989 resultados para direito natural


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A Ni-B coating was prepared with EN using potassium borohydride reducing agent. The as-plated micro-structure of the coating was confirmed from XRD to be a mixture of amorphous and supersaturated solid solution. Three kinds of phase transformation were observed from the DSC curve. Different from the previous works, the formation of Ni4B3 and Ni2B was found during some transformation processes. The key factors which influence the variation of micro-hardness and micro-structure in deposits are the formation, the size and amount of Ni3B, Ni4B3 and Ni2B. Aging of the deposits treated under some heat treatment conditions occurred at room temperature. Changes of the micro-hardness indicated aging phenomena evidently. the natural aging phenomena are concerned with various kinds of decomposition of borides, especially with Ni4B3 phase. The extent of natural aging depends on the formation and the quantity of Ni(4)B3 and Ni2B.

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A full two-fluid model of reacting gas-particle flows and coal combustion is used to simulate coal combustion with and without inlet natural gas added in the inlet. The simulation results for the case without natural gas burning is in fair agreement with the experimental results reported in references. The simulation results of different natural gas adding positions indicate that the natural gas burning can form lean oxygen combustion enviroment at the combustor inlet region and the NOz concentration is reduced. The same result can be obtained from chemical equilibrium analysis.

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Chaotic phenomena in the wake of thermal convection flow fields above a heating flat plate were investigated experimentally. A newly developed electron beam fluorescence technique (EBF) was used to simultaneously measure density fluctuation at 7 points in a cross section above the plate. Correlation dimensions, intermittence coefficients, Fourier spectrum have been obtained for different Grashof numbers. Spatial distribution of correlation dimensions are presented. The experimental result shows that there is a certain relationship between the density fluctuation and the Gr number. And time-spacial characteristic of chaos evolution is also given.

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Este experimento se realizó en la Granja Experimental Porcina (G.E.P), Cofradía, Masaya, con 82 cerdas del cuarto parto, 30 servidas a través de inseminación artificial (I.A) y 52 cerdas por monta natural (M.N); iniciando en mayo de 1,995 hasta mayo de 1,996 con el objetivo de evaluar los parámetros reproductivos y económicos en ambos sistemas de monta. Los dos grupos de cerdas reproductoras estaban compuestos por las razas LANDRACE, YORKSHIRE y DUROC. Las variables evaluadas fueron: Tasa de concepción (T.C) y tasa de parición (T.P), números de crías por partos (N.C.P), peso vivo promedio del lechón en la camada al nacer (P.V.L.C), relación beneficio-costo (B-C). Los resultados finales comprobados al 5% de significancia estadísticas fueron: T.P en I.A con 56.66% menor que en M.N con 76.92%, en N.C.P para I.A con 7.06, menor que en M.N de 8.725, P.V.L.C en I.A de 1.85 kg, similar a 1.74 kg, en MN. Para la relación B-C en I.A fue de 0.53 córdobas y para M.N de 0.56 córdobas.

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El presente trabajo de tesis se realizó en la granja experimental porcina MAGFOR-Misión China de la república de Taiwán, ubicada en Cofradía. El estudio consistió en la evaluación de los parámetros reproductivos en grupos de cerdas obtenidos por inseminación artificial y grupos obtenidos a través de la monta natural, también se aborda el tema de la consanguinidad y sus consecuencias como un factor negativo en la fijación de caracteres indeseables, esto sucede en las poblaciones en las que existe una alta homocigosis debido al origen común del material genético (padres emparentados). Las variables evaluadas en el presente trabajo fueron: tamaño de la camada al nacimiento, peso promedio de los lechones al nacimiento, peso promedio de los lechones al destete e intervalo parto parto. para el análisis estadístico se elaboraron tablas de contingencias por cada una de las variables con base en los promedios. Para la variable tamaño de la camada al nacimiento se obtuvo para el tratamiento inseminación artificial un promedio de 9.16 lechones y para la monta natural un promedio de 9.89 lechones al contrastar las medias de los dos tratamientos se obtuvo un valor de t de 0.88 que comparado con el valor tabulado al 5% resulto no significativo al observar el comportamiento de las diferentes razas ,la yorkshire obtuvo los mayores promedios en inseminación el caso especifico de esta habían muy pocos ejemplares 6 . Se trabajo en condiciones normales de producción lo cual pudo influir en estos resultados debido al tamaiio de la muestra en esta raza. Los resultados para la variable peso promedio de los lechones al nacimiento, arrojaron un promedio de 1.76 Kg. para las camadas obtenidas por inseminación artificial y 1.67kg para las obtenidas por el método de monta natural en las observaciones de los promedios por razas, se obtuvo el mayor peso a favor de la raza Landrace con 1.99 Kg. seguido de la raza duroc con 1.85 Kg. en el tratamiento de inseminación artificial, y para la monta natural el menor peso lo obtuvo la raza duroc con 1.44 Kg. y elmayor peso fue también la raza Landrace. la raza Yorkshire mostró un comportamiento similar tanto en inseminacion artificial, como en monta natural. Para la variable peso promedio de los lechones al destete, se obtuvo un peso promedio de 7.39 Kg. para los lechones obtenidos por el método de inseminacion artificial y un peso promedio de 6.71 Kg. en el caso de lechones obtenidos por monta natural al evaluar las razas, la raza Landrace obtuvo el mayor peso al destete con 8.01 Kg. como era de esperar al obtener los mayores promedios en peso al nacimiento esto fue para las camadas obtenidas por inseminacion artificial. en el caso. de los lechones obtenidos mediante la monta natural el mayor peso correspondió a la raza Hampshire pudiendo haber influido el numero de lechones, ya que esta fue la que presento el menor numero la raza Yorkshire tuvo en este caso un comportamiento similar en los dos tratamientos. Para la variable intervalo parto-parto, en el caso de las cerdas servidas por el método de inseminacion artificial presentaron un IPP de 5.52 meses o sea 167 días y las cerdas servidas por monta natural obtuvieron un IPP de5.01 meses o 152 días. En la prueba de hipótesis tanto como el contraste de varianza, los resultados fueron significativos y una diferencia de 15 días vacíos en una hembra eleva los costos de producción de una manera considerable por esta razón un IPP como el de la inseminación artificial solo se justifica en la granja experimental porcina en un numero especifico de cerdas elite y como apoyo al mejoramiento genético del hato porcino de esta así como del hato nacional.

