952 resultados para Diffusion and lntermittency
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With a solution technique, NaY zeolite incorporated, tetraethylorthosilicate-crosslinked poly(vinyl alcohol) membranes were prepared. The resulting membranes were tested for their ability to separate isopropyl alcohol/water mixtures by pervaporation in the temperature range of 30-50 degrees C. The effects of the zeolite content and feed composition on the pervaporation performance of the membranes were investigated. The experimental results demonstrated that both flux and selectivity increased simultaneously with increasing zeolite content in the membranes. This was explained on the basis of the enhancement of hydrophilicity, selective adsorption, and establishment of a molecular sieving action attributed to the creation of pores in the membrane matrix. The membrane containing 15 mass % zeolite exhibited the highest separation selectivity of 3991 with a flux of 5.39 X 10(-2) kg/m(2) h with 10 mass % water in the feed at 30 degrees C. The total flux and flux of water were close to each other for almost all the studied membranes, and this suggested that the membranes could be used effectively to break the azeotropic point of water/isopropyl alcohol mixtures to remove a small amount of water from isopropyl alcohol. From the temperature-dependent diffusion and permeation values, the Arrhenius activation parameters were estimated. The activation energy values obtained for water were significantly lower than those for isopropyl alcohol, and this suggested that the developed membranes had a higher separation efficiency for water/isopropyl alcohol systems. The activation energy values for total permeation and water permeation were found to be almost the same for all the membranes, and this signified that coupled transport was minimal because of the highly selective nature of the membranes. Positive heat of sorption values were observed in all the membranes, and this suggested that Henry's mode of sorption was predominant. (c) 2008 Wiley Periodicals, lnc.
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Accurate replication of the processes associated with the energetics of the tropical ocean is necessary if coupled GCMs are to simulate the physics of ENSO correctly, including the transfer of energy from the winds to the ocean thermocline and energy dissipation during the ENSO cycle. Here, we analyze ocean energetics in coupled GCMs in terms of two integral parameters describing net energy loss in the system using the approach recently proposed by Brown and Fedorov (J Clim 23:1563–1580, 2010a) and Fedorov (J Clim 20:1108–1117, 2007). These parameters are (1) the efficiency c of the conversion of wind power into the buoyancy power that controls the rate of change of the available potential energy (APE) in the ocean and (2) the e-folding rate a that characterizes the damping of APE by turbulent diffusion and other processes. Estimating these two parameters for coupled models reveals potential deficiencies (and large differences) in how state-of-the-art coupled GCMs reproduce the ocean energetics as compared to ocean-only models and data assimilating models. The majority of the coupled models we analyzed show a lower efficiency (values of c in the range of 10–50% versus 50–60% for ocean-only simulations or reanalysis) and a relatively strong energy damping (values of a-1 in the range 0.4–1 years versus 0.9–1.2 years). These differences in the model energetics appear to reflect differences in the simulated thermal structure of the tropical ocean, the structure of ocean equatorial currents, and deficiencies in the way coupled models simulate ENSO.
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During the last termination (from ~18 000 years ago to ~9000 years ago), the climate significantly warmed and the ice sheets melted. Simultaneously, atmospheric CO2 increased from ~190 ppm to ~260 ppm. Although this CO2 rise plays an important role in the deglacial warming, the reasons for its evolution are difficult to explain. Only box models have been used to run transient simulations of this carbon cycle transition, but by forcing the model with data constrained scenarios of the evolution of temperature, sea level, sea ice, NADW formation, Southern Ocean vertical mixing and biological carbon pump. More complex models (including GCMs) have investigated some of these mechanisms but they have only been used to try and explain LGM versus present day steady-state climates. In this study we use a coupled climate-carbon model of intermediate complexity to explore the role of three oceanic processes in transient simulations: the sinking of brines, stratification-dependent diffusion and iron fertilization. Carbonate compensation is accounted for in these simulations. We show that neither iron fertilization nor the sinking of brines alone can account for the evolution of CO2, and that only the combination of the sinking of brines and interactive diffusion can simultaneously simulate the increase in deep Southern Ocean δ13C. The scenario that agrees best with the data takes into account all mechanisms and favours a rapid cessation of the sinking of brines around 18 000 years ago, when the Antarctic ice sheet extent was at its maximum. In this scenario, we make the hypothesis that sea ice formation was then shifted to the open ocean where the salty water is quickly mixed with fresher water, which prevents deep sinking of salty water and therefore breaks down the deep stratification and releases carbon from the abyss. Based on this scenario, it is possible to simulate both the amplitude and timing of the long-term CO2 increase during the last termination in agreement with ice core data. The atmospheric δ13C appears to be highly sensitive to changes in the terrestrial biosphere, underlining the need to better constrain the vegetation evolution during the termination.
