980 resultados para Características geométricas


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Este trabalho teve por objetivo estudar o efeito da imersão em solução de cloreto de cálcio nas características físicas do maracujá-doce (Passiflora alata Dryander), durante seu armazenamento. Os frutos, colhidos no estádio pré-climatérico, após desinfecção com o fungicida thiabendazol (1g/l) foram imersos, por duas horas, nas seguintes concentrações de cloreto de cálcio: testemunha (0% de CaCl2), 1% de CaCl2, 2% de CaCl2, 3% de CaCl2 e 4% de CaCl2. Após os tratamentos, todos os frutos foram armazenados sob condições de refrigeração (9°C e 85-90% UR), durante 30 dias. Os frutos foram avaliados a cada 6 dias quanto à perda de massa fresca, coloração e rendimento de polpa. Ao final do período estudado pode-se verificar que a concentração de 1% de CaCl2 foi a que melhor retardou a evolução da cor da casca. Não ocorreu influência das doses aplicadas na perda de massa fresca e no rendimento de polpa dos frutos. A concentração de 4% de CaCl2 foi excessiva para o maracujá-doce, pois contribuiu para a perda de massa fresca e para o amadurecimento dos frutos.

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The increasing demand for high performance wireless communication systems has shown the inefficiency of the current model of fixed allocation of the radio spectrum. In this context, cognitive radio appears as a more efficient alternative, by providing opportunistic spectrum access, with the maximum bandwidth possible. To ensure these requirements, it is necessary that the transmitter identify opportunities for transmission and the receiver recognizes the parameters defined for the communication signal. The techniques that use cyclostationary analysis can be applied to problems in either spectrum sensing and modulation classification, even in low signal-to-noise ratio (SNR) environments. However, despite the robustness, one of the main disadvantages of cyclostationarity is the high computational cost for calculating its functions. This work proposes efficient architectures for obtaining cyclostationary features to be employed in either spectrum sensing and automatic modulation classification (AMC). In the context of spectrum sensing, a parallelized algorithm for extracting cyclostationary features of communication signals is presented. The performance of this features extractor parallelization is evaluated by speedup and parallel eficiency metrics. The architecture for spectrum sensing is analyzed for several configuration of false alarm probability, SNR levels and observation time for BPSK and QPSK modulations. In the context of AMC, the reduced alpha-profile is proposed as as a cyclostationary signature calculated for a reduced cyclic frequencies set. This signature is validated by a modulation classification architecture based on pattern matching. The architecture for AMC is investigated for correct classification rates of AM, BPSK, QPSK, MSK and FSK modulations, considering several scenarios of observation length and SNR levels. The numerical results of performance obtained in this work show the eficiency of the proposed architectures

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The growing demand in the use of composite materials necessitates a better understanding of its behavior related to many conditions of loading and service, as well as under several ways of connections involved in mechanisms of structural projects. Within these project conditions are highlighted the presence of geometrical discontinuities in the area of cross and longitudinal sections of structural elements and environmental conditions of work like UV radiation, moisture, heat, leading to a decrease in final mechanical response of the material. In this sense, this thesis aims to develop studies detailed (experimental and semi-empirical models) the effects caused by the presence of geometric discontinuity, more specifically, a central hole in the longitudinal section (with reduced cross section) and the influence of accelerated environmental aging on the mechanical properties and fracture mechanism of FGRP composite laminates under the action of uniaxial tensile loads. Studies on morphological behavior and structural degradation of composite laminates are performed by macroscopic and microscopic analysis of affected surfaces, in addition to evaluation by the Measurement technique for mass variation (TMVM). The accelerated environmental aging conditions are simulated by aging chamber. To study the simultaneous influence of aging/geometric discontinuity in the mechanical properties of composite laminates, a semiempirical model is proposed and called IE/FCPM Model. For the stress concentration due to the central hole, an analisys by failures criteria were performed by Average-Stress Criterion (ASC) and Point-Stress Criterion (PSC). Two polymeric composite laminates, manufactured industrially were studied: the first is only reinforced by short mats of fiberglass-E (LM) and the second where the reinforced by glass fiber/E comes in the form of bidirectional fabric (LT). In the conception configurations of laminates the anisotropy is crucial to the final mechanical response of the same. Finally, a comparative study of all parameters was performed for a better understanding of the results. How conclusive study, the characteristics of the final fracture of the laminate under all conditions that they were subjected, were analyzed. These analyzes were made at the macroscopic level (scanner) microscope (optical and scanning electron). At the end of the analyzes, it was observed that the degradation process occurs similarly for each composite researched, however, the LM composite compared to composite LT (configurations LT 0/90º and LT ±45º) proved to be more susceptible to loss of mechanical properties in both regarding with the central hole as well to accelerated environmental aging

