951 resultados para finite-difference time-domain (FDTD) method


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Drought characterisation is an intrinsically spatio-temporal problem. A limitation of previous approaches to characterisation is that they discard much of the spatio-temporal information by reducing events to a lower-order subspace. To address this, an explicit 3-dimensional (longitude, latitude, time) structure-based method is described in which drought events are defined by a spatially and temporarily coherent set of points displaying standardised precipitation below a given threshold. Geometric methods can then be used to measure similarity between individual drought structures. Groupings of these similarities provide an alternative to traditional methods for extracting recurrent space-time signals from geophysical data. The explicit consideration of structure encourages the construction of summary statistics which relate to the event geometry. Example measures considered are the event volume, centroid, and aspect ratio. The utility of a 3-dimensional approach is demonstrated by application to the analysis of European droughts (15 °W to 35°E, and 35 °N to 70°N) for the period 1901–2006. Large-scale structure is found to be abundant with 75 events identified lasting for more than 3 months and spanning at least 0.5 × 106 km2. Near-complete dissimilarity is seen between the individual drought structures, and little or no regularity is found in the time evolution of even the most spatially similar drought events. The spatial distribution of the event centroids and the time evolution of the geographic cross-sectional areas strongly suggest that large area, sustained droughts result from the combination of multiple small area (∼106 km2) short duration (∼3 months) events. The small events are not found to occur independently in space. This leads to the hypothesis that local water feedbacks play an important role in the aggregation process.

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Evolutionary meta-algorithms for pulse shaping of broadband femtosecond duration laser pulses are proposed. The genetic algorithm searching the evolutionary landscape for desired pulse shapes consists of a population of waveforms (genes), each made from two concatenated vectors, specifying phases and magnitudes, respectively, over a range of frequencies. Frequency domain operators such as mutation, two-point crossover average crossover, polynomial phase mutation, creep and three-point smoothing as well as a time-domain crossover are combined to produce fitter offsprings at each iteration step. The algorithm applies roulette wheel selection; elitists and linear fitness scaling to the gene population. A differential evolution (DE) operator that provides a source of directed mutation and new wavelet operators are proposed. Using properly tuned parameters for DE, the meta-algorithm is used to solve a waveform matching problem. Tuning allows either a greedy directed search near the best known solution or a robust search across the entire parameter space.

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The ability to retrieve information from different layers within a stratified sample using terahertz pulsed reflection imaging and spectroscopy has traditionally been resolution limited by the pulse width available. In this paper, a deconvolution algorithm is presented which circumvents this resolution limit, enabling deep sub-wavelength and sub-pulse width depth resolution. The algorithm is explained through theoretical investigation, and demonstrated by reconstructing signals reflected from boundaries in stratified materials that cannot be resolved directly from the unprocessed time-domain reflection signal. Furthermore, the deconvolution technique has been used to recreate sub-surface images from a stratified sample: imaging the reverse side of a piece of paper.

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Terahertz pulse imaging (TPI) is a novel noncontact, nondestructive technique for the examination of cultural heritage artifacts. It has the advantage of broadband spectral range, time-of-flight depth resolution, and penetration through optically opaque materials. Fiber-coupled, portable, time-domain terahertz systems have enabled this technique to move out of the laboratory and into the field. Much like the rings of a tree, stratified architectural materials give the chronology of their environmental and aesthetic history. This work concentrates on laboratory models of stratified mosaics and fresco paintings, specimens extracted from a neolithic excavation site in Catalhoyuk, Turkey, and specimens measured at the medieval Eglise de Saint Jean-Baptiste in Vif, France. Preparatory spectroscopic studies of various composite materials, including lime, gypsum and clay plasters are presented to enhance the interpretation of results and with the intent to aid future computer simulations of the TPI of stratified architectural material. The breadth of the sample range is a demonstration of the cultural demand and public interest in the life history of buildings. The results are an illustration of the potential role of TPI in providing both a chronological history of buildings and in the visualization of obscured wall paintings and mosaics.

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Results are presented of an examination of flow rock-covered Paleoloithic cave art using time-domain terahertz reflectometry.

