830 resultados para blended workflow


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O grande impacto dos escândalos que afetam organizações das mais diversas áreas, inclusive as públicas, tem difundido um interesse generalizado em comportamentos éticos e antiéticos. A administração ideal baseia-se em um modelo de gestão, cujo processo utiliza mecanismos que assegurem sua eficiência e eficácia e, conseqüentemente, propiciem a redução de conflitos dentro da organização. A observância de um código de ética profissional favorece essa redução de conflitos, pois seu objetivo central é a formação da consciência sobre padrões de conduta. Nesse contexto, os servidores públicos devem constituir e observar determinadas regras de conduta que norteiam seu exercício profissional, pois a consciência dos princípios morais, seja no exercício do cargo ou função, ou fora dele, refletirá no exercício vocacional do poder do estado. Seus atos, comportamentos e atitudes deverão preservar a honra e a tradição do Funcionalismo Público diante da sociedade. Entretanto, a efetividade do cumprimento de um Código de Ética não se baseia nas leis administrativas e nem com estas se confunde, mas se apóia no sentimento de adesão moral e de convicção íntima de cada servidor público. Diante dos desafios encontrados na gestão de organizações públicas e de sua importância para a sociedade em geral, o objetivo desta pesquisa é verificar os fatores que influenciam a percepção dos servidores públicos civis municipais quanto ao valor do Código de Ética Profissional da Prefeitura do Rio de Janeiro como auxiliar na solução de dilemas éticos. A amostra foi constituída por 90 (noventa) servidores lotados na Controladoria Geral do Município (CGM). A metodologia utilizada para a análise exploratória e confirmatória dos dados, necessitou de técnicas de análise fatorial na redução de dados e regressão linear múltipla para testar as cinco hipóteses oriundas do problema de pesquisa. Os resultados obtidos evidenciaram que a percepção dos servidores sobre os valores morais professados no Código de Ética e o conhecimento deles sobre o Código influenciam a percepção sobre o seu valor como auxiliar na resolução de dilemas éticos. Os resultados também sugerem que o servidor municipal percebe, em um nível baixo, o compromisso da Administração com o código.

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Diante do estreitamento do horizonte emancipatório para uma parcela significativa da população brasileira, procuramos, neste estudo, descrever a história real destes muitos, para não dizer milhões, que acabaram condenados à margem de formas sociais, econômicas, estilísticas, consagradas pelos aparatos ideológicos que perpetuam e justificam a reprodução da racionalidade do capital como o único e exclusivo sistema social. Na contemporaneidade, a mercantilização da vida em sociedade e seu indissociável processo de descartabilidade marcam presença constante no cenário das médias e grandes cidades brasileiras. Perscrutando o campo exploratório, presenciamos grupos humanos cada vez mais desvinculados do sistema produtivo. Destituídos de qualidades aceitáveis circunscritas à esfera econômica e moral capitalista, figuram, apenas, como paisagem, apenas, como fragmentos do universo objetivo. Vidas em sobrestado permanente, confundidas e misturadas com o descartável, sem lugar no mundo produtivo, galgam a invisibilidade social. É esta incivilidade levada ao seu paroxismo chamada invisibilidade que, aqui, identificamos e trazemos à luz. Uma invisibilidade que se constrói não pelo olhar, mas num imaginário persistente que fixa a pobreza como marca de inferioridade, potencializando um modo de ser que descredencia indivíduos para o exercício de seus direitos e da vida social, já que percebidos numa diferença incomensurável, aquém das regras da equivalência, isto é, da alteridade que a formalidade da lei e o exercício dos direitos deveriam concretizar. É neste espaço de interpelação do outro que a invisibilidade se constitui. Ela habita o registro do impensável, do conflito com a ideia de essência, de alteridade que arbitra todas as formas de ser. O invisível surge como alguém que não É, provocação que incita o estranhamento, o que o torna assediado por um forte ranço moral que preserva a depreciação de tudo que perdeu o valor de uso. É assim decretada a sua tripla negação: desistoricizado, desumanizado e dessignificado, mesclado a um universo de contravalores que imobilizam a vida, tornando-o incodificável, um personagem inefável colocando em xeque toda a lógica da representação. Nossa proposta, com este trabalho, foi o de ir além de um trabalho documental, mas de constatação e denúncia, procurando ultrapassar visões reducionistas que naturalizam a pobreza e a miséria, reencontrando assim, nas mediações e contrapontos, as contradições fundas que conduzem muitos a invalidação social, cujas violações e mutilações, de toda ordem, prosperam a favor de uma ordem econômica que se apresenta desvinculada e independente de limites e de justificações morais

