996 resultados para Fokker-Planck, Equação de
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O fator cobertura e manejo do solo (fator C da Equação Universal de Perda de Solo- EUPS) é um dos mais importantes na redução das perdas de solo por erosão hídrica. Com objetivo de avaliar as razões de perda de solo (RPS) e o fator C, conduziu-se um experimento sob chuva natural em um Cambissolo Húmico alumínico léptico, com declividade média de 0,102 m m-1, em Lages, SC, no período de novembro de 2002 a outubro de 2005, compreendendo seis ciclos culturais. Os parâmetros foram avaliados em cinco estádios, com base na cobertura do solo pelo dossel das plantas. Foram estudados três sistemas de manejo do solo: aração + duas gradagens (PC), escarificação + uma gradagem (CM) e semeadura direta (SD), submetidos a sucessão soja (Glycine max) e trigo (Triticum aestivum L.), além de um tratamento adicional, com aração + duas gradagens sem culturas (SC). As RPS e os fatores C, variaram quanto aos ciclos, estádios das culturas e sistemas de manejo do solo. A SD reduziu as RPS, em 85% e 48% em relação ao PC e CM, respectivamente, durante os cultivos de soja e em 60% e 55% nos cultivos de trigo. Na média dos três anos de estudo, os valores do fator C, foram de 0,073 (PC), 0,016 (CM) e 0,007 (SD) Mg ha Mg-1 ha-1 durante os cultivos de soja e 0,126 (PC), 0,083 (CM) e 0,035 (SD) Mg ha Mg-1 ha-1 durante os cultivos de trigo. Para a sucessão de culturas soja-trigo, os valores do fator C foram de 0,198, 0,099 e 0,042 Mg ha Mg-1 ha-1, para PC, CM e SD, respectivamente.
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Sub-bacias delimitadas para o estado do Rio de Janeiro foram parametrizadas por meio de duas metodologias que indicam vulnerabilidade, a equação universal de perda de solo que estima a perda de solo em toneladas por hectare/ano; e a integração temática de parâmetros morfométricos, topográficos, hidrológicos e de uso/cobertura da terra, que resulta em um índice de vulnerabilidade adimensional. Os parâmetros de cada método e os resultados foram analisados e comparados para verificação do grau de associação entre as metodologias, concluindo-se que os métodos são complementares para indicar vulnerabilidade de sub-bacia.
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In this Thesis, we present a series of works that encompass the fundamental steps of cosmological analyses based on galaxy clusters, spanning from mass calibration to deriving cosmological constraints through counts and clustering. Firstly, we focus on the 3D two-point correlation function (2PCF) of the galaxy cluster sample by Planck Collaboration XXVII (2016). The masses of these clusters are expected to be underestimated, as they are derived from a scaling relation calibrated through X-ray observations. We derived a mass bias which disagrees with simulation predictions, consistent with what derived by Planck Collaboration VI (2020). Furthermore, in this Thesis we analyse the cluster counts and 2PCF, respectively, of the photometric galaxy cluster sample developed by Maturi et al. (2019), based on the third data release of KiDS (KiDS-DR3, de Jong et al. 2017). We derived constraints on fundamental cosmological parameters which are consistent and competitive, in terms of uncertainties, with other state-of-the-art cosmological analyses. Then, we introduce a novel approach to establish galaxy colour-redshift relations for cluster weak-lensing analyses, regardless of the specific photometric bands in use. This method optimises the selection completeness of cluster background galaxies while maintaining a defined purity threshold. Based on the galaxy sample by Bisigello et al. (2020), we calibrated two colour selections, one relying on the ground-based griz bands, and the other including the griz and Euclid YJH bands. In addition, we present the preliminary work on the weak-lensing mass calibration of the clusters detected by Maturi et al. (in prep.) in the fourth data release of KiDS (KiDS-1000, Kuijken et al. 2019). This mass calibration will enable the cosmological analyses based on cluster counts and clustering, from which we expect remarkable improvements in the results compared to those derived in KiDS-DR3.
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This work approaches the forced air cooling of strawberry by numerical simulation. The mathematical model that was used describes the process of heat transfer, based on the Fourier's law, in spherical coordinates and simplified to describe the one-dimensional process. For the resolution of the equation expressed for the mathematical model, an algorithm was developed based on the explicit scheme of the numerical method of the finite differences and implemented in the scientific computation program MATLAB 6.1. The validation of the mathematical model was made by the comparison between theoretical and experimental data, where strawberries had been cooled with forced air. The results showed to be possible the determination of the convective heat transfer coefficient by fitting the numerical and experimental data. The methodology of the numerical simulations was showed like a promising tool in the support of the decision to use or to develop equipment in the area of cooling process with forced air of spherical fruits.
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Time Domain Reflectometry (TDR) is a reliable method for in-situ measurements of the humidity and the solution concentration at the same soil volume. Accurate interpretation of electrical conductivity (and soil humidity) measurements may require a specific calibration curve. The primary goal of this work was to establish a calibration procedure for using TDR to estimate potassium nitrate concentrations (KNO3) in soil solution. An equation relating the electrical conductivity measured by TDR and KNO3 concentration was established enabling the use of TDR technique to estimate soil water content and nitrate concentration for efficient fertigation management.
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This work proposes to determine the water activity and the freezing point depression of tangerine, pineapple and lemon juices at various concentrations (10-55oBrix) and to achieve a correlation between these properties. The freezing point depression was determined with a LAKTRON cryoscope and common laboratory materials. The water activity was determined with a DECAGON CX-2 hygrometer in the temperature range of 15 to 30oC. With the results, the adjustment to CHEN (1987) water activity prediction equation to non-electrolyte mixtures was verified, through the calculation of the variation coefficient (CV). Being CV smaller than 3% for the proposed model, it can be said that the experimental data have adjusted well to the prediction equation. The water activity and the freezing point depression was correlated for tangerine, pineapple and lemon juices and r2 values were higher than 99%. Therefore, it is possible to obtain the water activity by knowing the freezing point depression of studied juices.
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas. Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física
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Universidade Estadual de Campinas . Faculdade de Educação Física