988 resultados para Lidar
Resumo:
Twelve Mile Creek Lake is a 660 acre, Significant Publicly Owned Lake with a watershed of 14,820 acres for a ratio of 21:3. The watershed is predominately privately owned agricultural land that originates in Adair County and drains into the lake which serves as the primary source water for the City of Creston, Union County and the seven counties served by the Southern Iowa Rural Water Association. In recent years, frequent algae blooms and recurrent spikes in suspended solid concentrations have been inflating water treatment expenses for the Creston Municipal Utilities (CMU). Declining trends in water quality spurred CMU to enlist the Union Soil and Water Conservation District (SWCD) to assist in evaluating watershed conditions for potential upland improvements. Significant gully erosion issues that had been previously underestimated were discovered during this watershed assessment process. Newly acquired LiDAR elevation data readily revealed this concern which was previously obscured from view by the dense tree canopy. A Watershed Development and Planning Assistance Grant Application was approved and funded by the Iowa Department of Ag and Land Stewardship- Division of Soil Conservation. Throughout the planning process, project partners innovatively evaluated and prioritized a number of resource concerns throughout the watershed. The implementation plan presented will thwart these threats which left unaided will continue to diminish the overall health of the system, reduce the appeal of the lake to recreational users, and contribute to higher water treatment costs.
Resumo:
O objetivo deste trabalho foi avaliar a possibilidade de se estimar o diâmetro à altura do peito (DAP) com os dados de altura e de número de árvores derivados do escâner a laser aerotransportado (LiDAR, "light detection and ranging"), e determinar o volume de madeira de talhão de Eucalyptus sp. a partir dessas variáveis. O número total de árvores detectadas foi obtido com uso da filtragem de máxima local. A altura de plantas estimada pelo LiDAR apresentou tendência não significativa à subestimativa. A estimativa do DAP foi coerente com os valores encontrados no inventário florestal; porém, também mostrou tendência à subestimativa, em razão do comportamento observado quanto à altura. A variável número de fustes apresentou valores próximos aos observados nas parcelas do inventário. O LiDAR subestimou o volume total de madeira do talhão em 11,4%, em comparação ao volume posto na fábrica. A tendência de subestimação da altura das árvores (em média, cerca de 5%) impactou a estimativa do volume individual de árvores e, consequentemente, a do volume do talhão. No entanto, é possível gerar equações de regressão que estimam o DAP com boa precisão, a partir de dados de altura de plantas obtidos pelo LiDAR. O modelo parabólico é o que possibilita as melhores estimativas da produção volumétrica dos talhões de eucalipto.
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The Manival near Grenoble (French Prealps) is a very active debris-flow torrent equipped with a large sediment trap (25 000 m3) protecting an urbanized alluvial fan from debris-flows. We began monitoring the sediment budget of the catchment controlled by the trap in Spring 2009. Terrestrial laser scanner is used for monitoring topographic changes in a small gully, the main channel, and the sediment trap. In the main channel, 39 cross-sections are surveyed after every event. Three periods of intense geomorphic activity are documented here. The first was induced by a convective storm in August 2009 which triggered a debris-flow that deposited ~1,800 m3 of sediment in the trap. The debris-flow originated in the upper reach of the main channel and our observations showed that sediment outputs were entirely supplied by channel scouring. Hillslope debris-flows were initiated on talus slopes, as revealed by terrestrial LiDAR resurveys; however they were disconnected to the main channel. The second and third periods of geomorphic activity were induced by long duration and low intensity rainfall events in September and October 2009 which generate small flow events with intense bedload transport. These events contribute to recharge the debris-flow channel with sediments by depositing important gravel dunes propagating from headwaters. The total recharge in the torrent subsequent to bedload transport events was estimated at 34% of the sediment erosion induced by the August debris-flow.
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This paper describes a mesurement system designed to register the displacement of the legs using a two-dimensional laser range sensor with a scanning plane parallel to the ground and extract gait parameters. In the proposed methodology, the position of the legs is estimated by fitting two circles with the laser points that define their contour and the gait parameters are extracted applying a step-line model to the estimated displacement of the legs to reduce uncertainty in the determination of the stand and swing phase of the gait. Results obtained in a range up to 8 m shows that the systematic error in the location of one static leg is lower than 10 mm with and standard deviation lower than 8 mm; this deviation increases to 11 mm in the case of a moving leg. The proposed measurement system has been applied to estimate the gait parameters of six volunteers in a preliminary walking experiment.
Resumo:
The optimization of most pesticide and fertilizer applications is based on overall grove conditions. In this work we measurements. Recently, Wei [9, 10] used a terrestrial propose a measurement system based on a ground laser scanner to LIDAR to measure tree height, width and volume developing estimate the volume of the trees and then extrapolate their foliage a set of experiments to evaluate the repeatability and surface in real-time. Tests with pear trees demonstrated that the accuracy of the measurements, obtaining a coefficient of relation between the volume and the foliage can be interpreted as variation of 5.4% and a relative error of 4.4% in the linear with a coefficient of correlation (R) of 0.81 and the foliar estimation of the volume but without real-time capabilities. surface can be estimated with an average error less than 5 %.
