1000 resultados para Daño térmico
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Es frecuente que las estructuras, una vez realizadas, muestren diferencias, respecto de su concepción original que, en ocasiones, pueden hacer necesaria una intervención posterior con el objetivo de corregir su comportamiento estructural. En otras ocasiones estas actuaciones se hacen necesarias como consecuencias de deterioros sufridos durante la vida útil de la estructura (daño estructural) o como consecuencia de cambios en el propio uso de la estructura. En cualquier caso, tanto en las situaciones descritas, como en muchas otras, la estructura ha de someterse a un proceso de monitorización que nos permita obtener información experimental de ciertos parámetros estructurales con los que afinar los modelos numéricos que de ellas se realizan. Esta jornada se ha estructurado en cuatro conferencias en las que investigadores de las universidades de Sevilla y Córdoba nos darán una visión divulgativa del problema, nos acercarán a alguna de sus técnicas y nos mostrarán algún caso práctico de gran interés. En la tercera conferencia, el profesor de la Universidad de Sevilla Dr. D. Víctor Jesús Compán Cardiel, Arquitecto, mostró cómo la técnica de monitorización conocida pos sus siglas en inglés OMA puede ser aplicada a estructuras antiguas, que forman parte del patrimonio, para aprender de estas estructuras y, llegado el caso, detectar daño en las mismas y poder tomar las medidas necesarias para mejorar su capacidad portante y, con ello, incrementar el tiempo por el que podremos disfrutar de estos singulares edificios.
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Bogotá (Colombia) : Universidad de La Salle. Facultad de Ingeniería. Programa de Ingeniería Ambiental y Sanitaria
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Tese (Doutorado em Tecnologia Nuclear)
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Titanium is a biomaterial widely employed in biomedical applications (implants, prostheses, valves, stents). Several heat treatments are usually used in order to obtain physical properties required to different applications. This work studied the influence of the heat treatment on microstructure of commercial pure titanium, and their consequences in growth and proliferation of MC3T3-E1 cells. Discs of titanium were treated in different temperatures, and characterized by optical microscopy, image analysis, wettabillity, roughness, hardness and X-ray diffraction. After the heat treatment, significant modifications in these properties were observed. Pattern images of titanium, before and after the cell culture, were compared by overlapping to analyze the influence of microstructure in microstructure and preferences guidance cells. However, in general, titanium discs that showed a higher residual strength also presented an increase of cells numbers on surface
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La parálisis cerebral (PC) se puede presentar como consecuencia de una hipoxia perinatal severa, la cual deja una daño cerebral permanente en 50% de los recién nacidos prematuros que sobreviven este evento. La terapia celular es una opción terapéutica potencial para la PC, la cual se cree que funciona a través diversos mecanismos, los cuales incluyen la inmunomodulación a través de citocinas (C) y de la secreción de factores de crecimiento.Se incluyeron 18 pacientes con PC con el fin de evaluar la seguridad de la aplicación intratecal (IT) e intravenosa (IV) de células nucleadas totales (CNT) derivadas de médula ósea (MO) autóloga después de la estimulación con factor estimulador de colonias de granulocitos (FEC-G). Se evaluó clínicamente las áreas motora gruesa y fina, cognitiva, de comunicación, personal-social y adaptativa por medio de una prueba validada llamada Inventario del Desarrollo de Battelle (IDB). Se realizaron tres evaluaciones en cada paciente, la primera previa al procedimiento, y después a los 30 y a los 180 días. También se llevaron a cabo estudios de resonancia magnética nuclear (RMN) antes del procedimiento y uno de control 6 meses después del tratamiento.
