988 resultados para Experimental art


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In this contribution, original limit analysis numerical results are presented dealing with some reinforced masonry arches tested at the University of Minho-UMinho, PT. Twelve in-scale circular masonry arches were considered, reinforced in various ways at the intrados or at the extrados. GFRP reinforcements were applied either on undamaged or on previously damaged elements, in order to assess the role of external reinforcements even in repairing interventions. The experimental results were critically discussed at the light of limit analysis predictions, based on a 3D FE heterogeneous upper bound approach. Satisfactory agreement was found between experimental evidences and the numerical results, in terms of failure mechanisms and peak load.

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Many democratic decision making institutions involve quorum rules. Such rules are commonly motivated by concerns about the “legitimacy” or “representativeness” of decisions reached when only a subset of eligible voters participates. A prominent example of this can be found in the context of direct democracy mechanisms, such as referenda and initiatives. We conduct a laboratory experiment to investigate the consequences of the two most common types of quorum rules: a participation quorum and an approval quorum. We find that both types of quora lead to lower participation rates, dramatically increasing the likelihood of full-fledged electoral boycotts on the part of those who endorse the Status Quo. This discouraging effect is significantly larger under a participation quorum than under an approval quorum.

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This paper proposes a methodology for improvement of energy efficiency in buildings through the innovative simultaneous incorporation of three distinct phase change materials (here termed as hybrid PCM) in plastering mortars for façade walls. The thermal performance of a hybrid PCM mortar was experimentally evaluated by comparing the behaviour of a prototype test cell (including hybrid PCM plastering mortar) subjected to realistic daily temperature profiles, with the behaviour of a similar prototype test cell, in which no PCM was added. A numerical simulation model was employed (using ANSYS-FLUENT) to validate the capacity of simulating temperature evolution within the prototype containing hybrid PCM, as well as to understand the contribution of hybrid PCM to energy efficiency. Incorporation of hybrid PCM into plastering mortars was found to have the potential to significantly reduce heating/cooling temperature demands for maintaining the interior temperature within comfort levels when compared to normal mortars (without PCM), or even mortars comprising a single type of PCM.

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High performance concrete (HPC) offers several advantages over normal-strength concrete, namely, high mechanical strength and high durability. Therefore, HPC allows for concrete structures with less steel reinforcement and a longer service life, both of which are crucial issues in the eco-efficiency of construction materials. Nevertheless international publications on the field of concrete containing nanoparticles are scarce when compared to Portland cement concrete (around 1%) of the total international publications. HPC nanoparticle-based publications are even scarcer. This article presents the results of an experimental investigation on the mechanical properties and durability of HPC based on nano-TiO2 and fly ash. The durability performance was assessed by means of water absorption by immersion, water absorption by capillarity, ultrasonic pulse velocity, electric resistivity, chloride diffusion and resistance to sulphuric acid attack. The results show that the concretes containing an increased content of nano-TiO2 show decreased durability performance. The results also show that concrete with 1% nano-TiO2 and 30% fly ash as Portland cement replacement show a high mechanical strength (C55/C67) and a high durability. However, it should be noted that the cost of nano-TiO2 is responsible for a severe increase in the cost of concrete mixtures.

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Tese de Doutoramento Plano Doutoral em Engenharia Eletrónica e de Computadores.

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Tese de Doutoramento em Engenharia Eletrónica e Computadores.

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Dissertação de mestrado integrado em Engenharia Civil

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The use of genome-scale metabolic models has been rapidly increasing in fields such as metabolic engineering. An important part of a metabolic model is the biomass equation since this reaction will ultimately determine the predictive capacity of the model in terms of essentiality and flux distributions. Thus, in order to obtain a reliable metabolic model the biomass precursors and their coefficients must be as precise as possible. Ideally, determination of the biomass composition would be performed experimentally, but when no experimental data are available this is established by approximation to closely related organisms. Computational methods however, can extract some information from the genome such as amino acid and nucleotide compositions. The main objectives of this study were to compare the biomass composition of several organisms and to evaluate how biomass precursor coefficients affected the predictability of several genome-scale metabolic models by comparing predictions with experimental data in literature. For that, the biomass macromolecular composition was experimentally determined and the amino acid composition was both experimentally and computationally estimated for several organisms. Sensitivity analysis studies were also performed with the Escherichia coli iAF1260 metabolic model concerning specific growth rates and flux distributions. The results obtained suggest that the macromolecular composition is conserved among related organisms. Contrasting, experimental data for amino acid composition seem to have no similarities for related organisms. It was also observed that the impact of macromolecular composition on specific growth rates and flux distributions is larger than the impact of amino acid composition, even when data from closely related organisms are used.

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Dissertação de mestrado integrado em Engenharia Civil

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Dissertação de mestrado integrado em Engenharia Civil

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OBJETIVO: Estudar o efeito do suco da berinjela sobre os lípides plasmáticos, o colesterol tecidual, a peroxidação lipídica das LDL nativas, oxidadas e da parede arterial e o relaxamento dependente do endotélio, em coelhos hipercolesterolêmicos. MÉTODOS: Coelhos foram separados em grupos controle (GC), hipercolesterolêmico (GH) e berinjela (GB), (n=10). Os animais do GC foram alimentados com ração normal, o GH e o GB com ração acrescentada de colesterol (0,5%) e gordura de babaçu (10%) durante 30 dias. Ao GB acrescentou-se suco de berinjela, nos últimos 15 dias do experimento. Os lípides plasmáticos foram medidos através de kits enzimáticos, a peroxidação lipídica pela dosagem do malondialdeído (MDA) e o relaxamento dependente do endotélio, por curvas de concentração efeito pela acetilcolina e nitroprussiato. RESULTADOS: O peso dos animais foi menor no GB em relação ao GC e GH (p<0,05). O colesterol total plasmático, as LDL e os triglicérides que se elevaram no GH, reduziram-se em 19%, 29% e 38%, respectivamente no GB (p<0,05). O colesterol tecidual foi menor no GB (50%) em relação ao GH (p<0,05). Nos animais do GB ocorreu redução significante do teor de MDA nas LDL nativas (56%) e oxidadas (22%), assim como na parede arterial (30%) (p<0,05). O relaxamento máximo dependente do endotélio, , elevou-se significantemente em 28% no GB em relação ao GH (p<0,05). CONCLUSÃO: O suco de berinjela administrado a coelhos hipercolesterolêmicos reduziu significantemente o peso corpóreo, o colesterol total, as LDL plasmáticas, os triglicérides, o colesterol tecidual, a peroxidação lipídica das LDL nativas, oxidadas e da parede arterial, assim como aumentou o relaxamento dependente do endotélio.