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The geometric characterisation of tree orchards is a high-precision activity comprising the accurate measurement and knowledge of the geometry and structure of the trees. Different types of sensors can be used to perform this characterisation. In this work a terrestrial LIDAR sensor (SICK LMS200) whose emission source was a 905-nm pulsed laser diode was used. Given the known dimensions of the laser beam cross-section (with diameters ranging from 12 mm at the point of emission to 47.2 mm at a distance of 8 m), and the known dimensions of the elements that make up the crops under study (flowers, leaves, fruits, branches, trunks), it was anticipated that, for much of the time, the laser beam would only partially hit a foreground target/object, with the consequent problem of mixed pixels or edge effects. Understanding what happens in such situations was the principal objective of this work. With this in mind, a series of tests were set up to determine the geometry of the emitted beam and to determine the response of the sensor to different beam blockage scenarios. The main conclusions that were drawn from the results obtained were: (i) in a partial beam blockage scenario, the distance value given by the sensor depends more on the blocked radiant power than on the blocked surface area; (ii) there is an area that influences the measurements obtained that is dependent on the percentage of blockage and which ranges from 1.5 to 2.5 m with respect to the foreground target/object. If the laser beam impacts on a second target/object located within this range, this will affect the measurement given by the sensor. To interpret the information obtained from the point clouds provided by the LIDAR sensors, such as the volume occupied and the enclosing area, it is necessary to know the resolution and the process for obtaining this mesh of points and also to be aware of the problem associated with mixed pixels.
Resumo:
OBJETIVO: Relatar os resultados da aplicação de técnicas endovasculares no tratamento de aneurismas cirsoideos do couro cabeludo. MATERIAIS E MÉTODOS: Quatro pacientes com diagnóstico de aneurismas cirsoideos foram submetidos ao tratamento por via endovascular. Todos os quatro pacientes incluídos nesta série tinham malformações arteriovenosas e foram tratados apenas com embolização. RESULTADOS: Três pacientes foram submetidos a tratamento endovascular mediante embolização transarterial e um foi tratado por punção direta da porção venosa. Os resultados clínicos e cosméticos foram satisfatórios em todos os pacientes. Não houve recidiva clínica durante o período de acompanhamento. CONCLUSÃO: A via endovascular é uma alternativa segura e eficaz no tratamento dos aneurismas cirsoideos. Embora possa ser efetivamente utilizado como uma alternativa adjuvante ou complementar à cirurgia, especialmente quando é necessário lidar com aferências profundas, a maioria dos casos pode ser totalmente curada apenas com a terapêutica endovascular. A escolha do método de tratamento deve ser baseada em uma variedade de características próprias da lesão, incluindo sua angioarquitetura, tamanho e apresentação clínica.
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Integrated in a wide research assessing destabilizing and triggering factors to model cliff dynamic along the Dieppe's shoreline in High Normandy, this study aims at testing boat-based mobile LiDAR capabilities by scanning 3D point clouds of the unstable coastal cliffs. Two acquisition campaigns were performed in September 2012 and September 2013, scanning (1) a 30-km-long shoreline and (2) the same test cliffs in different environmental conditions and device settings. The potentials of collected data for 3D modelling, change detection and landslide monitoring were afterward assessed. By scanning during favourable meteorological and marine conditions and close to the coast, mobile LiDAR devices are able to quickly scan a long shoreline with median point spacing up to 10cm. The acquired data are then sufficiently detailed to map geomorphological features smaller than 0.5m2. Furthermore, our capability to detect rockfalls and erosion deposits (>m3) is confirmed, since using the classical approach of computing differences between sequential acquisitions reveals many cliff collapses between Pourville and Quiberville and only sparse changes between Dieppe and Belleville-sur-Mer. These different change rates result from different rockfall susceptibilities. Finally, we also confirmed the capability of the boat-based mobile LiDAR technique to monitor single large changes, characterizing the Dieppe landslide geometry with two main active scarps, retrogression up to 40m and about 100,000m3 of eroded materials.
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Landslide processes can have direct and indirect consequences affecting human lives and activities. In order to improve landslide risk management procedures, this PhD thesis aims to investigate capabilities of active LiDAR and RaDAR sensors for landslides detection and characterization at regional scales, spatial risk assessment over large areas and slope instabilities monitoring and modelling at site-specific scales. At regional scales, we first demonstrated recent boat-based mobile LiDAR capabilities to model topography of the Normand coastal cliffs. By comparing annual acquisitions, we validated as well our approach to detect surface changes and thus map rock collapses, landslides and toe erosions affecting the shoreline at a county scale. Then, we applied a spaceborne InSAR approach to detect large slope instabilities in Argentina. Based on both phase and amplitude RaDAR signals, we extracted decisive information to detect, characterize and monitor two unknown extremely slow landslides, and to quantify water level variations of an involved close dam reservoir. Finally, advanced investigations on fragmental rockfall risk assessment were conducted along roads of the Val de Bagnes, by improving approaches of the Slope Angle Distribution and the FlowR software. Therefore, both rock-mass-failure susceptibilities and relative frequencies of block propagations were assessed and rockfall hazard and risk maps could be established at the valley scale. At slope-specific scales, in the Swiss Alps, we first integrated ground-based InSAR and terrestrial LiDAR acquisitions to map, monitor and model the Perraire rock slope deformation. By interpreting both methods individually and originally integrated as well, we therefore delimited the rockslide borders, computed volumes and highlighted non-uniform translational displacements along a wedge failure surface. Finally, we studied specific requirements and practical issues experimented on early warning systems of some of the most studied landslides worldwide. As a result, we highlighted valuable key recommendations to design new reliable systems; in addition, we also underlined conceptual issues that must be solved to improve current procedures. To sum up, the diversity of experimented situations brought an extensive experience that revealed the potential and limitations of both methods and highlighted as well the necessity of their complementary and integrated uses.
