12 resultados para performance-based engineering


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Structure and Infrastructure Engineering, 1-17

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Enterprise Risk Management (ERM) is gaining relevance among financial and non-financial companies but its benefits still are uncertain. This paper aims at investigating the relationship between ERM adoption and firm performance based on a sample of 1130 non-financial companies belonging to the STOXX® index. A content analysis of individual accounts is performed to distinguish adopters, and a regression analysis explores the effect of ERM adoption on firm performance, proxied by Tobin’s Q. The findings suggest that there is a statistical significant positive effect of ERM adoption on firm performance, meaning that firms are benefiting from the implementation of this process.

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The purpose of the paper is to investigate the effectiveness of supply chain management (SCM) practices to increase a company’s performance based on a cross-border and cross-sector analysis. The paper follows a comparative case study approach which was achieved by interviewing supply chain management experts of three companies operating in different industries and positions in a supply chain. Practices that were mutually applied by the firms and their contribution to achieve quality, economic, cost, and time advantages were analyzed. The paper revealed practices, which contribute the most to increase specific performance areas.

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RESUMO - Contexto Os indivíduos, tal como as instituições, não são imunes a incentivos. No entanto, enquanto os modelos de incentivos das instituições têm sido alvo de diferentes evoluções, o mesmo não se verificou ao nível dos profissionais. Esta situação não se figura compatível com a complexidade de gestão de recursos humanos, devendo ser obviada para potenciar o alinhamento entre os interesses institucionais e os dos próprios profissionais. Objectivos Estudar a atribuição de incentivos a profissionais de saúde no contexto de organizações com integração vertical de cuidados. Metodologia A metodologia adoptada compreendeu três fases. Numa primeira procedeu-se à revisão sistemática de literatura relativa à: (1) construção de modelos de incentivo a profissionais em diferentes sistemas de saúde e tipo de prestadores; e (2) identificação de medidas de custo-efectividade comprovada. Tendo por base esta evidência, a par de documentação oficial ao nível do modelo de financiamento das ULS, procedeu-se, numa segunda fase, à construção de um modelo de incentivo base com recurso à ferramenta Microsoft Excel. Por último, numa terceira etapa, procedeu-se à adaptação do modelo base construído na etapa transacta tendo por base informação obtida mediante a realização de um estudo retrospectivo in loco na ULS do Baixo Alentejo (ULSBA). Em adição, procedeu-se à estimativa do impacto na perspectiva da ULS e dos profissionais para o cenário base e diversas análises de sensibilidade. Resultados No que respeita à estrutura, o modelo base de incentivos a profissionais apresenta 44 indicadores, distribuídos por cinco dimensões de análise, sendo que 28 indicadores (63,6%) são de processo e 14 (31,8%) de resultado. Relativamente às dimensões em análise, verifica-se uma predominância de indicadores ao nível da dimensão eficiência e qualidade assistencial, totalizando 35 (i.e. 79,5% dos 44 indicadores). No que respeita ao destinatário, 14 indicadores (31,8%) apresentam uma visão holística da ULS, 17 (38,6%) encontram-se adstritos unicamente aos cuidados primários e os remanescentes 13 (29,5%) aos cuidados hospitalares. Cerca de 85% dos actuais incentivos da ULSBA decorre da unidade de pagamento salarial secundada pelo pagamento de suplementos (12%). Não obstante, o estudo retrospectivo da ULSBA confirmou o cenário expectável de ausência de um modelo de incentivo homogéneos e transversal à ULS, transparecendo importantes assimetrias entre diferentes unidades prestadoras e/ou profissionais de saúde. De forma relevante importa apontar a insuficiência de incentivos capitacionais (ao contrário do que sucede com o modelo de incentivo da própria ULSBA) ou adstritos a índices de desempenho. Tendo em consideração o modelo de incentivo concebido e adaptado à realidade da ULSBA, a par do plano de implementação, estima-se que o modelo de incentivos gere: (1) poupanças na perspectiva da ULS (entre 2,5% a 3,5% do orçamento global da ULSBA); e (2) um incremento de remuneração ao nível dos profissionais (entre 5% a 15% do salario base). O supracitado – aparentemente contraditório - decorre da aposta em medidas de custo-efectividade contrastada e um alinhamento entre o modelo proposto e o vigente para o próprio financiamento da unidade, apostando numa clara estratégia de ganhos mútuos. As análises de sensibilidade realizadas permitem conferir a solidez e robustez do modelo a significativas variações em parâmetros chave.