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A method has been developed to estimate aerosol optical depth (AOD) over land surfaces using high spatial resolution, hyperspectral, and multiangle Compact High Resolution Imaging Spectrometer (CHRIS)/Project for On Board Autonomy (PROBA) images. The CHRIS instrument is mounted aboard the PROBA satellite and provides up to 62 bands. The PROBA satellite allows pointing to obtain imagery from five different view angles within a short time interval. The method uses inversion of a coupled surface/atmosphere radiative transfer model and includes a general physical model of angular surface reflectance. An iterative process is used to determine the optimum value providing the best fit of the corrected reflectance values for a number of view angles and wavelengths with those provided by the physical model. This method has previously been demonstrated on data from the Advanced Along-Track Scanning Radiometer and is extended here to the spectral and angular sampling of CHRIS/PROBA. The values obtained from these observations are validated using ground-based sun-photometer measurements. Results from 22 image sets show an rms error of 0.11 in AOD at 550 nm, which is reduced to 0.06 after an automatic screening procedure.

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The work presented in this article was performed at the Oriental Institute at the University of Chicago, on objects from their permanent collection: an ancient Egyptian bird mummy and three ancient Sumerian corroded copper-alloy objects. We used a portable, fiber-coupled terahertz time-domain spectroscopic imaging system, which allowed us to measure specimens in both transmission and reflection geometry, and present time- and frequency-based image modes. The results confirm earlier evidence that terahertz imaging can provide complementary information to that obtainable from x-ray CT scans of mummies, giving better visualisation of low density regions. In addition, we demonstrate that terahertz imaging can distinguish mineralized layers in metal artifacts.

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In this paper, the laminar fluid flow of Newtonian and non-Newtonian of aqueous solutions in a tubular membrane is numerically studied. The mathematical formulation, with associated initial and boundary conditions for cylindrical coordinates, comprises the mass conservation, momentum conservation and mass transfer equations. These equations are discretized by using the finite-difference technique on a staggered grid system. Comparisons of the three upwinding schemes for discretization of the non-linear (convective) terms are presented. The effects of several physical parameters on the concentration profile are investigated. The numerical results compare favorably with experimental data and the analytical solutions. (C) 2011 Elsevier Inc. All rights reserved.

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The fluid flow of the liquid phase in the sol-gel-dip-coating process for SnO(2) thin film deposition is numerically simulated. This calculation yields useful information on the velocity distribution close to the substrate, where the film is deposited. The fluid modeling is done by assuming Newtonian behavior, since the linear relation between shear stress and velocity gradient is observed. Besides, very low viscosities are used. The fluid governing equations are the Navier-Stokes in the two dimensional form, discretized by the finite difference technique. Results of optical transmittance and X-ray diffraction on films obtained from colloidal suspensions with regular viscosity, confirm the substrate base as the thickest part of the film, as inferred from the numerical simulation. In addition, as the viscosity increases, the fluid acquires more uniform velocity distribution close to the substrate, leading to more homogenous and uniform films.

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In this paper, I review some recent high-precision Rydberg state lifetime measurements using a cold-trapped sample of neutral atoms held in a magneto-optical trap. The measurements were performed in rubidium for the S, P and D states varying the principal quantum number from n = 26 to 45 using the field ionization technique. The experimental results were compared with quantum mechanical calculations and good agreement was observed. This is an important demonstration of how cold atomic samples can be used to perform high-precision spectroscopy in the time domain.

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The addition of lithium salts to ionic liquids causes an increase in viscosity and a decrease in ionic mobility that hinders their possible application as an alternative solvent in lithium ion batteries. Optically heterodyne-detected optical Kerr effect spectroscopy was used to study the change in dynamics, principally orientational relaxation, caused by the addition of lithium bis(trifluoromethylsulfonyl)imide to the ionic liquid 1-buty1-3-methylimidazolium bis(trifluoromethylsulfonyl)imide. Over the time scales studied (1 ps-16 ns) for the pure ionic liquid, two temperature-independent power laws were observed: the intermediate power law (1 ps to similar to 1 ns), followed by the von Schweidler power law. The von Schweidler power law is followed by the final complete exponential relaxation, which is highly sensitive to temperature. The lithium salt concentration, however, was found to affect both power laws, and a discontinuity could be found in the trend observed for the intermediate power law when the concentration (mole fraction) of lithium salt is close to chi(LiTf(2)N) = 0.2. A mode coupling theory (MCT) schematic model was also used to fit the data for both the pure ionic liquid and the different salt concentration mixtures. It was found that dynamics in both types of liquids are described very well by MCT.

