A Gallery of Fluid Motion by M. Samimy, K. S. Breuer, L. G. Leal, P. H. Steen

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By M. Samimy, K. S. Breuer, L. G. Leal, P. H. Steen

The visualization of fluid stream has performed an incredible function within the improvement of fluid dynamics and its purposes, from the evolution of flight to monitoring climate, and figuring out the movement of blood. The Fluid Dynamics department of the yankee actual Society sponsors an annual festival for amazing photos of fluid circulate. This quantity features a collection of winners from 1985 to the current. each one photo is observed via a few explanatory textual content, making the quantity a tremendous acquisition for a person enthusiastic about fluid circulation study.

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The sheet flapping caused by the Kelvin–Helmholtz instability is clearly visible, although the ligament formation caused by the streamwise vorticity cannot be discerned in this view. The image is presented upside down because of its curious resemblance to a night landscape. Keywords liquid sheet disintegration; Kelvin–Helmholtz instability. July 1994. A Gallery of Fluid Motion, ed. M. Samimy et al. Published by Cambridge University Press. © Cambridge University Press, 2003. Drops and bubbles Figure 1 Formation of a net-negative charged liquid spray Dimitris E.

3. 1 Aircraft altitude was about 122 m (400 ft) above the lake, and the weight was approximately 8400 kg. As the trailing vortices descended over the fog layer due to the downwash, the flow field in the wake was made visible by the distortion of the fog layer. The photo was taken by P. Bowen for the Cessna Aircraft Company from the tail gunner’s position in a B-25 flying in formation slightly above and ahead of the Cessna. The aircraft is seen initiating a gentle climb after a level flight, leaving a portion of the fog layer yet unaffected.

Keywords capillary wave; inertial oscillations; capillary lengthscale. A Gallery of Fluid Motion, ed. M. Samimy et al. Published by Cambridge University Press. © Cambridge University Press, 2003. 52 A Gallery of Fluid Motion Figure 1 Figure 3 Figure 2 Interactions between bubbles at low Reynolds numbers Michael Manga and H. A. Stone Harvard University In Fig. 1 we show a sequence of photographs of a large air bubble following a small air bubble in a large container of corn syrup. For this axisymmetric configuration, the small bubble spreads over the surface of the larger bubble.

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