8 resultados para SPACE DISTRIBUTION
em Universidad Politécnica de Madrid
Elementos peatonales de las ciudades medias españolas : tipos, orígenes, relaciones y articulaciones
Resumo:
A través de esta tesis se busca aportar un análisis de los elementos peatonales que cubren las necesidades y las infraestructuras de apoyo al peatón, siendo un campo poco desarrollado en nuestro país a diferencia de otros como Dinamarca, Reino Unido, Alemania y Holanda, donde las actuaciones peatonales ejecutadas son tradicionales y muy exitosas. Se trata por tanto de un tema poco estudiado pero que adquiere singular importancia en estos años de búsqueda de nuevos modelos urbanos que eviten el derroche de recursos, y avancen hacia formas de movilidad más adecuadas a un mundo limitado y vulnerable. La investigación tiene un carácter eminentemente descriptivo cuyo principal valor es documentar y analizar sistemáticamente una realidad poco conocida, aportándose datos para entender el origen y desarrollo de las actuaciones peatonales. El propósito es ayudar a cimentar este campo en nuestro país, definiendo con precisión el estado de la cuestión geográficamente y dejando para un futuro una cartografía temática completa. El objeto general es estudiar y comprender los elementos peatonales de un número limitado de ciudades medias españolas, marcándose como objetivos específicos los siguientes: - Identificar y describir los principales elementos que conforman la red peatonal de las ciudades. ‐ Estudiar las tipologías espaciales dominantes, sus características y orígenes, pudiendo distinguir de un lado, las desarrolladas en la ciudad consolidada, como las actuaciones en los cascos antiguos; y por otro, las ejecutadas en la ciudad nueva a través de fórmulas arquitectónicas generalmente residenciales con espacios peatonales adjuntos. ‐ Analizar los referidos elementos para comprobar si han conformado redes de uso peatonal, si se han constituido articulando la ciudad como en el caso de los ejes lineales en las ciudades con río o mar, o si han influenciado el carácter del entorno en el que se han realizado, centrando el interés en los cascos históricos peatonalizados. ‐ Comprobar si hay actuaciones complementarias a los procesos de urbanización y mejora urbanística, así como la aprobación de ayudas y subvenciones para afrontar las mismas. ‐ Finalmente, describir y evaluar los procesos y procedimientos mediante los que se produce la peatonalización de determinadas áreas urbanas, los orígenes, los instrumentos y fechas de su puesta en marcha, aportando una cronología peatonal. La metodología comienza con la acotación de 22 ciudades españolas, capitales de provincia con una población entre 100.000 y 500.000 habitantes según los datos del INE del año 2009. La distribución es equilibrada con la selección de ciudades de costa, de interior, con río/ría, con carácter patrimonial, ciudades en islas, etc. El análisis de los elementos peatonales de estas urbes se realiza gracias a la gran resolución de las bases cartográficas públicas y privadas que hay en la actualidad en internet, especialmente con el uso de las herramientas de Google Earth y Google Maps en su versión “street view”, softwares que permiten un paseo virtual de cada ciudad detallándose con gran precisión las actuaciones peatonales. Las ciudades elegidas son: ‐ 11 ciudades costeras: Alicante, Almería, Bilbao, Cádiz, Castellón de la Plana, Huelva, Las Palmas de Gran Canaria, Palma de Mallorca, Santander, San Sebastián y Tarragona. ‐ 11 ciudades de interior: Albacete, Burgos, Córdoba, León, Lérida, Logroño, Oviedo, Murcia, Pamplona, Valladolid y Vitoria. Finalmente, por tener los porcentajes mas elevados de las áreas peatonales de sus casco histórico, se eligen 3 casos de ciudades representativas para un desarrollo peatonal en profundidad, seleccionándose Burgos, San Sebastián y Pamplona. Otros aspectos metodológicos interesantes a destacar, es la extensa documentación adquirida a través de las fuentes de Internet, sobre todo a la hora de desarrollar el último capítulo “Procesos de peatonalización de las ciudades españolas” centrado en las 3 ciudades elegidas. Se consulta las hemerotecas de periódicos locales, los boletines oficiales, las actas de los plenos de los Ayuntamientos y los documentos de planificación (Planes Generales, Planes Especiales, Planes y Proyectos Municipales, Planes de Movilidad), adquiriéndose una precisa información en cuanto a la cronología de las fechas y extensión del trabajo. Se complementa la metodología con las entrevistas a actores claves en el proceso peatonal, como el personal técnico de los Ayuntamiento y los técnicos redactores de los proyectos; y con la colaboración directa de los técnicos de los consistorios de las 3 ciudades seleccionadas, aportando todo tipo de información demandada. En la tesis, se introduce los elementos peatonales mediante el estudio de los espacios peatonales y los procesos de peatonalización existentes, a través del análisis de la literatura consultada aportándose