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Avaliação da capacidade de suporte de solos "in situ" em obras viarias atraves do Cone de Penetração Dinamica : estudo experimental / Evaluation of in-situ bearing capacity of soils in road buildngs through the Dynamic Cone Penetrometer : experimental studyBerti, Carolina 19 December 2005 (has links)
Orientador: Cassio Eduardo Lima de Paiva / Dissertação (mestrado) - Universidade Estadual de Campinas, Faculdade de Engenharia Civil, Arquitetura e Urbanismo / Made available in DSpace on 2018-08-06T16:48:11Z (GMT). No. of bitstreams: 1
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Previous issue date: 2005 / Resumo: Esta pesquisa procurou estabelecer uma correlação entre os valores de capacidade de suporte resultantes dos ensaios CBR (Califórnia Bearing Ratio) versus DCP (Dynamic Cone Penetrometer), realizados com o solo proveniente de vias não-pavimentadas dentro do Campus da UNICAMP, situado em Campinas, São Paulo. O Cone de Penetração Dinâmica (DCP) é caracterizado como um equipamento simples, portátil e de baixo custo, cujo ensaio revela ser praticamente não-destrutivo. Com ele é possível determinar o perfil de resistência de camadas de solo compactadas ou em seu estado natural, controlar a execução de obras viárias e avaliar estruturas de pavimentos. Uma investigação do solo através de ensaios DCP e CBR conduziu ao desenvolvimento de modelos de regressão, correlacionando a capacidade de suporte obtida através de ensaios ¿in situ¿ com o auxílio do DCP, e ensaios de laboratório utilizando o ensaio de CBR e DCP. Através das informações contidas na literatura técnica, dos procedimentos experimentais efetuados e das análises de regressão realizadas, ficou evidenciado o relacionamento entre o DCP e o CBR, validando as correlações estabelecidas e propondo modelos próprios, aumentando a confiabilidade dos resultados dos ensaios DCP para avaliação da capacidade de suporte de solos / Abstract: This research establishes a correlation among the strength or supporting values of the tests: CBR (California Bearing Ratio) versus DCP (Dynamic Cone Penetrometer), accomplished with the soil originating from no-paved roads inside of the Campus of UNICAMP. The Cone of Dynamic Penetration (DCP) it is characterized as an equipment simple, portable and of low cost, whose tests reveals to be practically no-destructive. DCP test determines the profile of resistance of soil layers compacted or in your natural state, to control the execution of road buildings and to evaluate structures of pavements. An investigation of the soil through DCP and CBR tests led to the development of regression models, correlating the strength measures obtained through in-situ tests with the aid of DCP and laboratory tests using the CBR and DCP. Through the information contained in the technical literature, of the made experimental procedures and of the regression analyses accomplished, the relationship was evidenced between DCP and CBR, validating the established correlations and proposing own models, increasing the reliability of the results of the DCP tests for determining strength values of soils / Mestrado / Transportes / Mestre em Engenharia Civil
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Estimativa da retenção de água no solo a partir do uso de equipamentos não convencionais, redes neurais artificiais e funções de pedotransferência / Water retention soil estimate using nonconventional equipment, artificial neural networks and pedotransfer functionsAntonio Angelotti Netto 06 September 2007 (has links)
O desenvolvimento econômico e o aumento da produtividade agrícola intensificaram o uso de produtos químicos nas lavouras. Quando se pretende quantificar o impacto ambiental de tal uso é necessário empregar modelos que descrevam o fluxo de água e solutos na região não saturada do solo. Para esse fim, um dos parâmetros mais eficazes é conhecer a retenção de água no solo. O objetivo deste trabalho foi desenvolver funções de pedotransferência (FPTs) que estimassem a partir de análise em redes neurais artificiais (RNAs) a retenção de água nos solos da microbacia hidrográfica do ribeirão Canchim, município de São Carlos, SP. Os atributos físicos, textura (argila, silte e areia), densidade e resistência à penetração dos solos: LVAd, LVe, LVdf e NVef, manejados com e sem cobertura vegetal e sob mata foram determinados com equipamentos não convencionais na Embrapa Instrumentação Agropecuária em São Carlos, SP. Esses parâmetros foram utilizados como variáveis de entrada nas duas redes neurais artificiais. Foram obtidas, ainda, as curvas de retenção de água no solo por meio da câmara de pressão de Richards e da tomografia computadorizada, além da porosidade total e da condutividade hidráulica não saturada. O analisador granulométrico de solos e o penetrômetro associado a TDR possibilitaram a obtenção de um grande número de dados. Os atributos