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Population growth experienced in major cities, allied to society s need of infra-structure, especially ones related to habitational demands, increases the consumption of construction materials. As a consequence, consumption of natural resources itself. Thus, due to this process, concrete is one of the most produced materials in civil construction. This is also due to the great diversity of its application, easiness in its execution and adequate mechanical performance, as well as low production costs. Following the same tendencies in construction development, the ceramic industry has intensified the production of porcelain ceramic tiles and floors. These are achieved by a fine finishing and receive polishing at the end of the fabrication process. This work researched the use of porcelain residues in polishing for the production of concrete. All of which; due to economical and environmental issues. This process aims to prove adequate destiny for this type of residue, due to environmental issues, incorporating it to the concrete itself; all of which provides economy in consumption of the materials that constitute concrete. Thus, the main characteristics of concrete were investigated through the inclusion of different concentration of the porcelain residue as additional trait element. The residue rates incorporated to the trait varied from 10% to 50% in relation to the cement mass, in the traits with plastic additives and without plastic additives. It is observed that the inclusion of porcelain residue produced a meaningful alteration in the consistency of fresh concrete. This residue has a fine granulometry and it considerably absorbed the water used in the concrete spreading, influencing the way this material is dealt with. Thus, the value of cement striking decreases with the increase of residues present in trait. The maximal incorporation of the residue was of 50%, massively, for the same factor water/initial cement. The use of residues in concrete results in an 40% increase in the compression resistance. It is also proportional to residue concentration of porcelain in the trait. The microstructure was also favored once porosity and concrete absorption decreases with the use of this residue. The parameters demonstrate the quality and durability of the concrete produced with this residue. The use of porcelain residue in concrete composition has not produced meaningful thermal behavior changes. Thermal conductivity, heat capacity and thermal diffusivity have been maintained basically constant
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La investigación abarca la evaluación de métodos para cálculos de elevaciones de temperatura y las respectivas pérdidas de vida útil del aislamiento en transformadores, de acuerdo a estándares internacionales. Las cargas no lineales que circulan por los bobinados de los transformadores de potencia, armónicos, producen efectos térmicos que pueden exceder la capacidad de temperatura que puede soportar el medio aislante, esto acorta la vida útil de los equipos y debe ser conocida
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Na confeção de refeições em cozinhas profissionais, há uma grande geração de calor, substâncias químicas, fumo, vapor de água e odores que vão afetar o ambiente térmico e a qualidade do ar, pondo em causa as condições de trabalho dos seus profissionais. Com o presente trabalho pretendeu-se estudar as condições térmicas a que os trabalhadores estão sujeitos quando confecionam os alimentos. Neste estudo, foram efetuadas medições em diferentes locais em várias cozinhas. Os dados recolhidos foram comparados com a tabela de valores climáticos recomendáveis com base nos dados da ACT. Verificou-se excedências aos valores considerados aceitáveis para as atividades realizadas. Complementarmente, foram inquiridos os trabalhadores, de forma a obter uma avaliação subjetiva e poder comparar com os resultados das medições.
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Nowadays, evaluation methods to measure thermal performance of buildings have been developed in order to improve thermal comfort in buildings and reduce the use of energy with active cooling and heating systems. However, in developed countries, the criteria used in rating systems to asses the thermal and energy performance of buildings have demonstrated some limitations when applied to naturally ventilated building in tropical climates. The present research has as its main objective to propose a method to evaluate the thermal performance of low-rise residential buildings in warm humid climates, through computational simulation. The method was developed in order to conceive a suitable rating system for the athermal performance assessment of such buildings using as criteria the indoor air temperature and a thermal comfort adaptive model. The research made use of the software VisualDOE 4.1 in two simulations runs of a base case modeled for two basic types of occupancies: living room and bedroom. In the first simulation run, sensitive analyses were made to identify the variables with the higher impact over the cases´ thermal performance. Besides that, the results also allowed the formulation of design recommendations to warm humid climates toward an improvement on the thermal performance of residential building in similar situations. The results of the second simulation run was used to identify the named Thermal Performance Spectrum (TPS) of both occupancies types, which reflect the variations on the thermal performance considering the local climate, building typology, chosen construction material and studied occupancies. This analysis generates an index named IDTR Thermal Performance Resultant Index, which was configured as a thermal performance rating system. It correlates the thermal performance with the number of hours that the indoor air temperature was on each of the six thermal comfort bands pre-defined that received weights to measure the discomfort intensity. The use of this rating system showed to be appropriated when used in one of the simulated cases, presenting advantages in relation to other evaluation methods and becoming a tool for the understanding of building thermal behavior
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Insets: Zhaowa xiang tu -- Nan Yang Qun Dao di xing tu -- Malai Ban Dao xiang tu.