información valiosa en cuanto a la definición de los modelos peatonales, exponiéndose una breve historia de las peatonalizaciones. Destacan las publicaciones de los expertos europeos en la materia como los autores Carmen Hass-Klau, Rolf Monheim, Rob Krier y Collin Buchanan. En España, las actuaciones peatonales fueron tardías en el tiempo en comparación con el resto de Europa, con casi 40 años de retraso. Las referencias bibliográficas españolas en esta materia son escasas siendo las mas significativas las realizadas por Alfonso Sanz y por el profesor Julio Pozueta destacando una de sus últimas publicaciones “La ciudad paseable” describiéndose los elementos peatonales existentes en las ciudades, sirviendo como modelo y ejemplo para esta investigación. En base a lo anterior, se definen los elementos peatonales como aquellos espacios públicos libres de edificación que, por sus características y diseño, garantizan un confortable uso estancial, de tránsito peatonal y están expresamente reservados para ello. En la tesis se detectan y se especifican los siguientes elementos peatonales: las calles y plazas peatonales, las aceras y bulevares de una anchura superior a 8 metros, los paseos peatonales, los elementos de paso (tradicionales y mecánicos), espacios peatonales ligados a nuevas áreas residenciales, los soportales y pasajes peatonales con una anchura mínima de 4 metros, recintos feriales, espacios libres y zonas verdes y parques. Para cada una de las 22 ciudades seleccionadas se realiza un exhaustivo inventario de los anteriores elementos a través de fichas, aportando un gran número de proyectos individuales ejecutados en cada urbe. Esta información se recoge gráficamente en 2 fotoplanos, conformándose como herramientas fundamentales para esta investigación. El Fotoplano 1 se hace sobre la base de la ciudad del Google Earth diferenciándose las áreas peatonales y las zonas verdes. En el Fotoplano 2, y con el soporte anterior, se distinguen las tipologías persistentes y dominantes como son los grandes ejes peatonales, las redes peatonales locales y los elementos peatonales singulares. Finalmente, a partir de los 2 fotoplanos, se realiza la denominada “Huella peatonal” que destaca por su atractivo y pregnancia, algo de lo que el campo de lo peatonal es muy útil. A través de la huella se obtiene una rápida información al tener el plano dos colores, color naranja para lo peatonal (formado por las áreas peatonales y zonas verdes) y color negro para el resto el resto no peatonal. Toda esta documentación gráfica y descriptiva de los elementos peatonales de cada ciudad, queda ampliamente recogida en el Anexo de la tesis. La “Huella peatonal” se considera como el plano básico en la investigación obteniendo una percepción rápida, clara y visual del espacio peatonal de cada ciudad. Se arroja información morfológica con respecto a la distribución espacial, articulación, equilibrio, modulación, cohesión, concentración peatonal, etc. de cada una de las ciudades seleccionadas. A través de la huella se resuelve muchos de las cuestiones enmarcadas como objetivos de la tesis, comprobándose de forma general, que los elementos peatonales dentro de la trama urbana están desarticulados ya que no hay una estructura que module la ciudad como un conjunto cohesionado. Se localizan pequeñas redes conectadas entre sí, que de forma heterogénea, están dispersas por la ciudad. Se verifica que los elementos peatonales con mayor concentración y presencia en las ciudades analizadas son los ejes peatonales, los cascos históricos y los elementos peatonales en las nuevas áreas residenciales. En la investigación, además de estos 3 elementos mencionados, se analiza con mayor profundidad otros tipos que destacan por su persistencia y repetición en la “Huella peatonal” de cada una de las 22 ciudades, como son las plazas peatonales, los soportales y los elementos singulares peatonales: espacios tradicionales (recintos feriales, pasajes, puentes históricos), nuevos elementos peatonales (pasarelas peatonales, elementos mecánicos de paso), áreas peatonales entorno a edificios culturales y otros casos como los consistentes en la recuperación y transformación de edificaciones y construcciones urbanas de diferente uso y tipología, en nuevas áreas peatonales. Se aporta luz sobre su definición, localización, cronología, proporción, presencia y génesis, facilitando resultados de cada uno de ellos. De forma paralela, se obtiene información de índole cuantitativa a través de las mediciones de la huella, obteniéndose datos y porcentajes de extensión de la ciudad, de las zonas peatonales y de las zonas verdes, de los cascos históricos y de sus superficies peatonales, de los metros lineales de dichos cascos históricos y de sus calles peatonales. Se proporcionan ratios e índices que se consideran fundamentales para una mejor comprensión peatonal de cada urbe. Se establece una clasificación de las ciudades en cada uno de los ámbitos descritos, destacando las ciudades de Pamplona, San Sebastián