985 resultados para pre-filtration vertical columns


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A mathematical model for the rain infiltration in the rock-soil slop has been established and solved by using the finite element method. The unsteady water infiltrating process has been simulated to get water content both in the homogeneous and heterogeneous media. The simulated results show that the rock blocks in the rock-soil slop can cause the wetting front moving fast. If the rain intensity is increased, the saturated region will be formed quickly while other conditions are the same. If the rain intensity keeps a constant, it is possible to accelerate the generation of the saturated region by properly increasing the vertical filtration rate of the rock-soil slop. However, if the vertical filtration rate is so far greater than the rain intensity, it will be difficult to form the saturated region in the rock-soil slop. The numerical method was verified by comparing the calculation results with the field test data.

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Singular perturbation theory of two-time scale expansions was developed both in inviscid and weak viscous fluids to investigate the motion of single surface standing wave in a liquid-filled circular cylindrical vessel, which is subject to a vertical periodical oscillation. Firstly, it is assumed that the fluid in the circular cylindrical vessel is inviscid, incompressible and the motion is irrotational, a nonlinear evolution equation of slowly varying complex amplitude, which incorporates cubic nonlinear term, external excitation and the influence of surface tension, was derived from solvability condition of high-order approximation. It shows that when forced frequency is low, the effect of surface tension on mode selection of surface wave is not important. However, when forced frequency is high, the influence of surface tension is significant, and can not be neglected. This proved that the surface tension has the function, which causes free surface returning to equilibrium location. Theoretical results much close to experimental results when the surface tension is considered. In fact, the damping will appear in actual physical system due to dissipation of viscosity of fluid. Based upon weakly viscous fluids assumption, the fluid field was divided into an outer potential flow region and an inner boundary layer region. A linear amplitude equation of slowly varying complex amplitude, which incorporates damping term and external excitation, was derived from linearized Navier-Stokes equation. The analytical expression of damping coefficient was determined and the relation between damping and other related parameters (such as viscosity, forced amplitude and depth of fluid) was presented. The nonlinear amplitude equation and a dispersion, which had been derived from the inviscid fluid approximation, were modified by adding linear damping. It was found that the modified results much reasonably close to experimental results. Moreover, the influence both of the surface tension and the weak viscosity on the mode formation was described by comparing theoretical and experimental results. The results show that when the forcing frequency is low, the viscosity of the fluid is prominent for the mode selection. However, when the forcing frequency is high, the surface tension of the fluid is prominent. Finally, instability of the surface wave is analyzed and properties of the solutions of the modified amplitude equation are determined together with phase-plane trajectories. A necessary condition of forming stable surface wave is obtained and unstable regions are illustrated. (c) 2005 Elsevier SAS. All rights reserved.

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We report a detailed study of surface-bound chemical vapor deposition of carbon nanotubes and nanofibers from evaporated transition metal catalysts exposed to ammonia diluted acetylene. We show that a reduction of the Fe/Co catalyst film thickness below 3 nm results into a transition from large diameter (> 40 nm), bamboo-like nanofibers to small diameter (similar to 5 nm) multi-walled carbon nanotubes. The nanostructuring of ultrathin catalyst films critically depends on the gas atmosphere, with the resulting island distribution initiating the carbon nucleation. Compared to purely thermal chemical vapor deposition, we find that, for small diameter nanotube growth, DC plasma assistance is detrimental to graphitization and sample homogeneity and cannot prevent an early catalyst poisoning. (c) 2006 Elsevier B.V. All rights reserved.

