294 resultados para Areias de Praias


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The objective of this Doctoral Thesis was monitoring, in trimestral scale, the coastal morphology of the Northeastern coast sections of Rio Grande do Norte State, in Brazil, which is an area of Potiguar Basin influenced by the oil industry activities. The studied sections compose coastal areas with intense sedimentary erosion and high environmental sensitivity to the oil spill. In order to achieve the general objective of this study, the work has been systematized in four steps. The first one refers to the evaluation of the geomorphological data acquisition methodologies used on Digital Elevation Model (DEM) of sandy beaches. The data has been obtained from Soledade beach, located on the Northeastern coast of Rio Grande Norte. The second step has been centered on the increasing of the reference geodetic infrastructure to accomplish the geodetic survey of the studied area by implanting a station in Corta Cachorro Barrier Island and by conducting monitoring geodetic surveys to understand the beach system based on the Coastline (CL) and on DEM multitemporal analysis. The third phase has been related to the usage of the methodology developed by Santos; Amaro (2011) and Santos et al. (2012) for the surveying, processing, representation, integration and analysis of Coastlines from sandy coast, which have been obtained through geodetic techniques of positioning, morphological change analysis and sediment transport. The fourth stage represents the innovation of surveys in coastal environment by using the Terrestrial Laser Scanning (TLS), based on Light Detection and Ranging (LiDAR), to evaluate a highly eroded section on Soledade beach where the oil industry structures are located. The evaluation has been achieved through high-precision DEM and accuracy during the modeling of the coast morphology changes. The result analysis of the integrated study about the spatial and temporal interrelations of the intense coastal processes in areas of building cycles and destruction of beaches has allowed identifying the causes and consequences of the intense coastal erosion in exposed beach sections and in barrier islands

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Projeto de Graduação apresentado à Universidade Fernando Pessoa como parte dos requisitos para obtenção do grau de Licenciada em Fisioterapia

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Atualmente, o mercado de trabalho é um domínio competitivo e não basta ao candidato a emprego deter qualificação superior. Apesar de uma sociedade assente no conhecimento, ciência e tecnologia, assiste-se a uma desvalorização relativa do diploma a quanto do acesso ao mercado de trabalho. As exigências da competitividade apelam á mobilização de varias competências e condições de empregabilidade, desde as mais técnicas e cientificas(hard skills) até ás mais pessoas e sociais(soft skills). No contexto dda ciência do marketing, os conceitos de marketing pessoal e de marca pessoal, embora apresentando ainda escassa pesquisa cientifica e frágil enquadramento concetual, têm assumido discussão e reconhecimento crescente. O marketing pessoal, associado a uma atitude de proatividade e devidamente sustentado, converte-se numa vantagem competitiva, evidenciando o valor e a diferenciação do individuo no processo de procura de emprego. Realizou-se um estudo exploratório, sob uma abordagem qualificativa, utilizando a entrevista semiestruturada e que se aplicou a uma amostra constituída por 12 diplomados em situação de procura de emprego. Considerando o tipo do estudo, as conclusões obtidas devem ser, necessariamente, contextualizadas á investigação. OS resultados demonstram que os diplomados em causa, ainda que de forma inconsciente e não devidamente estratégica, reconhecem importância ao desenvolvimento do seu marketing pessoal e promoção da sua marca e imagem no contexto das praticas de procura de emprego. Apesar da prudencia e limitação quanto á generalização de resultados, a presente dissertação serve de motivação para uma melhor reflexão sobre o binómio marketing pessoal e a procura de emprego.

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Understanding what characterizes patients who suffer great delays in diagnosis of pulmonary tuberculosis is of great importance when establishing screening strategies to better control TB. Greater delays in diagnosis imply a higher chance for susceptible individuals to become infected by a bacilliferous patient. A Structured Additive Regression model is attempted in this study in order to potentially contribute to a better characterization of bacilliferous prevalence in Portugal. The main findings suggest the existence of significant regional differences in Portugal, with the fact of being female and/or alcohol dependent contributing to an increased delay-time in diagnosis, while being dependent on intravenous drugs and/or being diagnosed with HIV are factors that increase the chance of an earlier diagnosis of pulmonary TB. A decrease in 2010 to 77% on treatment success in Portugal underlines the importance of conducting more research aimed at better TB control strategies.

