945 resultados para regime-switching
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As mudanças no microclima e no balanço hídrico devido ao desmatamento na Amazônia (região de Ji-Paraná-RO) foram estudadas com dados meteorológicos coletados de janeiro/92 até outubro/93, em sítios experimentais de floresta tropical e de pastagem. Observou-se que a troca de vegetação (desmatamento) reduz a precipitação total em 10%, diminui a evapotranspiração real de 24% e também apresenta uma maior amplitude térmica da temperatura do ar de 1,6 °C. A análise do balanço hídrico mostra claramente que a floresta tropical consegue extrair mais água do que o sítio de pastagem durante a estação seca, embora os dois sítios possuam comportamentos similares durante a estação chuvosa.
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A caracterização do regime pluviométrico é fundamental para a tomada de decisão junto às práticas agrícolas para a safra e entresafra, no município de Formoso do Araguaia - TO. Foram obtidos dados diários de precipitação pluviométrica no período de 1981 a 1997, excluídos os anos de 1991, 1992 e 1993, totalizando 14 anos de observações. Os dados foram analisados via sistemas ANFLPLUVIE.EXE e Chuva (Assad et al, 1994). Analisou-se as precipitações médias anuais e mensais; as frequências mensais, quinzenais e decendiais em 20%, 50% e 80% de probabilidade de ocorrência e a quantificação e frequência dos veranicos. A precipitação média anual foi de 1.675,7 mm; e a precipitação média mensal do período chuvoso foi maior em dezembro (330,9 mm) e menor em abril (109,3 mm), 95,16% das chuvas na região ocorreram entre os meses de outubro a abril; em 85,71% dos anos observados, o índice pluviométrico foi superior a 1.000 mm anuais.
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This paper presents a comparison between three switching techniques that can be used in three-phase four-wire Shunt Active Power Filters (SAPFs). The implemented switching techniques are: Periodic-Sampling (PS), Triangular Carrier Pulse-Width Modulation (TC-PWM) and Space Vector PWM (SVPWM). The comparison between them is made in terms of the compensated currents THD%, implementation complexity, necessary CPU time and SAPF efficiency. To perform this comparison are presented and analyzed several experimental results, obtained with a 20 kVA Shunt Active Power Filter prototype, specially developed for this purpose. The control system of the developed SAPF is based in the p-q Theory with a grid synchronization algorithm p-PLL.
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A autoecologia das três espécies florestais em linhas de enriquecimento foi avaliada junto com o monitoramento do microclima e fertilidade do solo na floresta primária de terra-firme da Amazônia brasileira. A área situa-se no município de Novo Aripuanã Amazonas - Brasil (5º18'S, 60º04'W.). Nas três diferentes larguras de linhas (3, 5 e 7m) foram monitoradas os parâmetros de radiação com fotografias hemisféricas e sensor RFA. As linhas de 5 e 7m classificam-se como grande abertura de dossel (19,77-20,78%), a de 3m mostrou maior variação na radiação RFA. Quanto à análise química do solo observou-se, uma redução significativa de K e Ca em relação ao aumento das larguras das linhas. Também foram monitorados os crescimentos em altura e diâmetro, índice de ganho foliar e o teor de clorofila nas plântulas das três espécies estidadas: Astronium lecointei Ducke, Cordia goeldiana Huber e Scleronema micranthum Ducke. Todas espécies sofreram devido à alta radiação e ao estresse hídrico. Astronium lecointei apresentou uma maior resistência tanto durante forte seca, como também ao excesso de chuva. Scleronema micranthum apresentou diferenças de crescimento entre linhas, principalmente na estação chuvosa. Beneficiou-se positivamente com a radiação direta nas linhas largas de enriquecimento. As duas apresentaram alta amplitude de nicho entre tolerante à sombra a intermediária. Já C.goeldiana apresentou maior variação em seu crescimento (CV: Cordia goeldiana: 113> Astronium lecointei: 60,6> Scleronema micranthum: 59,7). A largura de linha de 5m na floresta primária de terra-firme foi suficiente para estabelecimento de espécies tolerante à sombra e intermediária.