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Defatted rumen protein and soy protein concentrate were extruded in a 15.5:1 L/D single-screw extruder at the optimum conditions for their expansion (150A degrees C and 35% moisture, and 130A degrees C and 35% moisture, respectively). Emulsions were produced with these proteins and studied by rheology and time domain low-resolution (1)H nuclear magnetic resonance (TD-NMR). Extrusion increased storage modulus of rumen protein emulsions. The opposite was observed for soy protein. Mechanical relaxation showed the existence of three relaxing components in the emulsions whose relative contributions were changed by extrusion. Likewise, spin-spin relaxation time constants (T (2)) measured by TD-NMR also showed three major distinct populations of protons in respect to their mobility that were also altered by extrusion. Extrusion increased surface hydrophobicity of both rumen and soy protein. Solubility of rumen protein increased with extrusion whereas soy protein had its solubility decreased after processing. Extrusion promoted molecular reorganization of protein, increasing its superficial hydrophobicity, affecting its interfacial properties and improving its emulsifying behavior. The results show that extrusion can promote the use of rumen, a by-product waste from the meat industry, in human nutrition by replacing soy protein in food emulsions.

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INTRODUÇÃO. O aumento da densidade de arritmia ventricular e a redução da variabilidade da freqüência cardíaca estão associados com risco de morte súbita e mortalidade total em insuficiência cardíaca. A inibição colinesterásica com brometo de piridostigmina (PIR) aumenta a variabilidade da freqüência de pessoas normais, porém seu efeito em pacientes com insuficiência cardíaca é desconhecido. OBJETIVOS. Testar a hipótese de que a administração a curto prazo de piridostigmina reduz a densidade de arritmia ventricular e aumenta a variabilidade da freqüência cardíaca em pacientes com insuficiência cardíaca. MÉTODOS. Pacientes com insuficiência cardíaca e em ritmo sinusal participaram de um estudo duplo-cego, cruzado, randomizado para placebo e piridostigmina (30mg VO de 8 em 8 horas por 2 dias). Monitorização eletrocardiográfica ambulatorial de 24 horas foi realizada para análise de arritmia e para avaliação dos índices do domínio do tempo da variabilidade da freqüência cardíaca. Pacientes foram separados em 2 grupos, de acordo com a densidade de arritmia ventricular. O grupo Arritmia (n = 11) incluiu pacientes com mais de 10 extrassístoles ventriculares por hora (ESV/h), e o grupo Variabilidade da Freqüêcia Cardíaca (n = 12) incluiu pacientes com um número de ESVs em 24 horas que não excedia 1 % do número total de intervalos RR. RESULTADOS. No grupo Arritmia, PIR resultou em uma redução de 65% no número de extrassístoles ventriculares (Placebo 266 + 56 ESV/h vs. PIR 173 + 49 ESV/h; p = 0,03). No grupo da Variabilidade da Freqüência Cardíaca, a administração de PIR resultou em um aumento do intervalo RR médio (Placebo 733 + 22 ms vs PIR 790 + 33 ms; p = 0,01), e nos índices do domínio do tempo da variabilidade da freqüência cardíaca PNN50 (Placebo 3 + 1,1 % vs PIR 6 + 1,6 %; p = 0,03) e RMSSD (Placebo 21 + 2 vs PIR 27 + 3; p = 0,008). CONCLUSÃO. Em pacientes com insuficiência cardíaca, PIR reduziu a densidade de arritmia ventricular e aumentou a VFC, provavelmente por seu efeito colinomimético. Estudos a longo prazo com PIR em insuficiência cardíaca devem ser realizados.

