903 resultados para Isolamento térmico


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Dissertação para obtenção do Grau de Mestre em Engenharia Civil – Perfil de Construção

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Nos dias de hoje, cada vez mais, se nota uma preocupação crescente na generalidade da população no que diz respeito à proteção do meio ambiente. Como tal, tem-se procurado soluções mais amigas do ambiente nas mais diversas áreas, com o intuito de diminuir as agressões ambientais provocadas pela industrialização/fabricação dos mais diversos produtos existentes. Sendo o sector da construção, um dos grandes responsáveis pelo aumento desses impactos ambientais tem vindo a procurar selecionar possíveis alternativas, desde o controlo da energia gasta no fabrico de diversos produtos de construção, como na procura de materiais mais amigos do ambiente. A cortiça surge em resposta a estas necessidades, evidenciando-se na indústria da construção, por ser uma matéria-prima natural, amiga do ambiente podendo ainda ser reciclável e reutilizável, com propriedades de grande versatilidade, durabilidade, conservação, entre outras. A presente dissertação pretende abordar a matéria-prima cortiça, desde o seu descortiçamento à sua aplicação no sector da construção, sendo um material capaz de ser aplicado como revestimento e/ou isolamento de edifícios, mais concretamente no isolamento térmico, acústico e antivibrático. Da metodologia utilizada neste estudo, constaram análises comprativas de produtos de cortiça com outros materiais concorrentes (de revestimento e/ou isolamento). Na sua análise, tentou-se obter uma melhor perceção/compreensão das mais-valias que a cortiça nos pode revelar em relação a outros materiais do sector da construção e o seu impacto no meio ambiente.

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A pultrusão é uma técnica já sobejamente conhecida de produção de perfis de secção constante, tais como barras, cantoneiras, perfis estruturais ou tubos, em materiais compósitos de matriz polimérica. A necessidade de, em determinadas aplicações, utilizar perfis que proporcionem melhor isolamento térmico, melhor isolamento acústico ou possuam um momento de inércia ligeiramente superior, sem que o peso próprio seja significativamente afectado, levou à produção de perfis pultrudidos híbridos, com núcleos baseados em pré-formas ou na alimentação contínua de resíduos. Realizados os protótipos seguindo as metodologias acima descritas, urge verificar se as propriedades dos perfis híbridos correspondem às expectativas inicialmente neles depositadas, através de testes destrutivos e não-destrutivos. Assim, foram realizados testes à tracção, à compressão e à flexão, no intuito de verificar os ganhos conseguidos e poder analisar o valor-acrescentado trazido por estes novos perfis em termos estruturais. Estes valores, depois de devidamente validados, permitirão a sua inserção em bases de dados agregadas a programas de cálculo estrutural, que efectuam de forma automática o dimensionamento de estruturas baseadas em perfis desta natureza. Complementarmente, foram realizados testes de isolamento térmico e acústico, com vista a quantificar a melhoria conseguida nestas propriedades, extremamente importantes em determinados tipos de aplicações ligadas à construção civil e obras públicas.

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Dissertação para obtenção do Grau de Mestre em Engenharia Civil – Perfil Construção

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O calor, no ambiente onde o ser humano vive ou trabalha, atribui-se a: -fatores físicos: relação entre temperatura, radiação, umidade e movimento do ar; fatores humanos: o ser humano atua como fonte de energia através de seu metabolismo e atividade física. o calor caracterizado por um determinado meio ambiente é o resultado da atuação de diferentes variáveis, tais como: sistema de construção, situação geográfica do ambiente físico, climatização artificial, etc.; idade, sexo, capacidade física, estado de aclimatação, vestuário, tipo, carga e regime de trabalho, etc. A partir do momento em que o indivíduo for introduzido num determinado meio ambiente térmico, todos estes fatores vão influenciar a transmissão de calor entre ele e o ambiente. Na pretensão de haver equilíbrio térmico no meio ambiente quente, constata-se a necessidade de providenciar medidas de proteção a nível do sujeito e do ambiente, para que prevaleçam situações ambientais "confortáveis", ou pelo menos, "tolerantes". Desse modo, através da: definição das condições térmicas tolerantes e de conforto, parte-se para projetar meios ambientes de trabalho, que tornem praticáveis um isolamento térmico do calor exterior, assim como a perda de calor de dentro para fora. Atuando-se sobre variáveis individuais e ambientais estaremos incidindo diretamente sobre os meios de transmissão, procurando-se diminuir a quantidade de calor que o organismo produz e/ou recebe e aumentar a possibilidade de dissipá-lo.