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In this study, Ag:SiC nanocermets were prepared via rapid thermal annealing (RTA) of pulsed laser-deposited SiC/Ag/SiC trilayers grown on Si substrate. Atomic force microscope images show that silver nanoparticles (Ag NPs) are formed after RTA, and the size of NPs increases with increasing Ag deposition time (t Ag). Sharp dip observed in the reflectance spectra confirmed the existence of Ag surface plasmons (SPs). The infrared transmission spectra showed an intense and broad absorption band around 780–800 cm−1 that can be assigned to Si-C stretching vibration mode. Influence of t Ag on the spectral characteristics of SP-enhanced photoluminescence (PL) and electrical properties of silicon carbide (SiC) films has been investigated. The maximum PL enhancement by 5.5 times for Ag:SiC nanocermets is achieved when t Ag ≈ 50 s. This enhancement is due to the strong resonant coupling between SiC and the SP oscillations of the Ag NPs. Presence of Ag NPs in SiC also induces a forming-free resistive switching with switching ratio of 2 × 10−2. The analysis of I–V curves demonstrates that the trap-controlled space-charge-limited conduction with filamentary model is the governing mechanism for the resistive switching in nanocerment thin films.
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This work demonstrates the role of defects generated during rapid thermal annealing of pulsed laser deposited ZnO/Al2O3 multilayer nanostructures in presence of vacuum at different temperatures (Ta) (500–900 C) on their electrical conductance and optical characteristics. Photoluminescence (PL) emissions show the stronger green emission at Ta 600 C and violet–blue emission at TaP800 C, and are attributed to oxygen vacancies and zinc related defects (zinc vacancies and interstitials) respectively. Current–voltage (I–V) characteristics of nanostructures with rich oxygen vacancies and zinc related defects display the electroforming free resistive switching (RS) characteristics. Nanostructures with rich oxygen vacancies exhibit conventional and stable RS behavior with high and low resistance states (HRS/LRS) ratio 104 during the retention test. Besides, the dominant conduction mechanism of HRS and LRS is explained by trap-controlled-space-charge limited conduction mechanism, where the oxygen vacancies act as traps. On the other hand, nanostructures with rich zinc related defects show a diode-like RS behavior. The rectifying ratio is found to be sensitive on the zinc interstitials concentration. It is assumed that the rectifying behavior is due to the electrically formed interface layer ZnAl2O4 at the Zn defects rich ZnO crystals – Al2O3 x interface and the switching behavior is attributed to the electron trapping/de-trapping process at zinc vacancies.
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Dissertação de mestrado em Direito Judiciário: Direitos Processuais e Organização Judiciária
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In this work, Ba0.8Sr0.2TiO3 (BST)/ITO structures were grown on glass substrate and laser assisted annealing (LAA) was performed to promote the crystallization of BST. Atomic force microscopy and X-ray diffraction studies confirm the crack free and polycrystalline perovskite phase of BST. White light controlled resistive switching (RS) effect in Au/BST/ITO device is investigated. The device displays the electroforming-free bipolar RS characteristics and are explained by the modulationof the width and height of barrier at the BST/ITO interface via ferroelectric polarization. Moreover, the RS effect is signifi- cantly improved under white light illumination compared to that in the dark. The enhanced RS and photovoltaic effects are explained by considering depolarization field and charge distribution at the interface. The devices exhibit stable retention characteristics with low currents (mA), which make them attractive for non volatile memory devices.