y Burgos por arrojar las cifras peatonales más positivas encabezando la mayoría de las tablas clasificatorias. La peor ciudad valorada es Alicante, seguida según criterio, de Almería, Palma de Mallorca y Las Palmas de GC. En el capítulo final de la investigación, se eligen las ciudades de Burgos, San Sebastián y Pamplona como casos de estudio representativos. El objetivo es obtener un conocimiento más preciso en cuanto a su origen, cronología y procesos de las peatonalizaciones. Cada ciudad se compone de un cuadro cronológicos por etapas, desarrollándose de forma exhaustiva cada una de ellas, enunciadas normalmente, como instrumentos de planeamiento o proyectos de urbanización, acompañadas de los planos de las actuaciones peatonales. Al final de cada etapa se aportan datos de las cifras de las peatonalizaciones que se van realizando, con un cuadro numérico de localizaciones, superficie peatonal, superficie reurbanizada, longitud peatonal y el grado de peatonalización del casco histórico, además de los datos acumulados por etapa. De las conclusiones cruzadas de estas 3 ciudades, destaca la comprobación de la tendencia de ir peatonalizando los centros antiguos llegando incluso al 100% de calles peatonales en el caso de San Sebastián. No obstante, es difícil confirmar si el objetivo es una peatonalización global de los cascos, ya que son muchas las variables que afectan e influyen en el proceso peatonal de cada ciudad. Se coteja adicionalmente cómo se extiende la cultura peatonal desde el interior al exterior, mas allá de los cascos históricos hacia los ensanches próximos. En cuanto al origen de las peatonalizaciones, se concluye que no hay una concepción inicial y teórica marcada, a partir de la cual se va desarrollando la trama peatonal de cada ciudad. Se puede afirmar que los procesos peatonales ejecutados son variados y de diversa índole, sin poder precisar un hecho como causa principal. Según el momento y las circunstancias, las peatonalizaciones responden a distintas iniciativas promovidas por los comerciantes, por las administraciones locales o por los técnicos de planeamiento, con sus expertas aportaciones en los planes. Estos tres agentes actúan como impulsores de proyectos individuales peatonales que se van solapando en el tiempo. Como punto final de la tesis, se propone una serie de nuevas líneas de investigación que pueden servir como estudio adicional y complementario, respondiendo a aspectos tan relevantes como cuestiones de índole económica, social y de movilidad, fuertemente ligadas a las peatonalizaciones, tal y como se demuestra en la literatura consultada. ABSTRACT This thesis aims to analyse the pedestrian elements dealing with the needs and infrastructures that support pedestrians, as this is a field that is little developed in our country, in comparison to other regions such as Denmark, the United Kingdom, Germany and the Netherlands, where the pedestrian actions implemented are traditional and highly successful. Therefore, even though little research has been done about this topic, this field is increasingly important throughout these years of search for urban models intended to prevent the waste of resources and to develop new mobility ways, more adapted to a limited, vulnerable world. This research is essentially descriptive and it mainly aims to document and systematically analysed a scarcely known reality by providing data in order to understand the origin and development of pedestrian actions. This thesis intends to lay the foundations of this field in Spain, accurately defining the state of the art from a geographical point of view and preparing a full thematic map that may be used in the future. The overall aim is to study and understand the pedestrian elements of a limited number of Spanish medium-size cities, establishing the following specific goals: - To identify and describe the main elements comprising cities' pedestrian networks. - To study of special predominant typologies, their features and origins, with the possibility to, on the one hand, make a difference between the typologies developed in well-established cities, such as the actions in historic quarters, and, on the other hand, those implemented in new cities through generally residential architectural formulae with adjoining pedestrian areas. - To analyse the said elements in order to check whether they have resulted in pedestrian-use networks, whether they have been established by organising the city, such as the linear axes in coastal and riverside cities, or whether they have had an impact on the character of the areas where these elements have been implemented, focusing on pedestrian historic quarters. - Check whether there are actions supplementary to the urban development and urban improvement processes, as well as the approval of financial support and subventions to deal with these actions. - Finally, to describe and assess the processes and procedures by which the pedestrianisation of certain urban areas is carried out, the origins, the