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Este trabalho tem por objectivo desenvolver eimplementar metodologias relacionadas com a temática de térmica de edifícos, no sentido dequantificar e optimizar as perdas e ganhos decalor e os consumos de energia associados aosedifícios. Com base na teoria de transferência de calor e massa, foram construídos programas de cálculo numérico para simular, em regime estacionário (permanente) e não estacionário (transiente), os fluxos de calor e a distribuição das temperaturas em diferentes tipos de paredes comummente encontradas em Portugal e em particular na Região Autónoma da Madeira. Estes resultados permitiram analisar a eficácia dos diversos tipos de paredes estudadas bem como o risco de condensação em algumas dessas situações. Para além deste estudo houve a preocupação de desenvolver uma metodologia de análise económica relacionada com a espessura de isolamento a aplicar. Foram igualmente estudadas algumas medições simples de conservação de energia cuja implementação em edifícios será facilmente ustificada atendendo aos baixos períodos de retorno de investimento geralmente associados a estas medidas. Como resultado deste trabalho foi desenvolvida uma ferramenta de cálculo cuja aplicaçãovai permitir não só estimar o risco decondensação mas igualmente o campo de temperaturas no interior das paredes ao longo do período de tempo considerado, visando a optimização de soluções de isolamento térmico versus condições de conforto recomendadas.

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A importância dos vãos envidraçados deve-se não só à sua contribuição para o isolamento térmico da habitação, mas também, por permitirem obter uma otimização dos ganhos solares, maximizando-os no inverno e minimizando-os no verão, contribuindo deste modo para a melhoria das condições de conforto e diminuição dos consumos energéticos. Sendo os vãos envidraçados elementos bastante favoráveis às trocas de calor, tornase necessário conhecer de que forma as diferentes soluções envidraçadas existentes no mercado, e proteções solares/oclusão noturna, podem influenciar o desempenho térmico dos edifícios. Com a crescente tendência de utilização do vidro na construção torna-se ainda mais importante uma escolha criteriosa das soluções para os vãos envidraçados. Este trabalho contribui para a avaliação da influência do tipo de envidraçados e da inércia térmica dos materiais, na prevenção de situações de sobreaquecimento no verão, com base no RCCTE (Regulamento das Características de Comportamento Térmico dos Edifícios), bem como para identificar a melhor relação custo/benefício das soluções. Como caso de estudo, considerou-se uma moradia unifamiliar, simulando diferentes soluções envidraçadas e analisado o seu impacto na moradia. A metodologia consistiu numa análise paramétrica e económica, sustentada no RCCTE e direcionada para a influência dos envidraçados na prevenção do sobreaquecimento no verão. Para a análise da viabilidade económica das soluções propostas, recorreu-se à metodologia definida pela ADENE (Agência para a Energia), pelo cálculo dos custos de exploração e períodos de retorno do investimento, e também o método VAL (Valor Atual Líquido) que pressupõe uma análise do investimento ao longo do tempo. Com este trabalho, conclui-se que um projeto cuidado dos vãos envidraçados e uma seleção criteriosa dos elementos construtivos, aliados a uma análise inerente ao custo/benefício, contribui significativamente para a escolha adequada das soluções construtivas a adotar, de forma a privilegiar o conforto térmico, o desempenho energético dos edifícios e a conservação de energia.