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The research had as purpose to evaluate the fruits physical-chemical characteristics of peach cultivars (CP-9553 CYN, CP951 C, Tropic Beauty, Cascata 953, Cascata 797, Cascata 587, Precocinho, Conserva 693, Diamante Mejorado, Turmalina e Marli and Sun Blaze nectarine at Botucatu, São Paulo, Brazil region. It were evaluated the fruits fresh matter, longitudinal and transversal diameters, and the crop period. In relation the physical-chemical characteristics of fruits, it was evaluated the texture, the pH, tritatable acid and soluble solids. The results showed significant differences between the cultivars where the fruits fresh matter were 68,6g ('CP-9553 CYN') and 141,35g ('Cascata 953'); the fruits longitudinal diameter were 50,32mm ('Marli') and 72,12mm ('Conserva 693') and the fruits transversal diameter were 50,50mm ('CP-9553 CYN') and 62,90mm ('Cascata 953'). The post-harvest characteristics also had significant differences. The texture had changes at 517,00gf ('Marli') and 168,47gf ('Precocinho'); the soluble solids were 9,73 degrees Brix on Marli cultivar. The pH was about 3,36 on 'Diamante Mejorado' until 4,48 on CP-9553 CYN cultivar and the acidity was 0,96g of citric acid 100g(-1) fruits juice on Tropic Beauty cultivar. The crop period of the cultivars evaluated were the end of September month until 15(th) November month, being the earliest cultivars Tropic Beauty, CP-951 and CP-951 CYN and the latest cultivar were Marli. It was observed that the news cultivars, until in observations, with Cascata 953, Cascata 797 and Cascata 587, showed crops potential at Botucatu/SP region.

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The correlations between the characters seen in experimental trials are generated by genetic and environmental factors and are estimated for the purpose of measuring the change in a character when the selection is practised in another. The objective was to correlate bunch weight with characteristics of growth and production of 4 genomic groups of banana: 'Nanicao-IAC-2001', 'Grand Naine', 'Caipira' and 'Nam' ( AAA); 'Ma a', 'Thap Maeo', 'Prata Ana' and 'Prata Zulu' (AAB), 'Fhia 01', 'Fhia 18', 'Prata Grauda' and 'Maca Tropical' (AAAB) and 'Figo Cinza' (ABB), Botucatu, Brazil. Some growth characteristics were evaluated such as: plant heights, the pseudostem circumference, number of leaves, number of days between planting and flowering, number of days between flowering and harvest and number of days from planting to harvest. These characteristics were measured at the flowering time. The production characteristics such as the bunch weigth, number of fruits, average weigth of the fruits, productivity, number of hands and weight, number, length and diameter of the fruits of the 2(nd) hand. The correlations between the characteristics studied varied for each genotype, but they all showed significant correlation between the bunch weight and the characteristics fruit weigth and productivity. The correlations involving all genotypes were predominantly positive and significant.

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The growing demand in the use of composite materials necessitates a better understanding its behavior to many conditions of loading and service, as well as under several ways of connections involved in mechanisms of structural projects. It is know that most of the structural elements are designed with presence of geometric discontinuities (holes, notches, etc) in their longitudinal sections and / or transversals, and that these discontinuities affect the mechanical response of these elements. This work has aims to analyze a study of the mechanical response, when in the presence geometric discontinuity, of polymer matrix composite laminates (orthophthalic polyester) to the uniaxial tensile test. The geometric discontinuity is characterized by the presence of a center hole in the transversal section of the composite. In this study, different kinds of stacking sequences are tested, with and without the presence of the hole, so as to provide better understanding of the mechanical properties. This sense, two laminates were studied: the first is only reinforced by with seven layers short mats of fiberglass-E (CM) and the second where the reinforcement of fiberglass-E comes in the form of bidirectional fabric (CT), with only four layers. The laminate CT has the presence of anisotropy (sense of continuous fibers with respect to the applied load) as the main parameter influencing its mechanical behavior, behavior this, not observed for the CM. In addition to the mechanical properties was also studied the fracture characteristics developed in each composite laminated. The results also showed that the presence of the hole in the transversal section decreased the ultimate strength of laminates and changed the final characteristic of fracture in all kinds of composite laminated studied