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In this work, hafnium aluminum oxide (HfAlO) thin films were deposited by ion beam sputtering deposition technique on Si substrate. The presence of oxygen vacancies in the HfAlOx layer deposited in oxygen deficient environment is evidenced from the photoluminescence spectra. Furthermore, HfAlO(oxygen rich)/HfAlOx(oxygen poor) bilayer structures exhibit multilevel resistive switching (RS), and the switching ratio becomes more prominent with increasing the HfAlO layer thickness. The bilayer structure with HfAlO/HfAlOx thickness of 30/40 nm displays the enhanced multilevel resistive switching characteristics, where the high resistance state/ intermediate resistance state (IRS) and IRS/low resistance state resistance ratios are 102 and 5 105 , respectively. The switching mechanisms in the bilayer structures were investigated by the temperature dependence of the three resistance states. This study revealed that the multilevel RS is attributed to the coupling of ionic conduction and the metallic conduction, being the first associated to the formation and rupture of conductive filaments related to oxygen vacancies and the second with the formation of a metallic filament. Moreover, the bilayer structures exhibit good endurance and stability in time.
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Coupled carbon/climate models are predicting changes in Amazon carbon and water cycles for the near future, with conversion of forest into savanna-like vegetation. However, empirical data to support these models are still scarce for Amazon. Facing this scenario, we investigated whether conservation status and changes in rainfall regime have influenced the forest-savanna mosaic over 20 years, from 1986 to 2006, in a transitional area in Northern Amazonia. By applying a spectral linear mixture model to a Landsat-5-TM time series, we identified protected savanna enclaves within a strictly protected nature reserve (Maracá Ecological Station - MES) and non-protected forest islands at its outskirts and compared their areas among 1986/1994/2006. The protected savanna enclaves decreased 26% in the 20-years period at an average rate of 0.131 ha year-1, with a greater reduction rate observed during times of higher precipitation, whereas the non-protected forest islands remained stable throughout the period of study, balancing the encroachment of forests into the savanna during humid periods and savannization during reduced rainfall periods. Thus, keeping favorable climate conditions, the MES conservation status would continue to favor the forest encroachment upon savanna, while the non-protected outskirt areas would remain resilient to disturbance regimes. However, if the increases in the frequency of dry periods predicted by climate models for this region are confirmed, future changes in extension and directions of forest limits will be affected, disrupting ecological services as carbon storage and the maintenance of local biodiversity.
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Dissertação de mestrado integrado em Engenharia Mecânica
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The overall purpose of this study was to develop a thorough inspection regime for onsite wastewater treatment systems, which is practical and could be implemented on all site conditions across the country. With approximately 450,000 onsite wastewater treatment systems in Ireland a risk based methodology is required for site selection. This type of approach will identify the areas with the highest potential risk to human health and the environment and these sites should be inspected first. In order to gain the required knowledge to develop an inspection regime in-depth and extensive research was earned out. The following areas of pertinent interest were examined and reviewed, history of domestic wastewater treatment, relevant wastewater legislation and guidance documents and potential detrimental impacts. Analysis of a questionnaire from a prior study, which assessed the resources available and the types of inspections currently undertaken by Local authorities was carried out. In addition to the analysis of the questionnaire results, interviews were carried out with several experts involved in the area of domestic wastewater treatment. The interview focussed on twelve key questions which were directed towards the expert’s opinions on the vital aspects of developing an inspection regime. The background research, combined with the questionnaire analysis and information from the interviews provided a solid foundation for the development of an inspection regime. Chapter 8 outlines the inspection regime which has been developed for this study. The inspection regime includes a desktop study, consultation with the homeowners, visual site inspection, non-invasive site tests, and inspection of the treatment systems. The general opinion from the interviews carried out, was that a standardised approach for the inspections was necessary. For this reason an inspection form was produced which provides a standard systematic approach for inspectors to follow. This form is displayed in Appendix 3. The development of a risk based methodology for site selection was discussed and a procedure similar in approach to the Geological Survey of Irelands Groundwater Protection Schemes was proposed. The EPA is currently developing a risk based methodology, but it is not available to the general public yet. However, the EPA provided a copy of a paper outlining the key aspects of their methodology. The methodology will use risk maps which take account of the following parameters: housing density, areas with inadequate soil conditions, risk of water pollution through surface and subsurface pathways. Sites identified with having the highest potential risk to human health and the environment shall be inspected first. Based on the research carried out a number of recommendations were made which are outlined in Chapter 10. The principle conclusion was that, if these systems fail to operate satisfactorily, home owners need to understand that these systems dispose of the effluent to the 'ground' and the effluent becomes part of the hydrological cycle; therefore, they are a potential hazard to the environment and human health. It is the owners, their families and their neighbours who will be at most immediate risk.