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Standardization and sustainability: these two apparently antagonistic words find the challenge of uniting in a flexible architectonic proposal. This was the idea that motivated the proposal of this assignment, whose appearing is bound up with the necessity of thinking about standardized spaces that attend on functional criterias and environmental sustainability, in reply to an existing real demand. The assignment consists of an architectonic proposal for a flexible standard of a Basic Unit of Health for the bioclimatic zone 7 of RN (UBS RN-7), with emphasis in the environmental sustainability. The project contemplates innumerable involved variables, such as: obedience to the current law of the Health Ministry for the UBSs; formal/aesthetic aspects; criterias of expansiveness of the UBS I for the UBS II; relative aspects to the constructive rationality and, mainly, sustainability aspects. With the intention to unite the variables and, also, glimpsing a proposal that could reach a good functional performance, aesthetic, of environment comfort and energetic efficiency, it was also necessary to consider concepts about the flexibility of the envelopment. The elaboration of the architecture first draft was based on bibliographical research, conceptual studies and references, elaboration of the architectonic program and the draft development for the UBS port I and the UBS port II. To the end, an implantation data sheet for the project is proposed for the UBS standard project, where strategies of thermal isolation, shadowing and thermal inertia are adopted and combined to three possible types of lot, resulting in 24 possibilities of implantation

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Several problems related to the loss of hydraulic seal in oilwells, causing gas migration and/or contamination of the production zone by water, have been reported. The loss of the hydraulic seal is a consequence of cracks which can be occasioned either by the invasion of gas during the wait on cement or by the expansion of the casing causing the fracture of the cement sheath. In case of the pressure of the formation is higher than the pressure in the annulus, gas can migrate into the slurry and form microannulus, which are channels where gas migrates after the cement is set. Cracks can be also occasioned by the fracture of the cement sheath when it does not withstand the thermal and dynamic loads. In reservoirs where the oil is heavy, steam water injection operation is required in order to get the oil flowing. This operation increases the temperature of the casing, and then it expands and causes the fracture of the cement sheath in the annulus. When the failures on the cement are detected, remedial cementing is required, which raise costs caused by the interventions. Once the use of cement in the construction civil sector is older than its use in the petroleum sector, it is common to bring technologies and solutions from the civil construction and apply them on the petroleum area. In this context, vermiculite, a mineral-clay widely encountered in Brazil, has been used, on its exfoliated form, in the civil construction, especially on the manufacture of lights and fireproof concretes with excellent thermal and acoustical properties. It has already been reported in scientific journals, studies of the addition of exfoliated vermiculite in Portland cements revealing good properties related to oilwell cementing operations. Thus, this study aimed to study the rheological behavior, thickening time, stability and compressive strength of the slurries made of Portland cement and exfoliated vermiculite in 5 different compositions, at room temperature and heated. The results showed that the compressive strength decreased with the addition of exfoliated vermiculite, however the values are still allowed for oiwell cementing operations. The thickening time of the slurry with no exfoliated vermiculite was 120 min and the thickening time of the slurry with 12 % of exfoliated vermiculite was 98 min. The stability and the rheological behavior of the slurries revealed that the exfoliated vermiculite absorbed water and therefore increased the viscosity of the slurries, even though increasing the factor cement-water. The stability experiment carried out at 133 ºF showed that, there was neither sedimentation nor reduction of the volume of the cement for the slurry with 12 % of exfoliated vermiculite. Thus, the addition of exfoliated vermiculite accelerates the set time of the cement and gives it a small shrinkage during the wait on cement, which are important to prevent gas migration

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The northeastern region of Brazil has a large number of wells producing oil using a method of secondary recovery steam injection, since the oil produced in this region is essentially viscous. This recovery method puts the cement / coating on thermal cycling, due to the difference in coefficient of thermal expansion between cement and metal coating causes the appearance of cracks at this interface, allowing the passage of the annular fluid, which is associated with serious risk socioeconomic and environmental. In view of these cracks, a correction operation is required, resulting in more costs and temporary halt of production of the well. Alternatively, the oil industry has developed technology for adding new materials in cement pastes, oil well, providing high ductility and low density in order to withstand the thermo-mechanical loads generated by the injection of water vapor. In this context, vermiculite, a clay mineral found in abundance in Brazil has been applied in its expanded form in the construction industry for the manufacture of lightweight concrete with excellent insulation and noise due to its high melting point and the presence of air in their layers lamellar. Therefore, the vermiculite is used for the purpose of providing low-density cement paste and withstand high temperatures caused by steam injection. Thus, the present study compared the default folder containing cement and water with the folders with 6%, 8% and 10% vermiculite micron conducting tests of free water, rheology and compressive strength where it obtained the concentration of 8 % with the best results. Subsequently, the selected concentration, was compared with the results recommended by the API standard tests of filtered and stability. And finally, analyzed the results from tests of specific gravity and time of thickening. Before the study we were able to make a folder with a low density that can be used in cementing oil well in order to withstand the thermo-mechanical loads generated by steam injection

