File Name: lateral and vertical bubble coalescence .zip
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- Nature of meniscus for liquid of 0^(@) angle of contact
- Recent International Journal of Multiphase Flow Articles
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- Visualization Experiment of Bubble Coalescence in a Narrow Vertical Rectangular Channel
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Nature of meniscus for liquid of 0^(@) angle of contact
A glacier forms where the accumulation of snow exceeds its ablation over many years, often centuries. Glaciers slowly deform and flow under stresses induced by their weight, creating crevasses , seracs , and other distinguishing features. They also abrade rock and debris from their substrate to create landforms such as cirques , moraines , or fjords. Glaciers form only on land and are distinct from the much thinner sea ice and lake ice that forms on the surface of bodies of water. Greenland and Patagonia also have huge expanses of continental glaciers. Glacial ice is the largest reservoir of fresh water on Earth.
Visualization experiments were carried out and sliding bubble coalescence behaviors were observed for subcooled flow boiling in a narrow rectangular channel. The results show that the consecutive coalescence process is composed of four steps based on the bubble morphological change: approaching, merging, adjustment, and stabilization, in which the more important are the merging and adjustment of the bubble. Bubble always slides along the heating surface and does not lift off in coalescence process. Bubble diameter and sliding velocity increase first, then decrease and finally stabilize. Bubble shape also oscillates from an irregular ellipse to a stable circle.
Recent International Journal of Multiphase Flow Articles
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PDF | Visualization experiments were carried out and sliding bubble coalescence the heating surface; (3) horizontal bubble coalescence near the heating surface. into three types including vertical coalescence, horizontal.
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Ekambara, ekambara gmail. Ekambara et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Modelling of gas-liquid bubbly flows is achieved by coupling a population balance equation with the three-dimensional, two-fluid, hydrodynamic model. For gas-liquid bubbly flows, an average bubble number density transport equation has been incorporated in the CFD code CFX 5.
Katz, J. ASME Press,
Visualization Experiment of Bubble Coalescence in a Narrow Vertical Rectangular Channel
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