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Three-dimensional modeling results show that the appearance of the long laminar plasma jet is less influenced by natural convection even as it is issuing into ambient air horizontally. However, plasma parameter distributions may deviate from axi-symmetry

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El presente estudio se realizó en el ingenio Benjamín Zeledón con el objetivo de determinar los niveles de daño causados por Diatraea spp. y la incidencia del parasitismo natural para su control durante el periodo julio-diciembre de 1995. Evaluándose los parámetros: infestación, intensidad de infestación e índice de infestación, así como los niveles del parasitismo natural de Diatraea spp. en diversas variedades de caña en una área que representa el 16.30% del área total productiva del Ingenio. Determinándose una infestación promedio de 5.35%, una intensidad de infestación promedio de 14.39% y un índice de infestación promedio de 0.85, el cual es considerado internacionalmente como bajo. La variedades L 68-40, J 60-5, L 68-90 y la mezcla de diversas variedades fueron las más afectadas por Diatraea spp. Determinándose en estas variedades índices de infestación superiores al promedio general (0.85)y que corresponden a 1.26, 1.14, 1.13 y 1.09 respectivamente. Sin embargo, SP 70-4790, MEX. 53-4-73 y MEX. 68-P-23 fueron las variedades menos afectadas con 0.51, 0.23 y 0.24 de índice de infestación respectivamente. Por otro lado, se determinó un bajo nivel de parasitismo natural que se concentró sólo en el trimestre julio-septiembre con 19, 21 y 251% de parasitismo natural a partir de 58,19 y 4 larvas colectadas durante estos meses respectivamente. Identificándose a los parasitoides larvales: Billaea claripalpis Wulp, Cotesia flavipes Camerón y Apanteles diatraeae Muesebeck. Aunque no se pudo determinar la incidencia de los parasitoides ovifagos se determinó la presencia de Telenomus sp. y una especie de la familia Trichogrammatidae en los campos muestreados.

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Liquefied natural gas (LNG) is being developed as a transportation fuel for heavy vehicles such as trucks and transit buses, to lessen the dependency on oil and to reduce greenhouse gas emissions. The LNG stations are properly designed to prevent the venting of natural gas (NG) from LNG tanks, which can cause evaporative greenhouse gas emissions and result in fluctuations of fuel flow and changes of fuel composition. Boil-off is caused by the heat added into the LNG fuel during the storage and fueling. Heat can leak into the LNG fuel through the shell of tank during the storage and through hoses and dispensers during the fueling. Gas from tanks onboard vehicles, when returned to LNG tanks, can add additional heat into the LNG fuel. A thermodynamic and heat transfer model has been developed to analyze different mechanisms of heat leak into the LNG fuel. The evolving of properties and compositions of LNG fuel inside LNG tanks is simulated. The effect of a number of buses fueled each day on the possible total fuel loss rate has been analyzed. It is found that by increasing the number of buses, fueled each day, the total fuel loss rate can be reduced significantly. It is proposed that an electric generator be used to consume the boil-off gas or a liquefier be used to re-liquefy the boiloff gas to reduce the tank pressure and eliminate fuel losses. These approaches can prevent boil-off of natural gas emissions, and reduce the costs of LNG as transportation fuel.

