Journal of Chemical Technology and Applications

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Journal of Chemical Technology and Applications 44 7897 074717

Horseshoe Vortex High Impact Factor Articles

Time-mean end wall heat transfer and flow-field data in the end wall part are presented for a turbulent juncture flow defined with the asymmetric bluff body. The experimental method employed allowed the coincidental signal of instantaneous particle picture velocimetry flow field data and thermochromic liquid-crystal-based end wall heat transfer data. The time-mean rate of the flow field on the symmetry plane is characterized by the presence of primary, secondary, tertiary, and corner vortices. On the correspondence plane, the time-mean horseshoe vortex shows a bimodal vorticity dispersion and a stable-focus streamline topology indicative of vortex stretching. Off the proportion plane, the horseshoe vortex grows in scale, and ultimately experiences a bursting, or breakdown, upon experiencing an adverse pressure gradient.

 

 

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