físicos dos solos apresentaram grande variabilidade em função da constituição granulométrica e manejos adotados. As RNAs foram eficientes no desenvolvimento de FPTs capazes de estimar a retenção de água com base em propriedades básicas de solo obtidas em grande número. / Economic development and increasing agricultural productivity have intensified the use of chemical products in farming. The quantification environmental impact of these products requires the use of models that describe the flow of water and solutes in the unsaturated region of the soil. For this purpose, one of the most effective parameters belong to the water retention curve of the soil. The purpose of this work was to develop pedotransfer functions (PTFs) to estimate the retention of water by soils of the hydrographic microbasin of the Canchim river, in the municipality of São Carlos, state of São Paulo, Brazil, based on artificial neural networks (ANNs). The physical attributes, granulometry (clay, silt and sand), density and resistance to penetration of LVAd, LVe, LVdf and NVef soils, managed with and without vegetal cover and under forest, were determined using nonconventional equipment at Embrapa Instrumentação Agropecuária in São Carlos, SP. These parameters were used as input variables for two artificial neural networks. The soils\' water retention curves were also obtained using a Richards pressure chamber and computed tomography, as well as their total porosity and unsaturated hydraulic conductivity. A soil granulometric analyzer and a penetrometer allied to TDR provided a large number of data. The soils\' physical attributes displayed a wide variability as a function of their granulometric constitution and adopted managements. The ANNs were effective in developing PTFs able to estimate the water retention based on the large number of basic soil properties.
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Mise au point et exploitation d'une nouvelle technique pour la reconnaisance des sols : le PANDA 3 / Development and interpretation of new technique for soils characterization : the panda 3Escobar Valencia, Esteban Julio 07 May 2015 (has links)
Ce travail présente les développements récents réalisés sur le pénétromètre PANDA 3. Il s'agit d'un pénétromètre dynamique instrumenté qui permet à partir de la mesure puis du découplage des ondes créées par l’impact sur l’appareil, d’obtenir pour chaque coup une courbe charge-enfoncement σp-sp du sol ausculté. L’exploitation de cette courbe permet de déterminer des paramètres de résistance (résistance de pointe qd), de déformation (module dynamique Ed P3), des caractéristiques d’amortissement Js et de célérité d'ondes (CsP3 et CpP3) des sols auscultés en fonction de la profondeur tout au long du sondage. Cependant, et bien que la méthode soit très intéressante, celle-ci est restée au stade d’un prototype de laboratoire. Il est donc nécessaire de réaliser une étude plus approfondie sur l'essai lui-même et sur l’information contenue dans la courbe σp-sp en vue de fiabiliser la mesure et d’améliorer son exploitation. Dans un premier temps, nous présentons un bref aperçu sur les techniques de reconnaissance géotechnique et plus particulièrement celle des essais de pénétration dynamique. Le principe général du PANDA 3 est également présenté. La deuxième partie est consacrée au développement d'un nouveau prototype de pénétromètre PANDA 3. Ce développement s’appuie sur plusieurs études visant à valider la qualité des informations recueillies, leur bonne reproductibilité et le traitement des signaux d’acquisition. De même, un modèle numérique discret du battage pénétrométrique développé à l’aide du logiciel Particle Flow Code (Itasca) est présenté permettant de valider la technique de mesure. La troisième partie traite d'une étude comparative des résultats obtenus avec le PANDA 3 et d’autres techniques d'auscultation in situ afin de valider les résultats obtenus et l’utilisation de l’appareil dans des conditions réelles. Par ailleurs l’extension de cette technique de mesure au cas des pénétromètres lourds est appliquée dans le but de mesurer l'énergie transmise et d’étalonner le système de battage. Enfin, la dernière partie est consacrée à l'interprétation et l'exploitation des signaux en pointe afin d'affiner le modèle d'interprétation de la courbe charge-enfoncement. L'analyse de l'ensemble des signaux enregistrés au laboratoire a permis d’approcher une méthodologie d'exploitation de la courbe. L'application de la méthode proposée a été réalisée pour différents sols aussi bien au laboratoire que sur le terrain. Les résultats obtenus ont été confrontés avec d'autres types d’essais. / This work presents the recent developments made on the penetrometer PANDA®3. The instrumented dynamic penetrometer allowing, from the measurement and the decoupling of waves created by the impact, to obtain the load-penetration curve σp-sp of the soil. The