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A finite-strain solid–shell element is proposed. It is based on least-squares in-plane assumed strains, assumed natural transverse shear and normal strains. The singular value decomposition (SVD) is used to define local (integration-point) orthogonal frames-of-reference solely from the Jacobian matrix. The complete finite-strain formulation is derived and tested. Assumed strains obtained from least-squares fitting are an alternative to the enhanced-assumed-strain (EAS) formulations and, in contrast with these, the result is an element satisfying the Patch test. There are no additional degrees-of-freedom, as it is the case with the enhanced-assumed-strain case, even by means of static condensation. Least-squares fitting produces invariant finite strain elements which are shear-locking free and amenable to be incorporated in large-scale codes. With that goal, we use automatically generated code produced by AceGen and Mathematica. All benchmarks show excellent results, similar to the best available shell and hybrid solid elements with significantly lower computational cost.

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Species distribution and ecological niche models are increasingly used in biodiversity management and conservation. However, one thing that is important but rarely done is to follow up on the predictive performance of these models over time, to check if their predictions are fulfilled and maintain accuracy, or if they apply only to the set in which they were produced. In 2003, a distribution model of the Eurasian otter (Lutra lutra) in Spain was published, based on the results of a country-wide otter survey published in 1998. This model was built with logistic regression of otter presence-absence in UTM 10 km2 cells on a diverse set of environmental, human and spatial variables, selected according to statistical criteria. Here we evaluate this model against the results of the most recent otter survey, carried out a decade later and after a significant expansion of the otter distribution area in this country. Despite the time elapsed and the evident changes in this species’ distribution, the model maintained a good predictive capacity, considering both discrimination and calibration measures. Otter distribution did not expand randomly or simply towards vicinity areas,m but specifically towards the areas predicted as most favourable by the model based on data from 10 years before. This corroborates the utility of predictive distribution models, at least in the medium term and when they are made with robust methods and relevant predictor variables.

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A interacção dos humanos com os computadores envolve uma combinação das tarefas de programação e de utilização. Nem sempre é explícita a diferença entre as duas tarefas. Introduzir comandos num programa de desenho assistido por computador é utilização ou programação numa linguagem interpretada? Modificar uma folha de cálculo com macros é utilização ou programação? Usar um “Integrated Development Environment” ou IDE para inserir dados num ficheiro é utilização (do IDE) ou programação? A escrita de um texto usando LaTeX ou HTML é utilização ou programação numa “markup language”? Recorrer a um programa de computação simbólica é utilização ou programação? Utilizar um processador de texto é utilização ou programação visual? Ao utilizador não se exige um conhecimento completo de todos os comandos, todos os menus, todos os símbolos do software que utiliza. Nem a memorização da sintaxe e de todos os pormenores de funcionamento de um programa é um atributo necessário ou sequer útil ao utilizador; a concretização desse conhecimento não assegura maior eficiência na utilização. Quando se começa, apenas algumas instruções elementares são recebidas, por vezes de um colega, de um Professor, ou obtidas recorrendo à pesquisa na Internet. Com a familiarização, o utilizador exige mais do Software que usa e de si próprio: um manual passa a ser um recurso de grande utilidade. A confiança conquistada gera, periodicamente, a necessidade de auto-exame e de aumento do âmbito do conhecimento. Desta forma, quem utiliza computadores acaba por ser confrontado com uma tarefa que, efectivamente, pode ser considerada ou requer programação. Põe-se uma questão no imediato (se ninguém decidiu por si) que é a da selecção da linguagem de programação. A abordagem multiparadigma e longa experiência de utilização do C++ tornam-no atractivo para aplicações onde a eficiência se combina com a disponibilidade de estruturas de dados e algoritmos adoptados pela indústria (o que coloquialmente se denomina STL, Standard Template Library, cf. [#breymann, #josuttis], mais geralmente biblioteca Standard). Adicionalmente, linguagens populares como o Java, C# e PHP possuem sintaxes inspiradas e em muitas partes coincidentes com as do C e C++. Por exemplo, um ciclo “for” em Java é parcialmente coincidente com o do C99, que é um sub-conjunto do “for” do C++. São os pormenores, a eficiência e as capacidades do C++ que permitem a criação de software Profissional. Todos os sistemas operativos clássicos (Unix, Microsoft Windows, Linux) dispõem de compiladores, IDE, bibliotecas e são em grande parte construídos recorrendo a C e C++. Relativamente a outras linguagens, a quantidade de ferramentas disponível e o conhecimento adquirido durante décadas é difícil de ignorar. Esse conhecimento faz com que a sintaxe do C++ pareça muito maior do que o estritamente necessário e afaste potenciais interessados. A longa evolução do C++ introduziu também uma diferença no estilo muito marcada. Código dos anos 80 e 90 do século XX é frequentemente menos legível do que o que correntemente se produz. Muitos tutoriais disponíveis online fazem parecer a linguagem menos rigorosa (e mais complexa) do que na realidade é, já que raramente é apresentado o caso geral da sintaxe. Constata-se que muitos autores ainda usam os cabeçalhos do C, quando já não são necessários. Scott Meyers afirma que o C++ é uma federação de linguagens [#scottmeyers] e por esse facto requer perspectivas de abordagem distintas de outras linguagens. Sem alguma sistematização é difícil apreciar a sua compacidade e coerência. Porém, a forma harmoniosa como as componentes sintácticas se encaixam é uma grande mais-valia do C++ só constatada com experimentação e leitura atenta. A presente monografia dirige-se a quem pretenda utilizar o C++ como ferramenta profissional de Software. Em termos de pré-requisitos Académicos, dir-se-á que um curso (1º Ciclo) de Ciência ou de Engenharia aumentará o interesse por certos aspectos mais técnicos da linguagem mas qualquer indivíduo com gosto pela experimentação tirará proveito do conteúdo. Este texto não busca a exaustividade enciclopédica na cobertura do tema. Neste texto forneço, de forma directa, uma introdução ao C++ a qual permite começar a produzir código sem os custos da dispersão de fontes e notações na recolha de informação. Antecipo assim a sua utilização nos Países de Língua Portuguesa, uma vez que os textos que encontrei são ora mais exigentes ora menos completos, frequentemente ambos.