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The aim of this work was to evaluate the grain yield of two soybean cultivars (CD-216 and CD-212RR, divided into three stages: (i) to evaluate the effect of components of production, of simulated drift of glyphosate throught subdoses (1,3; 2,6; 5,3; 11,5 and 22,5 g e. a. ha(-1)) of two cultivars; (ii) to evaluate the influence of glyphosate (720; 1080; 1440 and 1800 g e. a. ha(-1)) in the transgenic soybean yield The experiments carried out in experimental area in the school farm of Uniderp, city of Dorados, MS ina typical Rhodic Haplustox. The experimental design used was in blocks to perhaps The parameters were: heigh oh the pln\ant, number of pods per plants, number of seeds per pod, masss of 100 grains, grain yield (%) of germination, dry mass of seedling, the lengh of radical and air part. The cultivate CD-212RR was not influenced by the subdoses application of glyphosate. Effect of growth stimulus was not observerd due to application of glyphosate subdoses in both cultivars in field conditions. Doses from 11,25 g e. a. ha(-1) caused60 of phytotoxicity in CD-216, at 28 DAA reduce production by 33%. The height and number of pods per plant of cultivar CD-212RR have been reduced and productivity decrease 21% with the application of 1.800 g e.a.ha(-1) of glyphosate.

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This work aims to evaluate the effects of a simulated drift of glyphosate at different doses on some physiological characteristics of Eucalyptus grandis. A completely randomized design with five replications was used, where each pot contained an eucalyptus plant and was considered as one repetition. The plants received doses of glyphosate corresponding to 0, 30, 60, 90 and 120g.ha(-1), in the Scout (R) commercial formulation: The application was performed in three forms: leaves, stem and whole plant (leaf + stem). For foliar application, the stem was covered with plastic tape to avoid being hit by the solution, and leaves with a plastic bag when the stem was spayed. The application was performed by means of a steady spray gun equipped with four XR 11002 tips, with a pressure of 200Kpa and a volume of 2001 ha(-1). Stomatal conductance, transpiration and leaf temperature were measured at 7 days after application (DAA). The eucalypt plants receiving applications in leaves and whole plant showed, at the highest glyphosate dosis (120g.ha(-1)), a transpiration reduced by 22% and an 18% increase of stomatal resistance at 7 DAA. The lowest dose (30g-ha(-1)) applied to the whole plant caused a transpiration stimulation of 18%, and a leaf to air difference in temperature of -1.66 degrees C, while the difference between the highest and lowest dose used was 3.5 degrees C.

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The objective of this work was to evaluate conditions the effectiveness of acetolactate synthase (ALS) and protoporphyrinogen oxidase (PROTOX) inhibitors in the Bidens pilosa control under two water deficit conditions, as well as to determine the influence of water deficit under the contents of soluble carbohydrates and protein of weed. The experimental design was randomized completely design with the treatments, with four replications, setup in a factorial scheme 4x2, with four herbicides (fomesafen lactofen, chlorimuron-ethyl and imazethapyr), and two water conditions (-0.5 MPa and -0.01MPa). At 7, 14, 21 and 28 days after application (DAA), was assessed visually control efficiency of herbicides. For the determination of organic solutes plants were collected at 24, 48, 72 and 96 hours after application (HAA). Herbicides controlled efficiently plants of B. pilosa, except lactofen, whereas the water deficit affected the efficiency of control of all the herbicides. The soluble carbohydrate content increased with the imposition of water deficit, however, herbicides and water deficit further reduction of soluble proteins in plants of B. pilosa.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The growing demand in the use of hybrid composite materials makes it essential a better understanding of their behavior face of various design conditions, such as the presence of geometric discontinuities in the cross section of structural elements. This way, the purpose of this dissertation is a study of the mechanical response (strength and stiffness), modes (characteristics) of fracture and Residual Strength of an hybrid polymeric composite with and without a geometric discontinuity in its longitudinal section (with a reduction in the cross section) loaded by uniaxial tension. This geometric discontinuity is characterized by central holes of different diameters. The hybrid composite was fabricated as laminate (plate) and consisting of ortho-tereftalic polyester matrix reinforced by 04 outer layers of Jute fibers bidirectional fabrics and 01 central layer of E-glass bidirectional fabric. The laminate was industrially manufactured (Tecniplas Nordeste Indústria e Comércio Ltda.), obtained by the hand lay-up technique. Initially, a study of the volumetric density of the laminate was made in order to verify its use in lightweight structures. Also were performed comparative studies on the mechanical properties and fracture modes under the conditions of the specimens without the central hole and with the different holes. For evaluating the possible influence of the holes in the structural stability of the laminate, the Residual Strength of the composite was determined for each case of variation in hole diameter. As a complementary study, analyses of the macroscopic final fracture characteristic of the laminates were developed. The presence of the central hole of any sizes, negatively changed the ultimate tensile strength. Regarding the elastic modulus, moreover, the difference found between the specimens was within the range of tests displacement, showing the laminate stability related to the stiffness

