33 resultados para Stability objective


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The Container Loading Problem (CLP) literature has traditionally evaluated the dynamic stability of cargo by applying two metrics to box arrangements: the mean number of boxes supporting the items excluding those placed directly on the floor (M1) and the percentage of boxes with insufficient lateral support (M2). However, these metrics, that aim to be proxies for cargo stability during transportation, fail to translate real-world cargo conditions of dynamic stability. In this paper two new performance indicators are proposed to evaluate the dynamic stability of cargo arrangements: the number of fallen boxes (NFB) and the number of boxes within the Damage Boundary Curve fragility test (NB_DBC). Using 1500 solutions for well-known problem instances found in the literature, these new performance indicators are evaluated using a physics simulation tool (StableCargo), replacing the real-world transportation by a truck with a simulation of the dynamic behaviour of container loading arrangements. Two new dynamic stability metrics that can be integrated within any container loading algorithm are also proposed. The metrics are analytical models of the proposed stability performance indicators, computed by multiple linear regression. Pearson’s r correlation coefficient was used as an evaluation parameter for the performance of the models. The extensive computational results show that the proposed metrics are better proxies for dynamic stability in the CLP than the previous widely used metrics.

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Context: Inclusion of antioxidants in topical formulations can contribute to minimize oxidative stress in the skin, which has been associated with photoaging, several dermatosis and cancer. Objective: A Castanea sativa leaf extract with established antioxidant activity was incorporated into a semisolid surfactant-free formulation. The objective of this study was to perform a comprehensive characterization of this formulation. Materials and methods: Physical, microbiological and functional stability were evaluated during 6 months storage at 20 °C and 40 °C. Microstructure elucidation (cryo-SEM), in vitro release and in vivo moisturizing effect (Corneometer® CM 825) were also assessed. Results and discussion: Minor changes were observed in the textural and rheological properties of the formulation when stored at 20 °C for 6 months and the antioxidant activity of the plant extract remained constant throughout the storage period. Microbiological quality was confirmed at the end of the study. Under accelerated conditions, higher modifications of the evaluated parameters were observed. Cryo-SEM analysis revealed the presence of oil droplets dispersed into a gelified external phase. The release rate of the antioxidant compounds (610 ± 70 µgh−0.5) followed Higuchi model. A significant in vivo moisturizing effect was demonstrated, that lasted at least 4 h after product’s application. Conclusion: The physical, functional and microbiological stability of the antioxidant formulation was established. Specific storage conditions should be recommended considering the influence of temperature on the stability. A skin hydration effect and good skin tolerance were also found which suggests that this preparation can be useful in the prevention or treatment of oxidative stress-mediated dysfunctions.

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O presente documento corresponde à realização de um projeto de estruturas em betão armado e estrutura metálica. A escolha deste tema teve como propósito aplicar os conhecimentos adquiridos ao longo do percurso académico, sobretudo em disciplinas do ramo de estruturas. O trabalho desenvolvido é um Projeto de Estabilidade de Betão Armado e Estrutura Metálica de um Internato Masculino para Padres em Onameva, Cunene – Angola. A elaboração deste projeto decorre da realização de um estágio formal de 8 meses na empresa CALCULUS, Miguel Barros – Engenharia, LDA, com o objetivo principal de reunir os requisitos necessários à admissão na Ordem dos Engenheiros. No contexto laboral de um gabinete de projetos de engenharia civil, foi feita a integração de forma gradual e sustentada das competências adquiridas ao longo da formação académica e vivenciadas situações reais de trabalho profissional. De entre as atividades desenvolvidas no estágio, foi escolhido o projeto de estabilidade acima referido pela oportunidade de realizar todas as etapas do seu desenvolvimento, desde a análise da arquitetura até à elaboração das peças escritas e desenhadas, dando assim resposta às exigências necessárias para a conclusão do Mestrado em Engenharia Civil, no ramo de Estruturas, pelo Instituto Superior de Engenharia do Porto.