instruments and the date of their implementation, providing a pedestrian timeline. The methodology starts by defining 22 Spanish cities, province capitals with a population ranging from 100,000 to 500,000 inhabitants, according to the data recorded by the Spanish Statistics Institute (INE) in 2009. The distribution of coastal, riverside and interior cities, as well as of patrimonial cities and cities in islands, etc. is well balanced. The analysis of the pedestrian elements of these cities is made with the great resolution of the public and private map databases that can be accessed on the Internet, especially using the "street-view" version of tools such as Google Earth and Google Maps, software applications that allow to go for a virtual walk in each city, providing highly precise details about the pedestrian actions. The following cities have been chosen: ‐ 11 coastal cities: Alicante, Almería, Bilbao, Cádiz, Castellón de la Plana, Huelva, Las Palmas de Gran Canaria, Palma de Mallorca, Santander, San Sebastián and Tarragona. ‐ 11 interior cities: Albacete, Burgos, Córdoba, León, Lérida, Logroño, Oviedo, Murcia, Pamplona, Valladolid and Vitoria. Finally, as they have the highest percentages regarding the pedestrian areas found in the historic quarters, 3 cities representing a deep pedestrian development have been chosen: Burgos, San Sebastián and Pamplona. Other significant methodological aspects are the many documents found from online sources, especially when preparing the last chapter: “Processes for the pedestrianisation of Spanish cities”, which focuses on the 3 cities chosen. Local newspaper and periodical libraries, official gazettes, the minutes of plenary sessions of councils and the zoning regulation documents (General Zoning Plans, Special Zoning Plans, Municipal Plans and Projects, Mobility Plans, etc.) have been consulted, obtaining accurate information regarding the timeline and the extension of the works carried out. The methodology is supplemented by interviews with key players in the pedestrianisation process, such as the technical staff in councils and the officers drafting and designing the projects, as well as with the direct collaboration by the officers of the councils of the 3 cities chosen, who provided all the information requested. The thesis introduces the pedestrian elements by studying pedestrian areas and existing pedestrianisation processes through the analysis of the literature consulted, providing valuable information for the definition of pedestrian models and showing a brief history and background of the pedestrianisation process. Remarkable papers published by some European experts in the field, such as Carmen Hass-Klau, Rolf Monheim and Collin Buchanan, are covered in the thesis. In Spain, the pedestrianisation actions were late in time in comparison to the rest of Europe, with at least 40 years of delay. The Spanish literature references in this field are limited. The most significant papers are those published by Alfonso Sanz and by Professor Julio Pozueta, with a special mention of one of his last works "La ciudad paseable" (The Walkable City), which describes the pedestrian elements found in the cities and is used a model and an example for this research. Based on the elements above, pedestrian elements are defined as those construction-free public areas that, due to their features and design, ensure the comfortable, convenient use of the spaces, characterised by pedestrian traffic and specifically reserved for this purpose. The thesis detects and specifies the following pedestrian elements: pedestrian streets and squares, pavements (sidewalks) and boulevards with a width exceeding 8 metres, pedestrian promenades, crossing elements (traditional and mechanical), pedestrian spaces linked to new residential areas, colonnades and pedestrian passages or narrow streets with a minimum width of 4 metres, exhibition sites, free spaces and green areas and parks. For each of the 22 cities chosen, a thorough inventory of the elements mentioned above has been made by using worksheets, providing a significant number of individual projects developed in each city. This information is graphically collected and displayed on 2 photomaps, resulting in tools essential for this research. Photomap 1 is made based on the city displayed by Google Earth, making a difference between pedestrian areas and green areas. On Photomap 2, using the tool mentioned above, a difference can be made between persistent and predominant typologies, such as the big pedestrian axes, the local pedestrian networks and singular pedestrian elements. Finally, the 2 photomaps are used in order to establish the so-called "pedestrian footprint", which is highlighted by its attractiveness and appeal, concepts for which the pedestrian field is very useful. With the pedestrian footprint, quick information can be obtained, since the map shows two colours: orange for pedestrian elements (made up of pedestrian areas and green areas) and black for the other