4 resultados para portal plane frame

em Repositório Científico do Instituto Politécnico de Lisboa - Portugal


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O contínuo desenvolvimento na área da Web 2.0 potencia a implementação de portais Web de carácter multi-funcional com uma elevada versatilidade e uma grande riqueza interactiva. Este projecto pretende tirar partido do desenvolvimento ocorrido nas tecnologias desta área de forma a apresentar uma proposta de portal institucional para o Instituto Superior de Engenharia de Lisboa (ISEL) que espelhe a Instituição como inovadora e actual. Para a implementação desta proposta foi desenvolvida uma plataforma de integração ao nível da camada de apresentação, seguindo os conceitos Web 2.0 aplicáveis, assente em tecnologias cliente suportadas em browser. Com esta plataforma pretende-se disponibilizar os alicerces para a integração das várias aplicações de front-office da Instituição numa camada homogénea, reduzindo a curva de aprendizagem das várias aplicações e contribuindo para uma integração destas que diminua a complexidade de utilização e facilite a manutenção e evolução. Sendo uma plataforma de integração, foi disponibilizada a possibilidade de efectuar as comunicações com base em JSON, XML, cabeçalhos dos pedidos http e Web services SOAP, sendo utilizadas mensagens ACL a nível aplicacional. O que permite um maior desacoplamento tecnológico entre a plataforma e os serviços utilizados. O desenvolvimento do projecto foi assente nos conceitos de desenvolvimento ágil, baseado na prototipagem. A gestão do projecto foi feita com recurso a uma aplicação de gestão de projecto colaborativa, o Redmine, que permitiu a adequação do projecto às necessidades ao longo do desenvolvimento e uma partilha mais fácil do estado do mesmo e de informações críticas do seu desenvolvimento aos vários intervenientes.

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Frame rate upconversion (FRUC) is an important post-processing technique to enhance the visual quality of low frame rate video. A major, recent advance in this area is FRUC based on trilateral filtering which novelty mainly derives from the combination of an edge-based motion estimation block matching criterion with the trilateral filter. However, there is still room for improvement, notably towards reducing the size of the uncovered regions in the initial estimated frame, this means the estimated frame before trilateral filtering. In this context, proposed is an improved motion estimation block matching criterion where a combined luminance and edge error metric is weighted according to the motion vector components, notably to regularise the motion field. Experimental results confirm that significant improvements are achieved for the final interpolated frames, reaching PSNR gains up to 2.73 dB, on average, regarding recent alternative solutions, for video content with varied motion characteristics.

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Gravity loads can affect a reinforced concrete structure's response to seismic actions, however, traditional procedures for testing the beam behaviour do not take this effect into consideration. An experimental campaign was carried out in order to assess the influence of the gravity load on RC beam connection to the column subjected to cyclic loading. The experiments included the imposition of a conventional quasi-static test protocol based on the imposition of a reverse cyclic displacement history and of an alternative cyclic test procedure starting from the gravity load effects. The test results are presented, compared and analysed in this paper. The imposition of a cyclic test procedure that included the gravity loads effects on the RC beam ends reproduces the demands on the beams' critical zones more realistically than the traditional procedure. The consideration of the vertical load effects in the test procedure led to an accumulation of negative (hogging) deformation. This phenomenon is sustained with the behaviour of a portal frame system under cyclic loads subject to a significant level of the vertical load, leading to the formation of unidirectional plastic hinges. In addition, the hysteretic behaviour of the RC beam ends tested was simulated numerically using the nonlinear structural analysis software - OpenSees. The beam-column model simulates the global element behaviour very well, as there is a reasonable approximation to the hysteretic loops obtained experimentally. (C) 2013 Elsevier Ltd. All rights reserved.

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Measurements in civil engineering load tests usually require considerable time and complex procedures. Therefore, measurements are usually constrained by the number of sensors resulting in a restricted monitored area. Image processing analysis is an alternative way that enables the measurement of the complete area of interest with a simple and effective setup. In this article photo sequences taken during load displacement tests were captured by a digital camera and processed with image correlation algorithms. Three different image processing algorithms were used with real images taken from tests using specimens of PVC and Plexiglas. The data obtained from the image processing algorithms were also compared with the data from physical sensors. A complete displacement and strain map were obtained. Results show that the accuracy of the measurements obtained by photogrammetry is equivalent to that from the physical sensors but with much less equipment and fewer setup requirements. © 2015Computer-Aided Civil and Infrastructure Engineering.