exploitation of this curve allows determining the failure parameter (tip resistance qd), deformation (dynamic modulus EdP3), damping characteristics (Js) and wave speed (CsP3 and CpP3) of the investigated soil according to depth all along the sounding. However, although the proposed method is very interesting, it has remained at the stage of a laboratory prototype. It is therefore necessary to conduct a more thorough study of the test itself and the information provided from the σp-sp curve in order to obtain reliable measurement and improve their exploitation. First of all, we are presenting a brief overview of the geotechnical in-situ testing particularly that of the dynamic penetration tests as well as the general principle of PANDA 3 is presented. The second part is devoted to the development of a new prototype of the PANDA 3 penetrometer. This development is based on several studies aiming at validating the quality of the information, good reproducibility and treatment of the acquisition signals. Similarly, a discrete numerical model of the penetrometer developed using the Particle Flow Code software (Itasca) is presented to validate the measurement technique. The third part deals with a comparative study of the results obtained with the PANDA 3 and other in situ investigation techniques to validate the obtained results and the use of the device in real conditions. Moreover, the extension of this measurement technique in the case of heavy penetrometer is applied in order to measure the transmitted energy and to calibrate the driving system. The last part is devoted to refining the interpretation and exploitation of the load-penetration curve. The analysis of all the signals recorded in the laboratory allowed to approach a methodology of curve exploitation. The application of the proposed method was carried out for different soils both in the laboratory and on field. The results were confronted with other types of tests.
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Aspects of the design and behaviour of road structures incorporating lightly cementitious layersDe Beer, Morris 28 July 2008 (has links)
Please read the abstract in the section, 00front, of this document / Thesis (DPhil)--University of Pretoria, 2008. / Civil Engineering / unrestricted
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Temporal and Spatial Variability in Base Materials Treated with Asphalt EmulsionQuick, Tyler James 17 March 2011 (has links) (PDF)
The first objective of this research was to investigate temporal trends in the mechanical properties of base materials stabilized with asphalt emulsion and to assess the rate at which emulsion-treated base (ETB) design properties are achieved. The second objective of this research was to identify construction and environmental factors most correlated to specific mechanical properties of ETB layers and to determine which construction factors exhibit the greatest variability. Additional statistical analysis was performed to determine if significant differences existed between different test sections on a given project. In this research, three experimental sections were established along a pavement reconstruction project near Saratoga Springs, Utah. Field tests were performed to assess the structural properties of the ETB immediately following construction and at 2, 3, 7, and 14 days; 4 months; and 1 year. Measured values were plotted against time to determine trends in ETB strength development. Several statistical analyses were then performed on the collected data. Modulus values were consistently low in all three sections during the first two weeks of testing, increased dramatically by 4 months, and then decreased considerably by 1 year. During the first two weeks following construction, the average ETB structural coefficient was 0.04. Only two of the three sections reached the design structural coefficient of 0.25, which occurred after approximately 3 months; however, the average structural coefficient measured for all three sections after 1 year of curing, which included a winter, was only 47 percent of the design strength. The results of this research show that, while pavement capacity is sufficient at 4 months, it is severely reduced during the first two weeks and at 1 year. Trafficking under these reduced capacities is not recommended. Statistical analysis showed that gradation, binder change during emulsion treatment, and moisture content have the most significant impact on ETB structural properties. Gradation and binder change during emulsion treatment also exhibited significant variability; tighter specifications on material gradations and improved uniformity in emulsion distribution should therefore be considered. Because of the negative impacts of moisture on ETB strength development, construction should not be performed in conditions of excess moisture.
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