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The Potiguar basin has large fields of viscous oil where the used method for recovering is based on vapor injection; this operation is carried out by injecting vapor in the oilwell directly, without the protection of a revetment through thermal insulation, what causes its dilation and, consequently, cracks in the cement placed on the annular, and lost of hydraulic insulation; this crack is occasioned by the phenomenon of retrogression of the compressive resistance due to the conversion of the hydrated calcium silicate in phases calcium-rich, caused by the high temperatures in the wells, subjected to thermal recuperation. This work has evaluated the application of composite pastes with addition of residue of biomass of ground sugar-cane bagasse as anti-retrogression mineral admixture for cementation of oil-wells subjected to thermal recuperation. The addition of the mineral residue was carried out considering a relative amount of 10, 20, 30, 40 and 59% in relation to cement mass, trying to improve the microstructure of the paste, still being developed a reference paste only with cement and a paste with addition of 40% of silica flour - renowned material in the oil industry as anti-retrogression additive. Pozzolanic activity of the ash was evaluated through XRD, TG/DTG, as the resistance to compression, and it was also determined the physical and mechanical behavior of the pastes when submitted to cure at low temperatures (22 and 38º C); besides it was evaluated the behavior of the pastes when submitted to two cycles of cure at high temperature (280ºC) and pressure (7 MPa). It was verified that the ash of the sugar-cane biomass presents pozzolanic reaction and has great efficiency in decrease the permeability of the paste by filler effect, as well as that addition of ash in a relative amount of 10, 20 e 30% increases cured compressive resistance at low temperatures. It was also showed that the ash in a relative amount of 40% and 59% has very significant efficiency as anti-retrogression additive, since it prevents the decrease of compressive resistance and forms hydrated calcium silicate type xenotlita and tobermorita which have more resistance and stability in high temperatures

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Sisal is a renewable agricultural resource adapted to the hostile climatic and soil conditions particularly encountered in the semi-arid areas of the state of Rio Grande do Norte. Consequently, sisal has played a strategic role in the economy of the region, as one of few options of income available in the semi-arid. Find new options and adding value to products manufactured from sisal are goals that contribute not only to the scientific and technological development of the Northeastern region, but also to the increase of the family income for people that live in the semi-arid areas where sisal is grown. Lignocellulosic fibers are extracted from sisal and commonly used to produce both handcrafted and industrial goods including ropes, mats and carpets. Alternatively, addedvalue products can be made using sisal to produce alumina fibers (Al2O3) by biotemplating, which consists in the reproduction of the natural fiber-like structure of the starting material. The objective of this study was to evaluate the conditions necessary to convert sisal into alumina fibers by biotemplating. Alumina fibers were obtaining after pretreating sisal fibers and infiltrating them with a Al2Cl6 saturated solution, alumina sol from aluminum isopropoxide or aluminum gas. Heat-treating temperatures varied from 1200 ºC to 1650 °C. The resulting fibers were then characterized by X-ray diffraction and scanning electronic microscopy. Fibers obtained by liquid infiltration revealed conversion only of the surface of the fiber into α-Al2O3, which yielded limited resistance to handling. Gas infiltration resulted in stronger fibers with better reproduction of the inner structure of the original fiber. All converted fibers consisted of 100% α-Al2O3 suggesting a wide range of technological applications especially those that require thermal isolation