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We present an overview of the knowledge of the structure and the seismic behavior of the Alhama de Murcia Fault (AMF). We utilize a fault traces map created from a LIDAR DEM combined with the geodynamic setting, the analysis of the morphology, the distribution of seismicity, the geological information from E 1:50000 geological maps and the available paleoseismic data to describe the recent activity of the AMF. We discuss the importance of uncertainties regarding the structure and kinematics of the AMF applied to the interpretation and spatial correlation of the paleoseismic data. In particular, we discuss the nature of the faults dipping to the SE (antithetic to the main faults of the AMF) in several segments that have been studied in the previous paleoseismic works. A special chapter is dedicated to the analysis of the tectonic source of the Lorca 2011 earthquake that took place in between two large segments of the fault.
Resumo:
Referat av artikeln: Korpela, I., Tuomola, T., Tokola, T. & Dahlin, B. 2008. Appraisal of seedling stand vegetation with airborne imagery and discrete-return LiDAR - an exploratory analysis. Silva Fennica 42 (5) : 753-772.
Resumo:
No artigo, abordo a ideia de melhoramento humano (MH), visando a contestar três frustrantes tendências dos seus críticos, a saber, as ideias de: (1) que a natureza humana será artificializada, sugerindo que estaremos diante de algo novo e incomparavelmente perigoso, bem como que ainda seja possível preservar uma separação radical entre natureza e técnica; (2) que é possível abordar e criticar o MH a partir de uma singularidade semântica; e, diretamente relacionada à anterior, (3) que há univocidade entre os defensores do MH acerca de como os indivíduos devem lidar com os meios biotecnocientíficos disponibilizados, a saber, como uma ingênua e acrítica obrigação de melhorar.
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Dos médicos, independentemente da especialidade que exercem, são requeridas competências para lidar com as relações trabalho-saúde-doença, o que não tem sido adequadamente contemplado no curso de graduação. Buscando aperfeiçoar o ensino desse conteúdo, encontra-se em desenvolvimento, desde 2003, na Faculdade de Medicina da UFMG, com o apoio de duas bolsistas do Programa de Iniciação à Docência da Pró-Reitoria de Graduação, uma proposta de avaliar o programa da disciplina Saúde do Trabalhador, com ênfase nas estratégias pedagógicas utilizadas e nos instrumentos de avaliação do desempenho dos alunos. O trabalho foi implementado em etapas, iniciando-se com o reconhecimento da história e estrutura da disciplina; revisão da literatura, enfocando os conceitos e estratégias de avaliação aplicadas ao ensino médico e identificação de experiências desenvolvidas em outros centros. A seguir, foram preparados questionários, denominados pré e pós-teste, para conhecer a percepção e experiência prévia dos alunos quanto aos conteúdos e atividades da disciplina. Os questionários são aplicados sistematicamente no início e final do semestre letivo, desde julho de 2003. Os resultados desse trabalho têm possibilitado melhor adequação dos conteúdos e metodologias desenvolvidas, de particular importância no contexto da reorientação curricular da formação médica.
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Em um estudo qualitativo sobre a qualidade de vida de estudantes de Medicina, na Universidade Federal de Santa Catarina, emergiu o tema "Estratégias de enfrentamento do estresse". O objetivo deste artigo é apresentar dados relativos a este tema, na perspectiva de melhorar a qualidade de vida do estudante de Medicina. Seguindo princípios da pesquisa qualitativa, o tema proposto é apresentado com base na análise dos dados empíricos, relativos a depoimentos selecionados do conjunto de dados dos 25 participantes do estudo e no diálogo com a literatura. Entre os que desenvolveram estratégias, as apontadas incluíam valorização dos relacionamentos interpessoais e de fenômenos do cotidiano, equilíbrio entre estudo e lazer, organização do tempo, cuidados com a saúde, alimentação e o sono, prática de atividade física, religiosidade, trabalhar a própria personalidade para lidar com situações adversas e procura por assistência psicológica. Sugere-se maior preocupação dos envolvidos na educação médica com a qualidade de vida do estudante de Medicina e o desenvolvimento de estratégias para promovê-la ou que preparem o estudante para lidar com o estresse durante a formação médica.