5,400 research outputs found

    An experimental study of plane mixing layer development

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    Mean flow and turbulence was measured in the near field of two plane mixing layers in air with a maximum velocity of 21 m/sec. The experimental rig enabled mixing layers of velocity ratios 0 and 0.46 to be generated simultaneously. Gases with both tripped and untripped initial boundary layers were studied. It was found that the two stream layer developed to the self preserving state in a distance much shorter than did the single stream layer which followed accepted criteria for the development distance. The asymptotic levels of the turbulence quantities in the two stream layer and the development of the single stream layer showed agreement with existing data. It is suggested that the two stream mixing layer should provide a better test case for the development of turbulence models and calculation methods than the single stream mixing layer

    Improved Skin Friction Interferometer

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    An improved system for measuring aerodynamic skin friction which uses a dual-laser-beam oil-film interferometer was developed. Improvements in the optical hardware provided equal signal characteristics for each beam and reduced the cost and complexity of the system by replacing polarization rotation by a mirrored prism for separation of the two signals. An automated, objective, data-reduction procedure was implemented to eliminate tedious manual manipulation of the interferometry data records. The present system was intended for use in two-dimensional, incompressible flows over a smooth, level surface without pressure gradient, but the improvements discussed are not limited to this application

    Double-branched vortex generator

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    In order to assess the suitability of using a double branched vortex generator in parametric studies involving vortex interactions, an experimental study of the main vortex and secondary flows produced by a double branched vortex generator was conducted in a 20-by-40 cm indraft wind tunnel. Measurements of the cross flow velocities were made with a five hole pressure probe from which vorticity contours and vortex parameters were derived. The results showed that the optimum configuration consisted of chord extensions with the absence of a centerbody

    Möglichkeiten der Optimierung der Wirtschaftsdüngung zu Winterweizen durch Berücksichtigung bodentypischer Gegebenheiten

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    In organic farming, N supply to non-legumes often does not meet the N-demand of the respective crops, which then results in low yields and unsatisfactory product quality. The present study analysed the potential of a site specific application of organic ferti-lizers to improve N-efficiency of organic winter wheat production. Under a constant management, strong yield variations were caused by different soil types. On average of two experimental years (2005/06), liquid manure application of 135 kg N ha-1 in-creased the crop yields by 50%.The crude protein content was significantly improved as well. Interactions of soil type and fertilisation on yield and quality parameters were absent, except for a significantly higher utilisation of N from liquid manure on soils with a higher water storage capacity under dry conditions of the growing period 2006
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