Novel porous media formulation for multiphase flow conservation equations
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Author
Publication
2011 - Cambridge University Press, New York, New York (State)
Language
English
Word Count
53,500 words, Guess
Page Count
214 pages
Identifiers
- Internet Archivenovelporousmedia00shaw
- Internet Archivenovelporousmedia00shaw_307
- ISBN-101107012953
- ISBN-139781107012950
- Library of Congress Control Number2011009810
and 3 more
- OCLC Control Number711988985
- Better World Books9781107012950
- Open LibraryOL25101387M
Classifications
- DDC532/.56
- LCCTA357.5.M84 S52 2011
Description
"This book introduces the novel porous media formulation for multiphase flow conservation equations, a new, flexible, and unified approach to solve real-world engineering problems"-- "William T. Sha first proposed the novel porous media formulation in an article in Nuclear Engineering and Design in 1980. The novel porous media formulation represented a new, flexible, and unified approach to solve real-world engineering problems. The novel porous media formulation uses the concept of volume porosity, directional surface porosities, distributed resistance, and distributed heat source and sink. Most practical engineering problems involve many complex shapes and sizes of solid internal structures whose distributed resistance is impossible to quantify accurately. The concept of directional surface porosities eliminates the sole reliance on empirical estimation of the distributed resistance of complex-shaped structures often involved in the analysis. The directional surface porosities thus greatly improve the resolution and modeling accuracy and facilitate mock-ups of numerical simulation models of real engineering systems. Both the continuum and conventional porous media formulations are subsets of the novel porous media formulation. Moreover, fluid-structure interactions are explicitly accounted for in this formulation"--
Subjects
Other Editions
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