non-pedestrian elements. A significant part of these graphic, descriptive documents about each city's pedestrian elements can be found in the thesis appendix. The "Pedestrian Footprint" is regarded in the research as the basic map, obtaining a quick, clear and visual perception of each city's pedestrian space. This footprint provides morphological information regarding the space distribution, the organisation, the balance, the modulation, the cohesion, the pedestrian concentration, etc. in each of the cities chosen. The pedestrian footprint helps solve many of the questions established as the thesis goals, proving that, in general, the pedestrian elements are not organised in the urban plot, as there is no structure modulating the city as a properly linked set of elements. Small networks linked to each other and heterogeneously scattered all over the city are found. It has been verified that the pedestrian elements with the highest concentration and presence in the cities analysed are the pedestrian axes, the historic quarters and the pedestrian elements found in the new residential areas. Besides these 3 elements mentioned, the research analyses in depth other types that are remarkable due to their persistence and repetition in the "Pedestrian Footprint" of each of the 22 cities, such as the pedestrian squares, the colonnades and the singular pedestrian elements: traditional spaces (exhibition sites, passages, historic bridges), new pedestrian elements (pedestrian footbridges, mechanical crossing elements), pedestrian areas around cultural buildings and other cases such as those consisting of recovering and transforming building and urban constructions, intended for a wide range of purposes and of different types, into new pedestrian areas. This work puts light on the definition, location, timeline, proportion, presence and origin, providing results for each of these concepts. At the same time, quantitative information is obtained by measuring the footprint, getting data and percentages on the size of the city, the pedestrian areas and the green areas, the historic quarters and the pedestrian zones, the linear metres of such historic quarters and pedestrian streets. The footprint also provides ratios and rates that are considered as essential in order to better understand the pedestrian elements of each city. A classification of cities is established for each of the areas described, highlighting the cities of Pamplona, San Sebastián and Burgos, as they provide the most positive pedestrian figures and lead most of the classification tables or rankings. According to the criteria considered, the city with the worst values is Alicante, followed by Almería, Palma de Mallorca and Las Palmas de Gran Canaria. In the final chapter in the thesis, the cities of Burgos, San Sebastián and Pamplona are chosen as representative study cases. The aim is to gain more accurate knowledge regarding the pedestrianisation origin, timeline and processes. Each city comprises a chronological sequence made of stages, each of which is thoroughly developed and usually announced as zoning plans or urban development projects, accompanied by the plans of the pedestrian actions. At the end of each stage, data with the figures of the pedestrianisation projects are provided, including a numerical chart with locations, pedestrian area, redeveloped urban areas, pedestrian length and pedestrianisation degree in the historic quarter, as well as the data cumulated throughout each stage. In the crossed conclusions on the three cities, the trend of gradually pedestrianising the historic quarters (even reaching the 100% of the pedestrian streets as in San Sebastián) is verified. However, it is difficult to confirm whether the purpose is to reach an overall pedestrianisation of the historic quarters, since there are many variables that affect and influence each city's pedestrianisation process. In addition, the spread of the pedestrian culture from the internal areas to the external areas, beyond the historic quarters to the nearby expansion areas, is compared. Regarding the origin of pedestrianisations, the thesis comes to the conclusion that there is no initial or theoretical conception from which each city's pedestrian plot is developed. The pedestrian processes implemented are varied and diverse but no fact can be specified as the main cause. Based on the moment and circumstances, the pedestrianisation processes are due to different initiatives promoted by shopkeepers, by the local administrations or by the zoning officers, with their expert contributions to the plans. These three players promote and drive individual pedestrianisation projects that overlap in the course of time. Finally, new lines of research are put forwards, as they can be taken as an additional study and as a supplement to this research, dealing with aspects as significant as the economic, social and mobility factors, closely linked to the pedestrianisation processes, as proven in the literature consulted.