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A presente dissertação tem como objetivo estudar e aprimorar métodos de projetos de controladores para sistemas de potência, sendo que esse trabalho trata da estabilidade dinâmica de sistemas de potência e, portanto, do projeto de controladores amortecedores de oscilações eletromecânicas para esses sistemas. A escolha dos métodos aqui estudados foi orientada pelos requisitos que um estabilizador de sistemas de potência (ESP) deve ter, que são robustez, descentralização e coordenação. Sendo que alguns deles tiveram suas características aprimoradas para atender a esses requisitos. A abordagem dos métodos estudados foi restringida à análise no domínio tempo, pois a abordagem temporal facilita a modelagem das incertezas paramétricas, para atender ao requisito da robustez, e também permite a formulação do controle descentralizado de maneira simples. Além disso, a abordagem temporal permite a formulação do problema de projeto utilizando desigualdades matriciais lineares (LMI’s), as quais possuem como vantagem o fato do conjunto solução ser sempre convexo e a existência de algoritmos eficientes para o cálculo de sua solução. De fato, existem diversos pacotes computacionais desenvolvidos no mercado para o cálculo da solução de um problema de inequações matriciais lineares. Por esse motivo, os métodos de projeto para controladores de saída buscam sempre colocar o problema na forma de LMI’s, tendo em vista que ela garante a obtenção de solução, caso essa solução exista.

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Dada a necessidade de obtermos sistemas monitorizados com elevada precisão, de grande durabilidade e resistentes às condições atmosféricas, surgiu a possibilidade de aplicação das fibras ópticas como sensores para monitorização de pressão. Nesse contexto, as fibras “hetero-core” (fibra óptica composta por uma fibra multimodo entre duas fibras ópticas monomodo) e a utilização de lentes GRIN (“GRaded INdex”) em conjunto com superfícies reflectoras permitem a determinação da pressão e são objecto de estudo desta dissertação. Em termos de aplicação, o objectivo principal desta tese de mestrado foi de proporcionar o projecto e desenvolvimentos da medida de pressão em 48 pontos para um tanque de estudo dos fenómenos de percolação da água nos solos e que é pertencente à Secção de Geotecnia do Departamento de Engenharia Civil da Faculdade de Engenharia da Universidade do Porto. Inicialmente, foi caracterizado um sistema contendo uma fibra “hetero-core” à qual foi aplicada uma curvatura, com auxílio de uma carruagem micrométrica. Este sistema permitiu a simulação do mesmo efeito de aplicação de pressão à fibra “hetero-core”. Na configuração seguinte, usou-se um OTDR (“Optical Time Domain Reflectometer”) para visualização e registo das perdas encontradas durante o processo de dobrar e esticar da fibra “hetero-core”. Ao longo deste registo, várias configurações foram testadas até ser encontrada a cabeça sensora com melhor comportamento para monitorizar a pressão. A multiplexagem foi conseguida ao colocar dois sensores em série, sendo cada um deles constituído por uma fibra “hetero-core” colocada no fundo de um tubo de água disposto verticalmente. Com a adição da água no tubo de água, a curvatura na fibra “hetero-core” aumentava, notando-se claramente que as perdas também subiam. Os resultados obtidos nesta configuração foram bastante satisfatórios permitindo a independência entre os dois sensores dispostos em série. Posteriormente, foi testada uma nova configuração sensora, o sensor de fibra óptica para monitorização de pressão foi construído com recurso a uma lente GRIN e uma superfície reflectora. Esta lente, disposta diante de um espelho, permitiu emitir e captar luz de um determinado comprimento de onda devido à reflexão do sinal luminoso no espelho. Com sucessivos incrementos, afastou-se e aproximou-se a lente ao espelho, registando-se e observando-se as perdas de potência obtidas com auxílio do OTDR. Também para esta configuração foi testada a multiplexagem de vários sensores, tendo sido utilizadas as seguintes opções: um acoplador de 2:1; um acoplador 4:1 e um comutador óptico. Verificou-se que a utilização de um comutador óptico é o melhor caso para a monitorização de pressão de múltiplos sensores. A multiplexagem com recurso ao comutador foi possível, uma vez que permitia a medição independente de cada sensor de pressão num determinado tempo. Com este resultado, é possível monitorizar 48 sensores com recurso ao OTDR, multiplexados temporalmente. Toda esta implementação prática da dissertação foi realizada nas instalações da Unidade de Optoelectrónica e Sistemas Electrónicos no INESC Porto, onde foram caracterizados e estudados sensores com diferentes características que poderão ser lidas neste documento. A componente teórica foi efectuada na Universidade da Madeira.