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About 90% of the anthropogenic increase in heat stored in the climate system is found the oceans. Therefore it is relevant to understand the details of ocean heat uptake. Here we present a detailed, process-based analysis of ocean heat uptake (OHU) processes in HiGEM1.2, an atmosphere-ocean general circulation model (AOGCM) with an eddy-permitting ocean component of 1/3 degree resolution. Similarly to various other models, HiGEM1.2 shows that the global heat budget is dominated by a downward advection of heat compensated by upward isopycnal diffusion. Only in the upper tropical ocean do we find the classical balance between downward diapycnal diffusion and upward advection of heat. The upward isopycnal diffusion of heat is located mostly in the Southern Ocean, which thus dominates the global heat budget. We compare the responses to a 4xCO2 forcing and an enhancement of the windstress forcing in the Southern Ocean. This highlights the importance of regional processes for the global ocean heat uptake. These are mainly surface fluxes and convection in the high latitudes, and advection in the Southern Ocean mid-latitudes. Changes in diffusion are less important. In line with the CMIP5 models, HiGEM1.2 shows a band of strong OHU in the mid-latitude Southern Ocean in the 4xCO2 run, which is mostly advective. By contrast, in the high-latitude Southern Ocean regions it is the suppression of convection that leads to OHU. In the enhanced windstress run, convection is strengthened at high Southern latitudes, leading to heat loss, while the magnitude of the OHU in the Southern mid-latitudes is very similar to the 4xCO2 results. Remarkably, there is only very small global OHU in the enhanced windstress run. The wind stress forcing just leads to a redistribution of heat. We relate the ocean changes at high southern latitudes to the effect of climate change on the Antarctic Circumpolar Current (ACC). It weakens in the 4xCO2 run and strengthens in the wind stress run. The weakening is due to a narrowing of the ACC, caused by an expansion of the Weddell Gyre, and a flattening of the isopycnals, which are explained by a combination of the wind stress forcing and increased precipitation.
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We discuss the basic hydrodynamics that determines the density structure of the disks around hot stars. Observational evidence supports the idea that these disks are Keplerian (rotationally supported) gaseous disks. A popular scenario in the literature, which naturally leads to the formation of Keplerian disks, is the viscous decretion model. According to this scenario, the disks are hydrostatically supported in the vertical direction, while the radial structure is governed by the viscous transport. This suggests that the temperature is one primary factor that governs the disk density structure. In a previous study we demonstrated, using three-dimensional non-LTE Monte Carlo simulations, that viscous Keplerian disks can be highly nonisothermal. In this paper we build on our previous work and solve the full problem of the steady state nonisothermal viscous diffusion and vertical hydrostatic equilibrium. We find that the self-consistent solution departs significantly from the analytic isothermal density, with potentially large effects on the emergent spectrum. This implies that nonisothermal disk models must be used for a detailed modeling of Be star disks.
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Hybrid films from poly (methylmethacrylate) (PMMA) and dioctadecyldimethylammonium bromide (DODAB), cetyltrimethylammonium bromide (CTAB), or tetrapropylammonium bromide (TPAB) were characterized by determination of wettability, ellipsometry, atomic force microscopy, active compounds diffusion to water, X-ray photoelectron spectroscopy (XPS) with determination of atomic composition on the films surface, and biocidal activity against Pseudomonas aeruginosa or Staphylococcus aureus. QAC mobility in the films increased from DODAB to CTAB to TPAB. Diffusion and optimal hydrophobic hydrophilic balance imparted the highest bioactivity to CTAB. DODAB sustained immobilization at the film surface killed bacteria upon contact. TPAB ability to diffuse was useless because of its unfavorable hydrophobic hydrophilic balance for bioactivity.
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A Simple way to improve solar cell efficiency is to enhance the absorption of light and reduce the shading losses. One of the main objectives for the photovoltaic roadmap is the reduction of metalized area on the front side of solar cell by fin lines. Industrial solar cell production uses screen-printing of metal pastes with a limit in line width of 70-80 μm. This paper will show a combination of the technique of laser grooved buried contact (LGBC) and Screen-printing is able to improve in fine lines and higher aspect ratio. Laser grooving is a technique to bury the contact into the surface of silicon wafer. Metallization is normally done with electroless or electrolytic plating method, which a high cost. To decrease the relative cost, more complex manufacturing process was needed, therefore in this project the standard process of buried contact solar cells has been optimized in order to gain a laser grooved buried contact solar cell concept with less processing steps. The laser scribing process is set at the first step on raw mono-crystalline silicon wafer. And then the texturing etch; phosphorus diffusion and SiNx passivation process was needed once. While simultaneously optimizing the laser scribing process did to get better results on screen-printing process with fewer difficulties to fill the laser groove. This project has been done to make the whole production of buried contact solar cell with fewer steps and could present a cost effective opportunity to solar cell industries.
