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Exact(9)
The orifice shape has a moderate effect on the convective heat transfer.
Additionally, the orifice shape plays an important role in obtaining the spray angle.
The secondary air's mixing performance is influenced by the jet configuration, including the orifice shape, size, and interval.
Particular attentions are paid to present the detailed local and laterally-averaged heat transfer comparison between synthetic jet and continuous jet, as well as the effect of orifice shape on the synthetic jet impingement.
A reliable test rig has been designed and constructed to investigate the effect of geometrical parameters i.e. diameter and length of main tube, diameter of outlet orifice, shape of entrance nozzle.
Two kinds of heat transfer regimes are observed and a critical ratio of stroke length to jet-to-surface spacing is identified as 18 approximately regardless of orifice shape.
Similar(51)
Beyond z/d > 2, the effect of orifice cavity shape is negligible.
Emphasis is placed on the effect of the orifice edge shape.
Experimental study was conducted to investigate the effect of orifice cavity shape on resonance frequency and heat transfer characteristics of synthetic jets.
With selection of proper orifice cavity shape the drawback of poor performance of synthetic jet at lower jet-to-surface spacings can be overcome.
The application of optimum orifice cavity shape can overcome the limitation of degradation of performance of synthetic jet at lower jet-to-surface spacings.
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