Resumo:
The study of soil structure, i.e., the pores, is of vital importance in different fields of science and technology. Total pore volume (porosity), pore surface, pore connectivity and pore size distribution are some (probably the most important) of the geometric measurements of pore space. The technology of X-ray computed tomography allows us to obtain 3D images of the inside of a soil sample enabling study of the pores without disturbing the samples. In this work we performed a set of geometrical measures, some of them from mathematical morphology, to assess and quantify any possible difference that tillage may have caused on the soil. We compared samples from tilled soil with samples from a soil with natural vegetation taken in a very close area. Our results show that the main differences between these two groups of samples are total surface area and pore connectivity per unit pore volume.
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Abstract The cloud forest is a special type of forest ecosystem that depends on suitable conditions of humidity and temperature to exist; hence, it is a very fragile ecosystem. The cloud forest is also one of the richest ecosystems in terms of species diversity and rate of endemism. However, today, it is one of the most threatened ecosystems in the world. Little is known about tree species distribution and coexistence among cloud forest trees. Trees are essential to understanding ecosystem functioning and maintenance because they support the ecosystem in important ways. For this dissertation, an analysis of woody plant species distribution at a small scale in a north-Peruvian Andean cloud forest was performed, and some of the factors implicated in the observed patterns were identified. Towards that end, different natural factors acting on species distribution within the forest were investigated: (i) intra-specific arrangements, (ii) heterospecific spatial relationships and (iii) relationships with external environmental factors. These analyses were conducted first on standing woody plants and then on seedlings. The woody plants were found to be clumped in the forest, either considering all the species together or each species separately. However, each species presented a specific pattern and specific spatial relationship among different-age individuals. Dispersal mode, growth form and shade tolerance played roles in the final distribution of the species. Furthermore, spatial associations among species, either positive or negative, were observed. These associations were more numerous when considering individuals of the interacting species at different developmental stages, i.e., younger individuals from one species and older individuals from another. Accordingly, competition and facilitation are asymmetric processes and vary throughout the life of an individual. Moreover, some species appear to prefer certain habitat conditions and avoid other habitats. The habitat definition that best explains species distribution is that which includes both environmental and stand characteristics; thus, a combination of these factors is necessary to understanding species' niche preferences. Seedling distribution was also associated with habitat conditions, but these conditions explained less than the 30% of the spatial variation. The position of conspecific adult individuals also affected seedling distribution; although the seedlings of many tree species avoid the vicinity of conspecifics, a few species appeared to prefer the formation of cohorts around their parent trees. The importance of habitat conditions and distance dependence with conspecifics varied among regions within the forest as well as on the developmental stage of the stand. The results from this thesis suggest that different species can coexist within a given space, forming a “puzzle” of species as a result of the intra- and interspecific spatial relationships along with niche preferences and adaptations that operate at different scales. These factors not only affect each species in a different way, but specific preferences also vary throughout species' lifespans. Resumen Resumen El bosque de niebla es uno de los ecosistemas más amenazados del mundo además de ser uno de los más frágiles. Son formaciones azonales que dependen de la existencia de unas condiciones de humedad y temperatura que permitan la formación