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We present an isogeometric thin shell formulation for multi-patches based on rational splines over hierarchical T-meshes (RHT-splines). Nitsche’s method is employed to efficiently couple the patches. The RHT-splines have the advantages of allowing a computationally feasible local refine- ment, are free from linear independence, possess high order continuity and satisfy the partition of unity and non-negativity, properties. In addition, C 1 continuity of the RHT-splines obviates to use of rotational degrees of freedom. The good performance of the present method is demonstrated by a number of numerical examples.

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With the theme of fracture of finite-strain plates and shells based on a phase-field model of crack regularization, we introduce a new staggered algorithm for elastic and elasto-plastic materials. To account for correct fracture behavior in bending, two independent phase-fields are used, corresponding to the lower and upper faces of the shell. This is shown to provide a realistic behavior in bending-dominated problems, here illustrated in classical beam and plate problems. Finite strain behavior for both elastic and elasto-plastic constitutive laws is made compatible with the phase-field model by use of a consistent updated-Lagrangian algorithm. To guarantee sufficient resolution in the definition of the crack paths, a local remeshing algorithm based on the phase- field values at the lower and upper shell faces is introduced. In this local remeshing algorithm, two stages are used: edge-based element subdivision and node repositioning. Five representative numerical examples are shown, consisting of a bi-clamped beam, two versions of a square plate, the Keesecker pressurized cylinder problem, the Hexcan problem and the Muscat-Fenech and Atkins plate. All problems were successfully solved and the proposed solution was found to be robust and efficient.

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We present a multiscale model bridging length and time scales from molecular to continuum levels with the objective of predicting the yield behavior of amorphous glassy polyethylene (PE). Constitutive pa- rameters are obtained from molecular dynamics (MD) simulations, decreasing the requirement for ad- hoc experiments. Consequently, we achieve: (1) the identification of multisurface yield functions; (2) the high strain rate involved in MD simulations is upscaled to continuum via quasi-static simulations. Validation demonstrates that the entire multisurface yield functions can be scaled to quasi-static rates where the yield stresses are possibly predicted by a proposed scaling law; (3) a hierarchical multiscale model is constructed to predict temperature and strain rate dependent yield strength of the PE.