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En el presente trabajo se evaluó EX-ante la factibilidad técnica y financiera de una propuesta de desarrollo ganadero para la finca "El Garabato" planteada por los socios de la Cooperativa Ezequiel N24 en el Municipio de Tola, Departamento de Rivas. Para ello se realizó un diagnóstico general de la finca, donde se determinó los recursos disponibles y las características propias del sistema productivo, basados en esto se estimaron los diferentes coeficientes técnicos así como las posibles fuentes de ingresos y egresos, permitiendo realizar las proyecciones del hato así como las proyecciones financieras, Dentro de los aspectos técnicos se determinó la composición de las pasturas donde el 69% de los pastos son naturalizados, el 23% son pastos mejorados y el 8% está conformado por pastos naturales. Los canales de comercialización en la zona del proyecto para la leche están representados por los manteros, el Proyecto Juan Agustín Guillén de la Tienda Campesina y el Centro de Acopio de La Selecta. En el caso de la carne por los intermediarios (matarifes) y productores dedicados a la crianza y engorde de novillos. Al considerar las inversiones en pastura que conlleva la propuesta, la distribución de pastos varia, ocupando los pastos mejorados el 41%, el 3% por pastos naturales y el 56% corresponden a pastos naturalizados. A la par de esto el área ganadera se incrementa en 64 mz. como consecuencia de la reducción del área agricola por la misma cantidad de mz. Las disponibilidades de pastos se ven mejoradas por las inversiones, disminuyendo el déficit de alimento a partir del segundo año. El uso de la Caña de Azúcar más urea, durante el verano permitirá mejorar la oferta de alimento para esta época, resultando menores pérdidas en la producción. Como efecto de la propuesta se producirá un incremento promedio anual de 7.18% del hato total, este incremento se da esperando que los índices de mortalidad de adultos y terneros disminuyan de un 4 al. 2% y de 14 al 7% respectivamente y que la tasa de descarte de vacas se mantenga en 12%1 considerando que la finca mantenga un 67% en tasa de natalidad. Al estructurar los gastos se encontró que en el año base los gastos de mano de obra representan el 71%, la suplementación el 8%, los gastos en manejo fueron de 8%, impuestos 7%, mantenimiento de equipo e infraestructura de 4% y gastos varios de 1%, con el proyecto esta estructura de gastos se ve un poco alterada al disminuir los gastos por mano de obra a un 63% e incrementarse los gastos por suplementacion y gastos varios a 12% y 6% respectivamente, el resto de los gastos presentan leves modificaciones. En los ingresos del año base la producción de leche representa el 46%, la producción de carne el 53% y el 1% corresponde a otros ingresos. Con el proyecto el aporte en los ingresos por producción de leche asciende a 62% y en producción de carne es de 34%, en otros ingresos representa el 4% al finalizar el sexto año. De las inversiones que se realizaran el 60% ésta destinado para pastos y el 40% corresponde a inversiones en infraestructura. El monto total de la inversión asciende a C$96,905.70 de los cuales el 71% será solicitado en préstamo y el restante 29% será asumido por la Cooperativa. Del análisis financiero resultó que la propuesta de los socios con uso de financiamiento para las inversiones a una tasa de interés del 12.5% presenta un VAN de C$41996.65 y una TIR de 15.16%. En cambió la realización de la propuesta con recursos propios presentó resultados superiores al anterior siendo el VAN de C$18,506.01 y una TIR de 18.01%•. Considerando estos resultados la propuesta es rentable, pero debido al déficit de efectivo que se presenta en los primeros años podría alterar la realización de las inversiones, ésta situación puede compensarse haciendo uso de otros recursos de la Cooperativa.

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The frequency characteristics of a VCSEL with a quarter-wave plate (QWP) and an external reflector are investigated with the translation matrix of the vectorial field. Two series of eigenmode with a shift of half the free spectrum range are linearly polarized, respectively, along the neutral axes of QWP. We also numerically explore the polarization self-modulation phenomenon by using a vectorial laser equation and considering the inhomogeneous broadening of the gain medium. If the external cavity is so short that the shift is bigger than the homogeneous broadening, two stable longitudinal modes oscillate, respectively, on the neutral axes of QWP because they consume different carriers. With a long external cavity, the competition of the modes for the common carriers causes the intensity fluctuation of the modes with a period of one round-trip time of the external cavity.

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Con el objetivo de caracterizar la curva de lactancia y evaluar el comportamiento reproductivo se analizaron los registros mensuales (N=10) de vaquillas Holstein bajo la implementación y falta de implementación de medidas de manejo pre-parto en la Empresa Agropecuaria “San Ignacio” Mateare, Nicaragua. Para caracterizar la curva de lactancia, se utilizó el modelo de Wood (1967) de forma linealizada Ln Yx = Lna + b Lnx - ex , donde Yx es la producción diaria en el período x, a representa la producción inicial, b el ascenso al pico, c el descenso de producción, a partir del mismo se generaron la Persistencia (S), Rendimiento al pico (RP), Tiempo al pico (TP), también se evaluó el Intervalo parto - concepción (IPC) y el Número de servicios por concepción (NSPC) . Al presentar problemas reproductivos la proporción de curvas atípicas encontradas en este Trabajo fue de 40%. Al analizar la curva de lactancia del grupo experimental se observa un a= 11.00212 kg, b = 0.083528 kg, e = 0.00407148 kg, RP = 12.790 kg, TP = 29.54 días, S = 6.126. El grupo testigo presenta un a = 6.4384 kg, b = 0.193048 kg, e = 0.00466974 kg, RP = 9.49 kg, TP = 34.32 días, S = 6.421. En el análisis de varianza se encontró que el RP tiene diferencia significativa entre los tratamientos a un nivel de significancia (P<0.05). Los parámetros reproductivos IPC y NSPC para el grupo experimental fueron de 243.6 días y 3 servicios respectivamente, el grupo testigo presentó un IPC = 221.8 días y NSPC = 3.6 servicios .