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Portland cement is the most commonly and widely used binder in ground improvement soil stabilisation applications. However, many changes are now affecting the selection and application of stabilisation additives. These include the significant environmental impacts of Portland cement, increased use of industrial by-products and their variability, increased range of application of binders and the development of alternative cements and novel additives with enhanced environmental and technical performance. This paper presents results from a number of research projects on the application of a number of Portland cement-blended binders, which offer sustainability advantages over Portland cement alone, in soil stabilisation. The blend materials included ground granulated blastfurnace slag, pulverised fuel ash, cement kiln dust, zeolite and reactive magnesia and stabilised soils, ranging from sand and gravel to clay, and were assessed based on their mechanical performance and durability. The results are presented in terms of strength and durability enhancements offered by those blended binders.

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Successful product development, especially in motorsport, increasingly depends not just on the ability to simulate aero-thermal behavior of complex geometrical configurations, but also the ability to automate these simulations within a workflow and perform as many simulations as possible within constrained time frames. The core of these aero-thermal simulations - and usually the main bottleneck - is generating the computational mesh. This paper describes recent work aimed at developing a mesh generator which can reliably produce meshes for geometries of essentially arbitrary complexity in an automated manner and fast enough to keep up with the pace of an engineering development program. Our goal is to be able to script the mesh generation within an automated workflow - and forget it. © 2011 SAE International.

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The modern CFD process consists of mesh generation, flow solving and post-processing integrated into an automated workflow. During the last several years we have developed and published research aimed at producing a meshing and geometry editing system, implemented in an end-to-end parallel, scalable manner and capable of automatic handling of large scale, real world applications. The particular focus of this paper is the associated unstructured mesh RANS flow solver and the porting of it to GPU architectures. After briefly describing the solver itself, the special issues associated with porting codes using unstructured data structures are discussed - followed by some application examples. Copyright © 2011 by W.N. Dawes.

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Computer modelling approaches have significant potential to enable decision-making about various aspects of responsive manufacturing. In order to understand the system prior to the selection of any responsiveness strategy, multiple process segments of organisations need to be modelled. The article presents a novel systematic approach for creating coherent sets of unified enterprise, simulation and other supporting models that collectively facilitate responsiveness. In this approach, enterprise models are used to explicitly define relatively enduring relationships between (i) production planning and control (PPC) processes, that implement a particular strategy and (ii) process-oriented elements of production systems, that are work loaded by the PPC processes. Coherent simulation models, can in part be derived from the enterprise models, so that they computer execute production system behaviours. In this way, time-based performance outcomes can be simulated; so that the impacts of alternative PPC strategies on the planning and controlling historical or forecasted patterns of workflow, through (current and possible future) production system models, can be analysed. The article describes the unified modelling approach conceived and its application in a furniture industry case study small and medium enterprise (SME). Copyright © 2010 Inderscience Enterprises Ltd.

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Our recent efforts of using large-eddy simulation (LES) type methods to study complex and realistic geometry single stream and co-flow nozzle jets and acoustics are summarized in this paper. For the LES, since the solver being used tends towards having dissipative qualities, the subgrid scale (SGS) model is omitted, giving a numerical type LES (NLES). To overcome near wall streak resolution problems a near wall RANS (Reynolds averaged Navier-Stokes) model is smoothly blended in the LES making a hybrid RANS-NLES approach. Several complex nozzle geometries including the serrated (chevron) nozzle, realistic co-axial nozzles with eccentricity, pylon and wing-flap are discussed. The hybrid RANS-NLES simulations show encouraging predictions for the chevron jets. The chevrons are known to increase the high frequency noise at high polar angles, but decrease the low frequency noise at lower angles. The deflection effect of the potential core has an important mechanism of noise reduction. As for co-axial nozzles, the eccentricity, the pylon and the deployed wing-flap are shown to influence the flow development, especially the former to the length of potential core and the latter two having a significant impact on peak turbulence levels and spreading rates. The studies suggest that complex and real geometry effects are influential and should be taken into count when moving towards real engine simulations. © 2012 Elsevier Ltd. All rights reserved.