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A finite-strain solid–shell element is proposed. It is based on least-squares in-plane assumed strains, assumed natural transverse shear and normal strains. The singular value decomposition (SVD) is used to define local (integration-point) orthogonal frames-of- reference solely from the Jacobian matrix. The complete finite-strain formulation is derived and tested. Assumed strains obtained from least-squares fitting are an alternative to the enhanced-assumed-strain (EAS) formulations and, in contrast with these, the result is an element satisfying the Patch test. There are no additional degrees-of-freedom, as it is the case with the enhanced- assumed-strain case, even by means of static condensation. Least-squares fitting produces invariant finite strain elements which are shear-locking free and amenable to be incorporated in large-scale codes. With that goal, we use automatically generated code produced by AceGen and Mathematica. All benchmarks show excellent results, similar to the best available shell and hybrid solid elements with significantly lower computational cost.

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A new semi-implicit stress integration algorithm for finite strain plasticity (compatible with hyperelas- ticity) is introduced. Its most distinctive feature is the use of different parameterizations of equilibrium and reference configurations. Rotation terms (nonlinear trigonometric functions) are integrated explicitly and correspond to a change in the reference configuration. In contrast, relative Green–Lagrange strains (which are quadratic in terms of displacements) represent the equilibrium configuration implicitly. In addition, the adequacy of several objective stress rates in the semi-implicit context is studied. We para- metrize both reference and equilibrium configurations, in contrast with the so-called objective stress integration algorithms which use coinciding configurations. A single constitutive framework provides quantities needed by common discretization schemes. This is computationally convenient and robust, as all elements only need to provide pre-established quantities irrespectively of the constitutive model. In this work, mixed strain/stress control is used, as well as our smoothing algorithm for the complemen- tarity condition. Exceptional time-step robustness is achieved in elasto-plastic problems: often fewer than one-tenth of the typical number of time increments can be used with a quantifiable effect in accuracy. The proposed algorithm is general: all hyperelastic models and all classical elasto-plastic models can be employed. Plane-stress, Shell and 3D examples are used to illustrate the new algorithm. Both isotropic and anisotropic behavior is presented in elasto-plastic and hyperelastic examples.

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We propose an alternative crack propagation algo- rithm which effectively circumvents the variable transfer procedure adopted with classical mesh adaptation algo- rithms. The present alternative consists of two stages: a mesh-creation stage where a local damage model is employed with the objective of defining a crack-conforming mesh and a subsequent analysis stage with a localization limiter in the form of a modified screened Poisson equation which is exempt of crack path calculations. In the second stage, the crack naturally occurs within the refined region. A staggered scheme for standard equilibrium and screened Poisson equa- tions is used in this second stage. Element subdivision is based on edge split operations using a constitutive quantity (damage). To assess the robustness and accuracy of this algo- rithm, we use five quasi-brittle benchmarks, all successfully solved.

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In this study, a finite element (FE) framework for the analysis of the interplay between buckling and delamination of thin layers bonded to soft substrates is proposed. The current framework incorporates the following modeling features: (i) geometrically nonlinear solid shell elements, (ii) geometrically nonlinear cohesive interface elements, and (iii) hyperelastic material constitutive response for the bodies that compose the system. A fully implicit Newton–Raphson solution strategy is adopted to deal with the complex simultaneous presence of geometrical and material nonlinearities through the derivation of the consistent FE formulation. Applications to a rubber-like bi-material system under finite bending and to patterned stiff islands resting on soft substrate for stretchable solar cells subjected to tensile loading are proposed. The results obtained are in good agreement with benchmark results available in the literature, confirming the accuracy and the capabilities of the proposed numerical method for the analysis of complex three-dimensional fracture mechanics problems under finite deformations.

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We propose a crack propagation algorithm which is independent of particular constitutive laws and specific element technology. It consists of a localization limiter in the form of the screened Poisson equation with local mesh refinement. This combination allows the cap- turing of strain localization with good resolution, even in the absence of a sufficiently fine initial mesh. In addition, crack paths are implicitly defined from the localized region, cir- cumventing the need for a specific direction criterion. Observed phenomena such as mul- tiple crack growth and shielding emerge naturally from the algorithm. In contrast with alternative regularization algorithms, curved cracks are correctly represented. A staggered scheme for standard equilibrium and screened equations is used. Element subdivision is based on edge split operations using a given constitutive quantity (either damage or void fraction). To assess the robustness and accuracy of this algorithm, we use both quasi-brittle benchmarks and ductile tests.