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One of the current major concerns in engineering is the development of aircrafts that have low power consumption and high performance. So, airfoils that have a high value of Lift Coefficient and a low value for the Drag Coefficient, generating a High-Efficiency airfoil are studied and designed. When the value of the Efficiency increases, the aircraft s fuel consumption decreases, thus improving its performance. Therefore, this work aims to develop a tool for designing of airfoils from desired characteristics, as Lift and Drag coefficients and the maximum Efficiency, using an algorithm based on an Artificial Neural Network (ANN). For this, it was initially collected an aerodynamic characteristics database, with a total of 300 airfoils, from the software XFoil. Then, through the software MATLAB, several network architectures were trained, between modular and hierarchical, using the Back-propagation algorithm and the Momentum rule. For data analysis, was used the technique of cross- validation, evaluating the network that has the lowest value of Root Mean Square (RMS). In this case, the best result was obtained for a hierarchical architecture with two modules and one layer of hidden neurons. The airfoils developed for that network, in the regions of lower RMS, were compared with the same airfoils imported into the software XFoil

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A utilização de cultivares com elevado potencial produtivo, adaptados ao local de cultivo e de boas características culinárias são de suma importância à cadeia produtiva do feijão. O objetivo deste trabalho foi avaliar o comportamento de cultivares de feijão (Phaseolus vulgaris L.) do grupo comercial carioca, identificando aqueles superiores quanto aos componentes da produção, produtividade de grãos, e às características tecnológicas, na semeadura das águas de 2000. O delineamento experimental foi o de blocos ao acaso, com 15 tratamentos, constituídos pelas cultivares: Carioca, Pérola, IAC-Carioca SH, IAC-Carioca Eté, IAC-Carioca Pyatã, Carioca Precoce, IAC-Carioca Aruã, FT-Bonito, Rudá, Aporé, Princesa, IAPAR 14, IAPAR 80, IAPAR 81 e Porto Real, com quatro repetições. A massa de cem grãos e o número de grãos por vagem são os componentes de maior influência na produtividade de grãos de cultivares de feijão. As cultivares Aporé, Carioca Precoce e Rudá, destacam-se com produtividade de grãos acima de 3.500 kg ha-1. As características tecnológicas dos grãos das cultivares Carioca, IAPAR 80 e IAPAR 81, são maiores.

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Cotton is a hydrofilic textile fiber and, for this reason, it changes its properties according to the environment changes. Moisture and Temperature are the two most important factors that lead a cotton Spinning sector and influence its quality. Those two properties can change the entire Spinning process. Understanding this, moisture and temperature must be kept under control when used during the Spinning process, once the environment is hot and dry, the cotton yarns absorb moisture and lose the minimal consistency. According to this information, this paper was developed testing four types of cotton yarns, one kind of cotton from Brazil and the others from Egypt. The yarns were exposed to different temperatures and moisture in five different tests and in each test, six samples that were examined through physical and mechanical tests: resistance, strength, tenacity, yarn´s hairness, yarn´s evenness and yarn´s twisting. All the analysis were accomplished at Laboratório de Mecânica dos Fluídos and at COATS Corrente S.A., where, it was possible to use the equipments whose were fundamental to develop this paper, such as the STATIMAT ME that measures strength, tenacity, Zweigler G566, that measure hairiness in the yarn, a skein machine and a twisting machine. The analysis revealed alterations in the yarn´s characteristics in a direct way, for example, as moisture and temperature were increased, the yarn´s strength, tenacity and hairness were increased as well. Having the results of all analysis, it is possible to say that a relatively low temperature and a high humidity, cotton yarns have the best performance

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Para avaliar o efeito da combinação de teores de fósforo na semente com doses de fósforo aplicadas via solo sobre as características químicas e fisiológicas de semente de feijão, foram avaliadas sementes das cultivares Carioca Precoce e IAC-Carioca Tybatã, produzidas em cultivo da seca. Na produção das sementes utilizou-se o delineamento experimental em blocos casualizados em esquema fatorial 3x3, correspondente a três teores de fósforo na semente (baixo, médio e alto) e três doses de fósforo, na forma de superfosfato triplo, aplicadas no sulco de semeadura (zero, 90 e 150 kg P2O5 . ha-1), totalizando nove tratamentos para cada cultivar, com cinco repetições. Foram determinados o teor de água e as características químicas (teores de proteína, açúcares total, N, P, K, Ca, Mg, S, Cu, Fe, Mn e Zn) e fisiológicas da semente (germinação e vigor). Os dados obtidos foram submetidos à análise de variância e as médias comparadas pelo teste Tukey, a 5% de probabilidade. A qualidade fisiológica da semente não é favorecida pelos teores de fósforo na semente e no solo, embora esses ocasionem algumas alterações nos teores de nutrientes da semente.