The reason for including this type of whistle is that we tend to think that it is necessary for a forced jet flow to encounter a solid material to create a whistle.
12.
An additional fence has been added recently behind runway 10, in order to prevent people from hanging onto the main fence surrounding the runway to experience being blasted by the jet flow.
13.
The first was a problem with air circulating around the wing when operating at low speeds close to the ground, which had a serious effect on the spreading of the jet flow though the nozzle.
14.
The northern hemisphere polar jet flows over the middle to northern latitudes of North America, Europe, and Asia and their intervening oceans, while the southern hemisphere polar jet mostly circles Antarctica all year round.
15.
During night time, the Bodele Low Level Jet flows over a near-surface inversion but quickly mixes down to the surface a few hours after sunrise once the intense surface heating induces turbulence in the lowest layers.
16.
Langley was particularly interested in the effectiveness of the D-shaped nozzle that directed the jet flow over the upper surface of the wing, as well as the resulting sound levels, at that time a major focus of NASA's civilian aerodynamics research.
17.
This observation is true not only for forced boundary layer flow, as shown in Ref . 11, but for wall jet flows and free-jet flows encountered in natural convection phenomena, as well as for jet and wake flows ( Table 6.1 ).
18.
This observation is true not only for forced boundary layer flow, as shown in Ref . 11, but for wall jet flows and free-jet flows encountered in natural convection phenomena, as well as for jet and wake flows ( Table 6.1 ).
19.
Simple models of organ pipe resonance is based on open-open pipe resonance ( " ? " = ) but corrections must be made to take into account that one end of the pipe radiates into the surrounding medium and the other radiates through a slit with a jet flow.
20.
Any laminar flows is characterized by a critical number that serves as a limit line for the transition of flow from laminar to turbulent . for example flows like Free-jet flow ( axisymmetric ) is limited to stay laminar by Re < 10 30, where Re is based on nozzle diameter and mean velocity through the nozzle Natural convection boundary layer flow on Isothermal wall is limited by conditions Gr < 1.5 ?109 ( Pr = 0.71 ) and Gr < 1.3 ?109 ( Pr = 6.7 ) where The Grashof number Gr is based on wall height and wall ambient temperature difference.
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