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The present research concerns about outdoor s thermal comfort conditions in hot-humid climate cities, understanding that life quality is a result of the urban object s type built for the human being in an environment with specific climate and morphological characteristics. It is presented as object of study the correlation between the neighborhood Renascença II s microclimate in São Luis /MA-Brazil, hot-humid climate city, and its urban morphological changes. As well as the thermal comfort s satisfaction level of its outdoor users. The research has as general goal to diagnosis the way these transformations caused by the urbanization influence the Renascença II s microclimate, identifying critical spots of the studied area, in order to contribute with land use recommendations based on bioclimatic architecture concepts and supply bases to urban design decisions adequate to the São Luis climate. It is presented as theoretical bases the urban climate, its concepts and elements. After that, the thermal comfort conditioners and its prediction models of thermal comfort sensation in outdoor are presented. The predictive models are presented along with bioclimatic assessment methods. Finally the use of bioclimatic assessment as an effective tool to identify places that need changes or preservation in order to seek environment quality. The applied methodology was based on the studies of Katzschner (1997), complemented by Oliveira s (1988) and Bustos Romero s (2001) studies that suggest an analysis and evaluation of maps of topography, buildings floors, land use, green areas and land covering, in order to overlap their characteristics and identify climate variable s measurements points; then a quantitative analysis of the climate variables (air temperature and humidity, wind speed and direction) of the chosen points takes place. It was perceived that Renaissance II has no permanence areas as squares or parks, its outdoor has little vegetation and presets high land impermeability and built density levels. The majority of the people interviewed said that was comfortable in a range of air temperature between 27,28ºC and 30,71ºC. The elaboration of a neighborhood master plan is important, which defines strategies for improvement of the life quality of its inhabitants
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The titanium and titanium alloys are widely used as biomaterial in biomedical device and so research have been developed aiming to improve and/or better to understand interaction biomaterial/biological environment. The process for manufacturing of this titanium implants usually involves a series of thermal and mechanical processes which have consequence on the final product. The heat treatments are usually used to obtain different properties for each application. In order to understand the influence of these treatments on the biological response of the surface, it was done, in this work, different heat treatments in titanium and analyzed their influence on the morphology, adhesion and proliferation of the pre-osteoblastic cells (MC3T3-E1). For such heat-treated titanium disks were characterized by optical microscopy, contact angle, surface energy, roughness, microhardness, X-ray diffraction and scanning through the techniques (BSE, EDS and EBSD). For the analysis of biological response were tested by MTT proliferation, adhesion by crystal violet and β1 integrin expression by flow cytometry. It was found that the presence of a microstructure very orderly, defined by a chemical attack, cells tend to stretch in the same direction of orientation of the material microstructure. When this order does not happen, the most important factor influencing cell proliferation is the residual stress, indicated by the hardness of the material. This way the disks with the highest level state of residual stress also showed increased cell proliferation
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Thin commercial aluminum electrolytic and passed through reactions was obtained with anodic alumina membranes nanopores. These materials have applications in areas recognized electronic, biomedical, chemical and biological weapons, especially in obtaining nanostructures using these membranes as a substrate or template for processing nanowires, nanodots and nanofibers for applications noble. Previous studies showed that the membranes that have undergone heat treatment temperature to 1300° C underwent changes in morphology, crystal structure and optical properties. This aim, this thesis, a study of the heat treatment of porous anodic alumina membranes, in order to obtain and to characterize the behavior changes structures during the crystallization process of the membranes, at temperatures ranging between 300 and 1700° C. It was therefore necessary to mount a system formed by a tubular furnace resistive alumina tube and controlled environment, applying flux with special blend of Ag-87% and 13% N2, in which argon had the role of carrying out the oxygen nitrogen system and induce the closing of the pores during the densification of the membrane. The duration of heat treatment ranged from 60 to 15 minutes, at temperatures from 300 to 1700° C respectively. With the heat treatment occurred: a drastic reduction of porosity, grain growth and increased translucency of the membrane. For the characterization of the membranes were analyzed properties: Physical - thermogravimetric, X-ray diffraction, BET surface area; morphological - SEM, EDS through compositional and, optical absorbance, and transmittance in the UV-VIS, and FTIR. The results using the SEM showed that crystallization has occurred, densification and significant changes in membrane structure, as well as obtaining microtube, the BET analysis showed a decrease in specific surface area of the membranes has to 44.381 m2.g-1 to less than 1.8 m2.g-1 and in the analysis of transmittance and absorbance was found a value of 16.5% in the range of 800 nm, characteristic of the near infrared and FTIR have confirmed the molecular groups of the material. Thus, one can say that the membranes were mixed characteristics and properties which qualify for use in gas filtration system, as well as applications in the range of optical wavelength of the infra-red, and as a substrate of nanomaterials. This requires the continuation and deepening of additional study