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O Instituto Nacional de Matemática Pura e Aplicada (IMPA) foi o primeiro órgão de pesquisa criado pelo Conselho Nacional de Pesquisas (CNPq), em 1952. Desde seu início o IMPA dedicou-se à pesquisa científica em matemática do mais alto nível e promoveu a formação de novos pesquisadores, promovendo também a difusão e aprimoramento da cultura matemática no país. Mais recentemente, passou a dedicar-se também às aplicações da matemática em outras áreas do conhecimento e em setores tecnológicos. Ao longo de mais de cinqüenta anos de trabalho, consolidou-se como o centro de referência em pesquisa matemática e formação de novos pesquisadores no Brasil e na América Latina. Tendo em vista a relevância da instituição para os rumos da pesquisa na área no país, este trabalho de conclusão de curso tem como objetivo estabelecer as diretrizes para a criação do Centro de Memória do Instituto Nacional de Matemática Pura e Aplicada (CEMIMPA), que seria um espaço para produção e re-elaboração de identidade e memória institucional – seguindo uma tendência que se afirma, no Brasil, desde a década de 1970. Discute-se aqui a trajetória do IMPA, os conceitos sobre memória, acervo e identidade para conseguir demarcar as linhas gerais do CEMIMPA e precisar sua importância para a instituição. A criação de um centro de memória como o que propomos, ajudaria a dar visibilidade à história do IMPA, de seus pesquisadores, suas áreas de atuação para além dos limites do cenário da pesquisa matemática, alcançando um público cada vez mais amplo e diverso. Isto poderia influenciar de forma ainda mais vigorosa a formação de jovens em geral, e em particular, de futuros matemáticos. Também poderá incrementar as pesquisas sobre a história da matemática no Brasil e a trajetória dos pesquisadores que a fizerem e dela fazem parte.
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O presente trabalho objetivou identificar a coleção dos livros de horas da Biblioteca Nacional do Brasil, com vistas a produzir um catálogo. A coleção abrange nove livros manuscritos iluminados; neste trabalho, porém, foram identificados apenas os oito livros produzidos na segunda metade do século XV. Quatro desses livros são provenientes da Real Biblioteca – Casa do Infantado, que veio para o Brasil em 1808 com a família real portuguesa, tornando-se o núcleo inicial da Biblioteca Nacional brasileira. Na primeira parte apresentamos as considerações teóricas situando o período no qual o livro de horas se inscreve, destacando a sua importância, tanto na sociedade quanto no desenvolvimento da piedade do homem na cristandade medieval. Apresentamos também um breve histórico da Biblioteca Nacional, depositária da coleção dos livros de horas e, concluindo a primeira parte, os dados referentes à construção do catálogo. A segunda parte é o catálogo propriamente dito, onde os livros estão descritos obedecendo às normas internacionais vigentes, viabilizando o acesso, a divulgação e o intercâmbio de informações, promovendo assim a valorização e a preservação desses bens culturais e patrimoniais.
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This paper investigates the impact of foreign direct investment on the productivity performance of domestic firms in Portugal. The data comprise nine manufacturing sectors for the period 1992-95. Relatively to previous studies, model specification is improved by taking into consideration several aspects: the influence of the “technological gap” on spill-overs diffusion and the choice of its most appropriate interval; sectoral variation in the coefficients of the spill-overs effect; identification of constant, idiosyncratic sectoral factors by means of a fixed effects model; and the search for inter-sectoral positive spillover effects. The relationship between domestic firms productivity and the foreign presence does take place in a positive way, only if a proper technology differential between the foreign and domestic producers exists and the sectoral characteristics are favourable. In broad terms, spillovers diffusion is associated to modern industries in which the foreign owned establishments have a clear, but not too sharp, edge on the domestic ones. Besides, other specific sectoral influences can be pertinent; agglomerative location factors being one example.
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Nos últimos anos, o mundo vem assistindo a um maior número de mobilizações sociais, que ocorrem em todo o espectro de regimes de governo e níveis de desenvolvimento econômico: de países tradicionalmente democráticos e desenvolvidos, a países em desenvolvimento sob regimes autoritários. Tais mobilizações vêm ocorrendo simultaneamente a uma expansão acelerada das Tecnologias da Informação e Comunicação (TIC), mais notadamente o avanço da Internet e dos telefones celulares (ITU, 2014; CETIC, 2013), tornando mais rápido e fácil o acesso e difusão de informações sem o intermédio dos meios de comunicação de massa tradicionais; há os que defendem que o contexto de cada nação é o grande responsável por tais manifestações, enquanto outros citam a importância tanto das TIC quanto dos fatores contextuais como influenciadores. O objetivo desta pesquisa é identificar as variáveis explicativas da ocorrência de protestos, considerando aspectos tecnológicos, sociais e políticos, por meio da construção de modelos utilizando dados em painel. Para tal são utilizados dados do Banco Mundial, Fórum Econômico Mundial e ITU, desenvolvendo uma amostra de 124 países. O resultado desta análise revela que o percentual de usuários de Internet influencia positivamente a ocorrência de protestos e que países desenvolvidos possuem maior a chance de apresentarem manifestações.