de nubes que cubran el bosque; lo que dificulta en gran medida su conservación. También es uno de los ecosistemas con mayor riqueza de especies además de tener uno de los mayores porcentajes de endemismos. Uno de los aspectos más importantes para entender el ecosistema, es identificar y entender los elementos que lo componen y los mecanismos que regulan las relaciones entre ellos. Los árboles son el soporte del ecosistema. Sin embargo, apenas hay información sobre la distribución y coexistencia de los árboles en los bosques de niebla. Esta tesis presenta un análisis de la distribución a pequeña escala de las plantas leñosas en un bosque de niebla situado en la cordillera andina del norte de Perú; así como el análisis de algunos de los factores que pueden estar implicados en que se origine la distribución observada. Para este propósito se estudia cómo influyen factores de diferente naturaleza en la distribución de las especies (i) organización intra-específica (ii) relaciones espaciales heterospecíficas y (iii) relación con factores ambientales externos. En estos análisis se estudiaron primero las plantas jóvenes y las adultas, y después las plántulas. Los árboles aparecieron agregados en el bosque, tanto considerando todos a la vez como cuando se estudió cada especie por separado. Sin embargo, cada especie mostró un patrón distinto así como una particular relación espacial entre individuos jóvenes y adultos. El modo de dispersión, la forma de vida y la tolerancia de la especies estuvieron relacionados con el patrón general observado. Se vio también que ciertas especies aparecían relacionadas con otras, tanto de forma positiva (compartiendo zonas) como negativa (apareciendo en áreas distintas). Las asociaciones fueron mucho más numerosas cuando se consideraron los pares de especies en diferente estado de desarrollo, es decir, individuos jóvenes de una especie e individuos mayores de la otra. Eso indicaría que los procesos de competencia y facilitación son asimétricos y además varían durante la vida de la planta. Por otro lado, algunas especies aparecen preferentemente bajo ciertas condiciones de hábitat y evitan otras. La definición de hábitat a la que mejor responden las especies es cuando se incluyen tanto variables ambientales como de masa; así que ambos tipos de variables son necesarias para entender la preferencia de las especies por ciertos nichos. La distribución de las plántulas también estuvo relacionada con condiciones de hábitat, pero eso sólo llegaba a explicar hasta un 30% de la variabilidad espacial. La posición de los adultos de la misma especie también afectó a la distribución de las plántulas. En bastantes especies las plántulas evitan la cercanía de adultos de su misma especie, padres potenciales, aunque algunas especies aisladas mostraron el patrón contrario y aparecieron preferentemente en las mismas áreas que sus padres. La importancia de las condiciones de hábitat y posición de los adultos en la disposición de las plántulas varía de una zona a otra del bosque y además también varía según el estado de desarrollo de la masa.
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This paper proposes a new multi-objective estimation of distribution algorithm (EDA) based on joint modeling of objectives and variables. This EDA uses the multi-dimensional Bayesian network as its probabilistic model. In this way it can capture the dependencies between objectives, variables and objectives, as well as the dependencies learnt between variables in other Bayesian network-based EDAs. This model leads to a problem decomposition that helps the proposed algorithm to find better trade-off solutions to the multi-objective problem. In addition to Pareto set approximation, the algorithm is also able to estimate the structure of the multi-objective problem. To apply the algorithm to many-objective problems, the algorithm includes four different ranking methods proposed in the literature for this purpose. The algorithm is applied to the set of walking fish group (WFG) problems, and its optimization performance is compared with an evolutionary algorithm and another multi-objective EDA. The experimental results show that the proposed algorithm performs significantly better on many of the problems and for different objective space dimensions, and achieves comparable results on some compared with the other algorithms.