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Hybrid large-eddy type simulations for cold jet flows from a serrated nozzle are performed at an acoustic Mach number Ma ac = 0.9 and Re = 1.03×10 6. Since the solver being used tends towards having dissipative qualities, the subgrid scale (SGS) model is omitted, giving a numerical type LES (NLES) or implicit LES (ILES) reminiscent procedure. To overcome near wall streak resolution problems a near wall RANS (Reynolds averaged Navier-Stokes) model is smoothly blended to the LES making a hybrid RANS-ILES. The geometric complexity of the serrated nozzle is fully considered without simplification or emulation. An improved but still modest hexahedral multi-block grid with circa 20 million grid points (with respect to 12.5 million in Xia et al.; Int J Heat Fluid Flow 30:1067-1079, 2009) is used. Despite the modest grid size, encouraging and improved results are obtained. Directly resolved mean and second-order fluctuating quantities along the jet centerline and in the jet shear layer compare favorably with measurements. The radiated far-field sound predicted using the Ffowcs Williams and Hawkings (FW-H) surface integral method shows good agreement with the measurements in directivity and sound spectra. © 2011 Springer Science+Business Media B.V.

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Modeling work in neuroscience can be classified using two different criteria. The first one is the complexity of the model, ranging from simplified conceptual models that are amenable to mathematical analysis to detailed models that require simulations in order to understand their properties. The second criterion is that of direction of workflow, which can be from microscopic to macroscopic scales (bottom-up) or from behavioral target functions to properties of components (top-down). We review the interaction of theory and simulation using examples of top-down and bottom-up studies and point to some current developments in the fields of computational and theoretical neuroscience.

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Passive steering systems have been used for some years to control the steering of trailer axles on articulated vehicles. These normally use a 'command steer' control strategy, which is designed to work well in steady-state circles at low speeds, but which generates inappropriate steer angles during transient low-speed maneuvers and at high speeds. In this paper, 'active' steering control strategies are developed for articulated heavy goods vehicles. These aim to achieve accurate path following for tractor and trailer, for all paths and all normal vehicle speeds, in the presence of external disturbances. Controllers are designed to implement the path-following strategies at low and high speeds, whilst taking into account the complexities and practicalities of articulated vehicles. At low speeds, the articulation and steer angles on articulated heavy goods vehicles are large and small-angle approximations are not appropriate. Hence, nonlinear controllers based on kinematics are required. But at high-speeds, the dynamic stability of control system is compromised if the kinematics-based controllers remain active. This is because a key state of the system, the side-slip characteristics of the trailer, exhibits a sign-change with increasing speeds. The low and high speed controllers are blended together using a speed-dependent gain, in the intermediate speed range. Simulations are conducted to compare the performance of the new steering controllers with conventional vehicles (with unsteered drive and trailer axles) and with vehicles with command steer controllers on their trailer axles. The simulations show that active steering has the potential to improve significantly the directional performance of articulated vehicles for a wide range of conditions, throughout the speed range. © VC 2013 by ASME.

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The ultrafast charge carrier dynamics in GaAs/conjugated polymer type II heterojunctions are investigated using time-resolved photoluminescence spectroscopy at 10 K. By probing the photoluminescence at the band edge of GaAs, we observe strong carrier lifetime enhancement for nanowires blended with semiconducting polymers. The enhancement is found to depend crucially on the ionization potential of the polymers with respect to the Fermi energy level at the surface of the GaAs nanowires. We attribute these effects to electron doping by the polymer which reduces the unsaturated surface-state density in GaAs. We find that when the surface of nanowires is terminated by native oxide, the electron injection across the interface is greatly reduced and such surface doping is absent. Our results suggest that surface engineering via π-conjugated polymers can substantially improve the carrier lifetime in nanowire hybrid heterojunctions with applications in photovoltaics and nanoscale photodetectors.

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SnS/SnO heterojunction structured nanocrystals with zigzag rod-like connected morphology were prepared by using a simple two-step method. Bulk heterojunction solar cells were fabricated using the SnS/SnO nanocrystals blended with poly(2-methoxy-5-(3',7'-dimethyloctyloxy)-1,4-phenylene vinylene) (MDMO-PPV) as the active layer. Compared with solar cells using SnS nanoparticles hybridized with MDMO-PPV as the active layer, the SnS/SnO devices showed better performance, with a power conversion efficiency higher by about one order in magnitude.

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知识在多个参与者之间的产生、传播与应用称为知识流.在知识密集型组织中,对业务过程的控制和对知识资产的管理具有紧密的依赖关系.工作流管理是实现业务过程控制的重要技术.当前的工作流过程元模型不支持对知识管理机制的表示.为此,提出了一个扩展的工作流过程元模型,以支持业务过程控制与知识管理的集成.在此慕?S肟刂平?辛松钊氲难芯?提出了一种知识流建模方法,通过 5 类知识流单元对知识传递与重用、人员协作与交流进行表示.针对知识流中的动态因素,研究了基于资源约束、知识需求变化和时间约束的知识流控制方法,以实现自适应的知识流控制,并给出了有关算法.为工作流技术与知识管理技术的有效结合提供了一个有益的途径.