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Nos últimos anos, o mundo vem assistindo a um maior número de mobilizações sociais, que ocorrem em todo o espectro de regimes de governo e níveis de desenvolvimento econômico: de países tradicionalmente democráticos e desenvolvidos, a países em desenvolvimento sob regimes autoritários. Tais mobilizações vêm ocorrendo simultaneamente a uma expansão acelerada das Tecnologias da Informação e Comunicação (TIC), mais notadamente o avanço da Internet e dos telefones celulares (ITU, 2014; CETIC, 2013), tornando mais rápido e fácil o acesso e difusão de informações sem o intermédio dos meios de comunicação de massa tradicionais; há os que defendem que o contexto de cada nação é o grande responsável por tais manifestações, enquanto outros citam a importância tanto das TIC quanto dos fatores contextuais como influenciadores. O objetivo desta pesquisa é identificar as variáveis explicativas da ocorrência de protestos, considerando aspectos tecnológicos, sociais e políticos, por meio da construção de modelos utilizando dados em painel. Para tal são utilizados dados do Banco Mundial, Fórum Econômico Mundial e ITU, desenvolvendo uma amostra de 124 países. O resultado desta análise revela que o percentual de usuários de Internet influencia positivamente a ocorrência de protestos e que países desenvolvidos possuem maior a chance de apresentarem manifestações.
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Os dilemas e desafios estratégicos para viabilização econômica e legitimação enfrentados por organizações sociais no Brasil – organizações sem finalidade econômica - se assemelham aos enfrentados por outros tipos de organização nas diversas partes do mundo. A literatura dominante de gestão e estratégia privilegia, em seu arcabouço, conceitos e práticas que apoiam e são apoiados nas grandes corporações privadas. A crescente influência dessas organizações na academia e na sociedade ajuda a explicar o papel de importância que estratégias de responsabilidade social corporativa alcançaram na legitimação das práticas e ideologia neoliberal que ajudam a reafirmar. Por sua vez, este quadro ajuda a explicar a posição marginal que as organizações sociais ocupam na área de gestão estratégica. Esta dissertação busca a ampliação da discussão dos estudos do campo da gestão estratégica que abordaram a construção hegemônica do campo, seus processos de legitimação e difusão e as respectivas abordagens críticas, inclusive o aspecto de colonialidade no qual a literatura dominante se insere. A compreensão da trajetória estratégica de uma organização social, o Serviço Social do Comércio – Sesc, se deu pela investigação dos processos de legitimação mobilizados dentro da própria organização e no contexto em que atua. Para tal foi utilizada a perspectiva contextualista que permitiu a observação mediante as relações internas e externas estabelecidas e as mudanças e continuidades promovidas em função de sua legitimação. Ao representar organizações como sistemas políticos e culturais que influenciam e que são influenciados pelo meio, esta investigação promove o entendimento dos componentes ideológicos e de poder na gestão estratégica, comumente naturalizados pela literatura dominante, abrindo espaço ainda para a descolonização da área de gestão estratégica, enfatizando a diversidade de organizações e de práticas e na possibilidade da coexistência de diferentes tipos de organização na área.
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The ionic plasma nitriding is one of the most important plasma assisted treatment technique for surface modification, but it presents some inherent problems mainly in nitriding pieces with complex geometries. In the last four years has appeared a plasma nitriding technique, named ASPN (Active Screen Plasma Nitriding) in which the samples and the workload are surrounded by a metal screen on which the cathodic potential is applied. This new technique makes possible to obtain a perfect uniform nitrided layer apart from the shape of the samples. The present work is based on the development of a new nitriding plasma technique named CCPN (Cathodic Cage Plasma Nitriding) Patent PI 0603213-3 derived from ASPN, but utilizes the hollow cathode effect to increase the nitriding process efficiency. That technique has shown great improvement on the treatment of several types of steels under different process conditions, producing thicker and harder layers when compared with both, ASPN and ionic plasma nitriding, besides eliminating problems associated with the later technique. The best obtained results are due to the hollow cathode effect on the cage holes. Moreover, characteristic problems of ionic plasma nitriding are eliminated due to the fact that the luminescent discharge acts on the cage wall instead of on the samples surface, which remains under a floating potential. In this work the enhancement of the cathodic cage nitriding layers proprieties, under several conditions for some types of steels was investigated, besides the mechanism for nitrides deposition on glass substrate, concluding that the CCPN is both a diffusion and a deposition process at the same time
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)