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Dissertação apresentada para a obtenção do Grau de Doutor em Informática pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia

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IEEE Electron Device Letters, VOL. 29, NO. 9,

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Thesis presented in partial fulfillment of the requirements for the degree of Doctor of Philosophy in the subject of Electrical and Computer Engineering

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Thesis submitted in Faculdade de Ciências e Tecnologia da Universidade Nova de Lisboa for the degree of Master in Materials Engineering

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Dissertation to obtain the degree of Master in Electrical and Computer Engineering

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A Work Project, presented as part of the requirements for the Award of a Masters Degree in Finance from the NOVA – School of Business and Economics and Maastricht University School of Business and Economics

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Clayish earth-based mortars can be considered eco-efficient products for indoor plastering since they can contribute to improve important aspects of building performance and sustainability. Apart from being products with low embodied energy when compared to other types of mortars used for interior plastering, mainly due to the use raw clay as natural binder, earth-based plasters may give a significant contribution for health and comfort of inhabitants. Due to high hygroscopicity of clay minerals, earth-based mortars present a high adsorption and desorption capacity, particularly when compared to other type of mortars for interior plastering. This capacity allows earth-based plasters to act as a moisture buffer, balancing the relative humidity of the indoor environment and, simultaneously, acting as a passive removal material, improving air quality. Therefore, earth-based plasters may also passively promote the energy efficiency of buildings, since they may contribute to decreasing the needs of mechanical ventilation and air conditioning. This study is part of an ongoing research regarding earth-based plasters and focuses on mortars specifically formulated with soils extracted from Portuguese ‘Barrocal’ region, in Algarve sedimentary basin. This region presents high potential for interior plastering due to regional geomorphology, that promote the occurrence of illitic soils characterized by a high adsorption capacity and low expansibility. More specifically, this study aims to assess how clayish earth and sand ratio of mortars formulation can influence the physical and mechanical properties of plasters. For this assessment four mortars were formulated with different volumetric proportions of clayish earth and siliceous sand. The results from the physical and mechanical characterization confirmed the significantly low linear shrinkage of all the four mortars, as well as their extraordinary adsorption-desorption capacity. These results presented a positive correlation with mortars´ clayish earth content and are consistent with the mineralogical analysis, that confirmed illite as the prevalent clay mineral in the clayish earth used for this study. Regarding mechanical resistance, although the promising results of the adhesion test, the flexural and compressive strength results suggest that the mechanical resistance of these mortars should be slightly improved. Considering the present results the mortars mechanical resistance improvement may be achieved through the formulation of mortars with higher clayish earth content, or alternatively, through the addition of natural fibers to mortars formulation, very common in this type of mortars. Both those options will be investigated in future research.

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The work presented in this thesis explores novel routes for the processing of bio-based polymers, developing a sustainable approach based on the use of alternative solvents such as supercritical carbon dioxide (scCO2), ionic liquids (ILs) and deep eutectic solvents (DES). The feasibility to produce polymeric foams via supercritical fluid (SCF) foaming, combined with these solvents was assessed, in order to replace conventional foaming techniques that use toxic and harmful solvents. A polymer processing methodology is presented, based on SCF foaming and using scCO2 as a foaming agent. The SCF foaming of different starch based polymeric blends was performed, namely starch/poly(lactic acid) (SPLA) and starch/poly(ε-caprolactone) (SPCL). The foaming process is based on the fact that CO2 molecules can dissolve in the polymer, changing their mechanical properties and after suitable depressurization, are able to create a foamed (porous) material. In these polymer blends, CO2 presents limited solubility and in order to enhance the foaming effect, two different imidazolium based ILs (IBILs) were combined with this process, by doping the blends with IL. The use of ILs proved useful and improved the foaming effect in these starch-based polymer blends. Infrared spectroscopy (FTIR-ATR) proved the existence of interactions between the polymer blend SPLA and ILs, which in turn diminish the forces that hold the polymeric structure. This is directly related with the ability of ILs to dissolve more CO2. This is also clear from the sorption experiments results, where the obtained apparent sorption coefficients in presence of IL are higher compared to the ones of the blend SPLA without IL. The doping of SPCL with ILs was also performed. The foaming of the blend was achieved and resulted in porous materials with conductivity values close to the ones of pure ILs. This can open doors to applications as self-supported conductive materials. A different type of solvents were also used in the previously presented processing method. If different applications of the bio-based polymers are envisaged, replacing ILs must be considered, especially due to the poor sustainability of some ILs and the fact that there is not a well-established toxicity profile. In this work natural DES – NADES – were the solvents of choice. They present some advantages relatively to ILs since they are easy to produce, cheaper, biodegradable and often biocompatible, mainly due to the fact that they are composed of primary metabolites such as sugars, carboxylic acids and amino-acids. NADES were prepared and their physicochemical properties were assessed, namely the thermal behavior, conductivity, density, viscosity and polarity. With this study, it became clear that these properties can vary with the composition of NADES, as well as with their initial water content. The use of NADES in the SCF foaming of SPCL, acting as foaming agent, was also performed and proved successful. The SPCL structure obtained after SCF foaming presented enhanced characteristics (such as porosity) when compared with the ones obtained using ILs as foaming enhancers. DES constituted by therapeutic compounds (THEDES) were also prepared. The combination of choline chloride-mandelic acid, and menthol-ibuprofen, resulted in THEDES with thermal behavior very distinct from the one of their components. The foaming of SPCL with THEDES was successful, and the impregnation of THEDES in SPCL matrices via SCF foaming was successful, and a controlled release system was obtained in the case of menthol-ibuprofen THEDES.