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The characterization of air-water two-phase vertical flow in a 12 m flow loop with 1.5 m of vertical section is studied by using electrical resistance tomography (ERT). By applying a fast data collection to a dual-plane ERT sensor and an iterative image reconstruction algorithm, relevant information is gathered for implementation of flow characteristics, particularly for flow regime recognition. A cross-correlation method is also used to interpret the velocity distribution of the gas phase on the cross section. The paper demonstrates that ERT can now be deployed routinely for velocity measurements and this capability will increase as faster measurement systems evolve.

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In order to investigate the influence of the vertical vibration loading on the liquefaction of saturated sand, one dimensional model for the saturated sand with a vertical vibration is presented based on the two phase continuous media theory. The development of the liquefaction and the liquefaction region are analyzed. It is shown that the vertical vibration loading could induce liquefaction. The rate of the liquefaction increases with the increase of the initial limit strain or initial porosity or amplitude and frequency of loading, and increases with the decrease of the permeability or initial modulus. It is shown also that there is a phase lag in the sand column. When the sand permeability distribution is non-uniform, the pore pressure and the strain will rise sharply where the permeability is the smallest, and fracture might be induced. With the development of liquefaction, the strength of the soil foundation becomes smaller and smaller. In the limiting case, landslides or debris flows could occur.

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This paper studies the effect of fissure water pressure in different fractures on the critical angle of landslide by laboratory investigation and numerical simulation in order to understand the mechanisms of fissure water pressure on landslide stability. Laboratory observations show that the effect of fissure water pressure on the critical angle of landslide is little when the distance between water-holding fracture and slope toe is three times greater than the depth of fissure water. These experimental results are also simulated by a three-dimensional face-to-face contact discrete element method. This method has included the fissure water pressure and can accurately calculate the critical angle of jointed slope when fissure water pressure in vertical sliding surface exists. Numerical results are in good agreement with experimental observations. It is revealed that the location of water-holding structural surface is important to landslide stability. The ratio of the distance between water-holding fissure and slope toe to the depth of fissure water is a key parameter to justify the effect of fissure water pressure on the critical angle of landslide.

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Coupled-cavity passive harmonic mode-locking of a quantum well based vertical-external-cavity surface-emitting laser has been demonstrated, yielding an output pulse train of 1.5 ps pulses at a repetition rate of 80 GHz and with an average power of 80 mW. Harmonic mode-locking results from coupling between the main laser cavity and a cavity formed within the substrate of the saturable absorber structure. Mode-locking on the second harmonic of the substrate cavity allows a train of 1.1 ps pulses to be generated at a repetition rate of 147 GHz with 40 mW average power. © 2010 American Institute of Physics.

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It has been reported recently that single carbon nanotubes were attached to AFM tips to act as nanotweezers. In order to investigate its stability, a vertical single-walled carbon nanotube (SWCNT) under its own weight is studied in this paper. The lower end of the carbon nanotube is clamped. Firstly the governing dimensionless numbers are derived by dimensional analysis. Then the theoretical analysis based on an elastic column model is carried out. Two ratios, I.e., the ratio of half wall thickness to radius (t=R) and the ratio of gravity to elastic resilience ($\rho$gR=E), and their influences on the ratio of critical length to radius are discussed. It is found that the relationship between the critical ratio of altitude to radius and ratio of half thickness to radius is approximately linear. As the dimensionless number $\rho$gR=E increases, the compressive force per unit length (weight) becomes larger, thus critical ratio of altitude to radius must become smaller to maintain stability. At last the critical length of SWCNT is calculated. The results of this paper will be helpful for the stability design of nanotweezers-like nanostructures.

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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.