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The authors studied the rainfall in Pesqueira (Pernambuco, Brasil) in a period of 48 years (1910 through 1957) by the method of orthogonal polynomials, degrees up to the fourth having been tried. None of them was significant, so that it seems that no trend is present. The mean observed was 679.00 mm., with standard error of the mean 205.5 mm., and a 30.3% coefficient of variation. The 95% level of probability would include annual rainfall from 263.9 up to 1094.1mm.
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Neste trabalho foram analisadas as relações entre a produção, o desenvolvimento vegetativo e a evapotranspiração de uma cultura de batata (Solanum tuberosum L.) submetida à três regimes de umidade, definidos pelos valores assumidos pelo potencial matricial da água do solo antes de se proceder as irrigações (-0,5; -1,0 e -5,0 bares) em três estádios de desenvolvimento das plantas. Com respeito à produção de tubérculos, ficou evidenciado que por ocasião da tuberização e desenvolvimento de um grande número de tubérculos, as plantas revelaram uma maior sensibilidade à redução da umidade do solo. Assim, ocorrendo deficits moderados (-1,0 bar) no período inicial de desenvolvimento, a produção não foi significativamente afetada. Isto foi atribuído, em parte, à recuperação parcial do crescimento vegetativo no estádio subseqüente, quando foram restabelecidas condições mais adequadas de umidade no solo. O mesmo não se verificou no tratamento submetido a deficits mais severos (-5,0 bares) no estádio inicial. Neste caso, o crescimento foi quase irreversivelmente reduzido, contribuindo para diminuir a produção e a eficiência de utilização de água pelas plantas. A redução da umidade do solo, a partir dos 60 dias após a emergência das plantas, não afetou a produção de tubérculos. Este procedimento concorreu para aumentar significativamente a eficiência de utilização de água. Além disso, havendo suspensão total da irrigação neste período, a senescência foi antecipada em 16 dias, em relação aos tratamentos submetidos a níveis de umidade mais elevados. O desenvolvimento vegetativo e a produção não foram igualmente afetados pela redução da umidade do solo. Conseqüentemente, o crescimento das plantas não parece se constituir em um índice absoluto da produção de tubérculos de batata.
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A produção de uma planta resulta do desenvolvimento integrado de inúmeros processos fisiológicos que, por sua vez, apresentam considerável individualidade nas interrelações com o meio ambiente. Neste trabalho foi observado o crescimento de plantas de batata (Solanum tuberosum L.), em condições de campo, quando submetidas a três regimes de umidade do solo, individualizados em três estádios fenológicos. O desenvolvimento vegetativo foi avaliado através de estimativas semanais da área foliar. Os resultados mostraram que ao final do primeiro estágio (cerca de 25 dias após a emergência das plantas) o desenvolvimento vegetativo nos tratamentos irrigados quando o potencial matricial da água do solo atingia -0,5 bar, superou, em cerca de 34%, àquele verificado nas plantas submetidas a déficits híbridos moderados (-1,0 bar) e, em aproximadamente 80%, aquelas sujeitas a déficits mais severos (-5,0 bares). Entretanto, a limitação do crescimento no primei 6 ro caso, foi parcialmente recuperada após o restabelecimento de condições mais adequadas de umidade no solo, no estádio intermediário. O mesmo não foi verificado onde ocorreram déficits hídricos mais severos no estádio inicial, quando o crescimento foi quase irreversivelmente reduzido. A intensa desidratação imposta após o completo desenvolvimento vegetativo apressou a senescência das plantas em relação aos tratamentos melhores supridos com água.