Resumo:
The biggest problem when analyzing the brain is that its synaptic connections are extremely complex. Generally, the billions of neurons making up the brain exchange information through two types of highly specialized structures: chemical synapses (the vast majority) and so-called gap junctions (a substrate of one class of electrical synapse). Here we are interested in exploring the three-dimensional spatial distribution of chemical synapses in the cerebral cortex. Recent research has showed that the three-dimensional spatial distribution of synapses in layer III of the neocortex can be modeled by a random sequential adsorption (RSA) point process, i.e., synapses are distributed in space almost randomly, with the only constraint that they cannot overlap. In this study we hypothesize that RSA processes can also explain the distribution of synapses in all cortical layers. We also investigate whether there are differences in both the synaptic density and spatial distribution of synapses between layers. Using combined focused ion beam milling and scanning electron microscopy (FIB/SEM), we obtained three-dimensional samples from the six layers of the rat somatosensory cortex and identified and reconstructed the synaptic junctions. A total volume of tissue of approximately 4500μm3 and around 4000 synapses from three different animals were analyzed. Different samples, layers and/or animals were aggregated and compared using RSA replicated spatial point processes. The results showed no significant differences in the synaptic distribution across the different rats used in the study. We found that RSA processes described the spatial distribution of synapses in all samples of each layer. We also found that the synaptic distribution in layers II to VI conforms to a common underlying RSA process with different densities per layer. Interestingly, the results showed that synapses in layer I had a slightly different spatial distribution from the other layers.
Resumo:
In the cerebral cortex, most synapses are found in the neuropil, but relatively little is known about their 3-dimensional organization. Using an automated dual-beam electron microscope that combines focused ion beam milling and scanning electron microscopy, we have been able to obtain 10 three-dimensional samples with an average volume of 180 µm(3) from the neuropil of layer III of the young rat somatosensory cortex (hindlimb representation). We have used specific software tools to fully reconstruct 1695 synaptic junctions present in these samples and to accurately quantify the number of synapses per unit volume. These tools also allowed us to determine synapse position and to analyze their spatial distribution using spatial statistical methods. Our results indicate that the distribution of synaptic junctions in the neuropil is nearly random, only constrained by the fact that synapses cannot overlap in space. A theoretical model based on random sequential absorption, which closely reproduces the actual distribution of synapses, is also presented.
Resumo:
Soil structure plays an important role in flow and transport phenomena, and a quantitative characterization of the spatial heterogeneity of the pore space geometry is beneficial for prediction of soil physical properties. Morphological features such as pore-size distribution, pore space volume or pore?solid surface can be altered by different soil management practices. Irregularity of these features and their changes can be described using fractal geometry. In this study, we focus primarily on the characterization of soil pore space as a 3D geometrical shape by fractal analysis and on the ability of fractal dimensions to differentiate between two a priori different soil structures. We analyze X-ray computed tomography (CT) images of soils samples from two nearby areas with contrasting management practices. Within these two different soil systems, samples were collected from three depths. Fractal dimensions of the pore-size distributions were different depending on soil use and averaged values also differed at each depth. Fractal dimensions of the volume and surface of the pore space were lower in the tilled soil than in the natural soil but their standard deviations were higher in the former as compared to the latter. Also, it was observed that soil use was a factor that had a statistically significant effect on fractal parameters. Fractal parameters provide useful complementary information about changes in soil structure due to changes in soil management. Read More: http://www.worldscientific.com/doi/abs/10.1142/S0218348X14400118?queryID=%24%7BresultBean.queryID%7D&
Resumo:
A 2D computer simulation method of random packings is applied to sets of particles generated by a self-similar uniparametric model for particle size distributions (PSDs) in granular media. The parameter p which controls the model is the proportion of mass of particles corresponding to the left half of the normalized size interval [0,1]. First the influence on the total porosity of the parameter p is analyzed and interpreted. It is shown that such parameter, and the fractal exponent of the associated power scaling, are efficient packing parameters, but this last one is not in the way predicted in a former published work addressing an analogous research in artificial granular materials. The total porosity reaches the minimum value for p = 0.6. Limited information on the pore size distribution is obtained from the packing simulations and by means of morphological analysis methods. Results show that the range of pore sizes increases for decreasing values of p showing also different shape in the volume pore size distribution. Further research including simulations with a greater number of particles and image resolution are required to obtain finer results on the hierarchical structure of pore space.