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The natural ventilation of a well-mixed, pre-heated room with a point source of heating, and openings at the base and roof is investigated. The transient draining associated with the room being warmer than the exterior combined with the convective ow produced by the point source of heat leads to a fascinating series of transient ow regimes as the system evolves to the two-layer steady-state regime described by Linden, Lane-Ser_ and Smeed [1]. As the room begins to ventilate, a turbulent plume rises from the point source of heat to the ceiling, and typically forms a deepening layer of hot air. However, with a weak heat source, then at some point the ascending plume will intrude beneath the layer of original uid. Otherwise, the ascending plume always reaches the top of the room as the system evolves to a steady state. We develop a simpli_ed model of the transient evolution and test this with some new laboratory experiments. We conclude with a discussion of the implications of our results for real buildings.

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The refractive index and thickness of SiO2 thin films naturally grown on Si substrates were determined simultaneously within the wavelength range of 220-1100 nm with variable-angle spectroscopic ellipsometry. Different angles of incidence and wavelength ranges were chosen to enhance the analysis sensitivity for more accurate results. Several optical models describing the practical SiO2-Si system were investigated, and best results were obtained with the optical model, including an interface layer between SiO2 and Si, which proved the existence of the interface layer in this work as described in other publications.

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In winter, natural ventilation can be achieved either through mixing ventilation or upward displacement ventilation (P.F. Linden, The fluid mechanics of natural ventilation, Annual Review of Fluid Mechanics 31 (1999) pp. 201-238). We show there is a significant energy saving possible by using mixing ventilation, in the case that the internal heat gains are significant, and illustrate these savings using an idealized model, which predicts that with internal heat gains of order 0.1 kW per person, mixing ventilation uses of a fraction of order 0.2-0.4 of the heat load of displacement ventilation assuming a well-insulated building. We then describe a strategy for such mixing natural ventilation in an atrium style building in which the rooms surrounding the atrium are able to vent directly to the exterior and also through the atrium to the exterior. The results are motivated by the desire to reduce the energy burden in large public buildings such as hospitals, schools or office buildings centred on atria. We illustrate a strategy for the natural mixing ventilation in order that the rooms surrounding the atrium receive both pre-heated but also sufficiently fresh air, while the central atrium zone remains warm. We test the principles with some laboratory experiments in which a model air chamber is ventilated using both mixing and displacement ventilation, and compare the energy loads in each case. We conclude with a discussion of the potential applications of the approach within the context of open plan atria type office buildings.

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We investigate the steady state natural ventilation of an enclosed space in which vent A, located at height hA above the floor, is connected to a vertical stack with a termination at height H, while the second vent, B, at height hB above the floor, connects directly to the exterior. We first examine the flow regimes which develop with a distributed source of heating at the base of the space. If hBhB>hA, then two different flow regimes may develop. Either (i) there is inflow through vent B and outflow through vent A, or (ii) the flow reverses, with inflow down the stack into vent A and outflow through vent B. With inflow through vent A, the internal temperature and ventilation rate depend on the relative height of the two vents, A and B, while with inflow through vent B, they depend on the height of vent B relative to the height of the termination of the stack H. With a point source of heating, a similar transition occurs, with a unique flow regime when vent B is lower than vent A, and two possible regimes with vent B higher than vent A. In general, with a point source of buoyancy, each steady state is characterised by a two-layer density stratification. Depending on the relative heights of the two vents, in the case of outflow through vent A connected to the stack, the interface between these layers may lie above, at the same level as or below vent A, leading to discharge of either pure upper layer, a mixture of upper and lower layer, or pure lower layer fluid. In the case of inflow through vent A connected to the stack, the interface always lies below the outflow vent B. Also, in this case, if the inflow vent A lies above the interface, then the lower layer becomes of intermediate density between the upper layer and the external fluid, whereas if the interface lies above the inflow vent A, then the lower layer is composed purely of external fluid. We develop expressions to predict the transitions between these flow regimes, in terms of the heights and areas of the two vents and the stack, and we successfully test these with new laboratory experiments. We conclude with a discussion of the implications of our results for real buildings.

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We report on an experimental and theoretical study of the transient flows which develop as a naturally ventilated room adjusts from one temperature to another. We focus on a room heated from below by a uniform heat source, with both high- and low-level ventilation openings. Depending on the initial temperature of the room relative to (i) the final equilibrium temperature and (ii) the exterior temperature, three different modes of ventilation may develop. First, if the room temperature lies between the exterior and the equilibrium temperature, the interior remains well-mixed and gradually heats up to the equilibrium temperature. Secondly, if the room is initially warmer than the equilibrium temperature, then a thermal stratification develops in which the upper layer of originally hot air is displaced upwards by a lower layer of relatively cool inflowing air. At the interface, some mixing occurs owing to the effects of penetrative convection. Thirdly, if the room is initially cooler than the exterior, then on opening the vents, the original air is displaced downwards and a layer of ambient air deepens from above. As this lower layer drains, it is eventually heated to the ambient temperature, and is then able to mix into the overlying layer of external air, and the room becomes well-mixed. For each case, we present new laboratory experiments and compare these with some new quantitative models of the transient flows. We conclude by considering the implications of our work for natural ventilation of large auditoria.