barrio. Estos casos de estudio «en profundidad» se ponen en perspectiva reconstruyendo la trayectoria histórica de la producción y gestión realizada por los pobladores. Esta reconstrucción de largo período se profundiza con tres casos de estudio «específicos», de dimensión histórica, que tratan el conflicto del acceso a suelo. Finalmente se analizan las interrogantes que plantean estos procesos hoy en día para la producción y gestión de vivienda y barrio a futuro, a partir de entrevistas a actores claves y de la reconstrucción de siete casos de estudio «específicos» de acceso a suelo ilustrativos del período actual. La tesis sustenta que los pobladores, con las acciones de gestión y autogestión que realizan desde 2006, e interviniendo en la discusión sobre los instrumentos de planificación territorial a partir del mismo año, se sitúan actualmente en una nueva plataforma de acción y negociación desde la cual pueden incorporarse, con todas las competencias necesarias, a la definición de las políticas públicas y así dotarlas de pertinencia y coherencia para contribuir a superar la pobreza con respuestas más acorde a sus realidades. ABSTRACT This thesis analyzes the actions of pobladores in the creation, consolidation and transformation of their habitat and their relationship with Chilean public housing and neighbourhood policy. Through direct observation in the field and the review of material from various sources we can affirm that although the pobladores have undertaken widespread work in the production of their environment, public policies have not sufficiently recognized their role in the construction of the city. Public policy has failed to fully incorporate the potential and innovation arising from practices and strategies employed by social housing recipients and has never opened a clear space for them in decision-making or the commissioning work of the housing programs. Within the Latin America context, the Chilean housing policy of the past 20 years has been considered a success and an example to follow given that it has proven effective in reducing the housing deficit. However it has had disastrous urban and social effects, such as construction of large peripheral pockets of poverty that degrade rapidly, and generates social disintegration through the expulsion of the homeless to the periphery, where they lose their family and social networks. On another front those homeless who live under the roof of relatives and who represent the majority of demand for social housing, request to stay in consolidated neighbourhoods avoiding the periphery, partly to maintain family and social networks based on physical proximity and partly because of the facilities and services available in these neighbourhoods and their adjacency to sources of employment. At the same time, those responsible for designing housing policy have not sought to establish a form of collaboration with the pobladores in order to adjust the public programs to the needs of low-income families and the socio-cultural realities of their neighbourhoods. On the contrary an alliance with the private sector has been favored, a sector which has very limited knowledge of the demands of the recipients. Therefore instead of building more equal cities, housing policy has fueled a housing market which supports land speculation and promotes the construction industry. The question leading this research is how to incorporate the accumulated knowledge and proven procedures of the pobladores in the design and implementation of programs that promote housing and urban regeneration processes and which could improve the distribution of social housing in the city. We maintain that social housing recipients over the course of half a century have acquired and consolidated all the skills to build housing, improve neighborhoods and join the discussion on city planning. These residents are now capable of assuming a leading role in defining public policies that aim to build more sustainable and equitable cities. The social production of the environment linked to the right to the city and resident participation from the «bottom-up» is well documented in Latin American literature. In Chile there are extensive written works and assessments on housing policy with multidisciplinary or social science studies on the movement of the pobladores peaking during the 60’s and early 70’s and then again in the second half of the 80’s but afterwards this stops, with the exception of some research on social or urban history. As for studies that address the actions of the pobladores looking at the results of production and housing and urban management these have been particularly scarce and none of which cover a long period of time. The thesis then addresses the specific actions undertaken by the pobladores at different territorial levels; the housing development, the neighbourhood, the community, the city and State, and their relation to housing policy and its coordination with other actors involved in the production process of the built environment. The accomplishments of the pobladores is studied over the long term, since the enactment of the first housing law in 1906 to the present, with an emphasis between 1990 and 2010, a period of mass production and sustained social housing which was State-funded and built by the private sector in the urban periphery, and in particular between 2006 and 2010, when the pobladores break with the «neighborhood management» and «self-management» as a means to implement the housing programs of the government. To this end the entire process is outlined and is complemented by specific processes which are placed under a lens in order to focus and amplify thirteen case studies illustrating actual ways of production and management and to show how these ways of doing things are generic to the pobladores. Finally, with the lens focused on the last cycle of this process we write the new chapter of the last twenty years of this history. First there is a reconstruction of three case studies «in depth», including their origins, consolidation and the transformation of the sector or neighborhood. These «in depth» case studies are put into perspective reconstructing the historical trajectory of the production and management by the pobladores. This reconstruction over a long period is given great depth by three «specific» case studies, of historical importance, dealing with the conflict of access to land. Finally we analyze the questions raised by these processes for the production and management of housing and neighborhood in the future, based on interviews with key players and the reconstruction of seven case studies specifically regarding access to land and which are illustrative of current practice. The thesis maintains that since 2006 the pobladores through actions of management and selfmanagement and their intervention in the debate on territorial planning has placed them on a new platform for action and negotiation from which they can incorporate themselves, with all the necessary capacities, in the definition of public policy and therefore provide it with a pertinence and coherence to help towards overcoming poverty with answers more according to their realities.