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They are in this study the experimental results of the analysis of thermal performance of composite material made from a plant matrix of polyurethane derived from castor oil of kernel of mamona (COF) and loading of clay-mineral called vermiculite expanded. Bodies of evidence in the proportions in weight of 10%, 15% and 20% were made to determine the thermal properties: conductivity (k), diffusivity (ά) and heat capacity (C), for purposes of comparison, the measurements were also performed the properties of polyurethane of castor without charge and also the oil polyurethane (PU), both already used in thermal insulation. Plates of 0.25 meters of material analyzed were manufactured for use as insulation material in a chamber performance thermal coverage. Thermocouples were distributed on the surface of the cover, and inside the material inside the test chamber and this in turn was subjected to artificial heating, consisting of a bank of incandescent lamps of 3000 w. The results obtained with the composite materials were compared with data from similar tests conducted with the camera alone with: (a) of oil PU, (b) of COF (c) glass wool, (d ) of rock wool. The heat resistance tests were performed with these composites, obtaining temperature limits for use in the range of 100 º C to 130 º C. Based on the analysis of the results of performance and thermal properties, it was possible to conclude that the COF composites with load of expanded vermiculite present behavior very close to those exhibited by commercial insulation material

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The search for sustainable technologies that can contribute to reduce energy consumption is a great challenge in the field of insulation materials. In this context, composites manufactured from vegetal sources are an alternative technology. The principal objectives of this work are the development and characterization of a composite composed by the rigid polyurethane foam derived from castor oil (commercially available as RESPAN D40) and sisal fibers. The manufacture of the composite was done with expansion controlled inside a closed mold. The sisal fibers where used in the form of needlepunched nonwoven with a mean density of 1150 g/m2 and 1350 g/m2. The composite characterization was performed through the following tests: thermal conductivity, thermal behavior, thermo gravimetric analysis (TG/DTG), mechanical strength in compression and flexural, apparent density, water absorption in percentile, and the samples morphology was analyzed in a MEV. The density and humidity percentage of the sisal fiber were also determined. The thermal conductivity of the composites was higher than the pure polyurethane foam, the addition of nonwoven sisal fibers will become in a higher level of compact foam, reducing empty spaces (cells) of polyurethane, inducing an increase in k value. The apparent density of the composites was higher than pure polyurethane foam. In the results of water absorption tests, was seen a higher absorption percent of the composites, what is related to the presence of sisal fibers which are hygroscopic. From TG/DTG results, with the addition of sisal fibers reduced the strength to thermal degradation of the composites, a higher loss of mass was observed in the temperature band between 200 and 340 °C, related to urethane bonds decomposition and cellulose degradation and its derivatives. About mechanical behavior in compression and flexural, composites presented a better mechanical behavior than the rigid polyurethane foam. An increase in the amount of sisal fibers induces a higher rigidity of the composites. At the thermal behavior tests, the composites were more mechanically and thermally resistant than some materials commonly used for thermal insulation, they present the same or better results. The density of nonwoven sisal fiber had influence over the insulation grade; this means that, an increaser in sisal fiber density helped to retain the heat

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Ceramics with porous cellular structure, called ceramic foams, have a potential use in several applications, such as: thermal insulation, catalyst supports, filters, and others. Among these techniques to obtain porous ceramics the replication method is an important process. This method consists of impregnation of a sponge (usually polymer) with ceramic slurry, followed by a heat treatment, which will happen the decomposition of organic material and sintering the ceramic material, resulting in a ceramic structure which is a replica of impregnated sponge. Knowledge of the mechanical properties of these ceramics is important for these materials can be used commercially. Gibson and Ashby developed a mathematical model to describe the mechanical behavior of cellular solids. This model wasn´t for describing the ceramics behavior produced by the replica method, because it doesn´t consider the defects from this type of processing. In this study were researched mechanical behavior of porous alumina ceramics obtained by the replica method and proposed modifications to the model of Gibson and Ashby to accommodate this material. The polymer sponge used in processing was characterized by thermogravimetric analysis and scanning electron microscopy. The materials obtained after sintering were characterized by mechanical strength tests on 4-point bending and compression, density and porosity and by scanning electron microscopy. From these results it was evaluated the mechanical strength behavior compared to Gibson and Ashby model for solid cellular structure and was proposed a correction of this model through a factor related to struts integrity degree, which consider fissures present in the structure of these materials besides defects geometry within the struts