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A Method for Computing Unsteady Flows in Porous Media (Chapman & Hall/CRC Research Notes in Mathematics Series), by R Raghavan, E Ozkan
PDF Download A Method for Computing Unsteady Flows in Porous Media (Chapman & Hall/CRC Research Notes in Mathematics Series), by R Raghavan, E Ozkan
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Self-contained and concise, this Research Note provides a basis to study unsteady flow in saturated porous media. It provides for the development of algorithms that examine three-dimensional flows subject to complicated boundary conditions that are a natural consequence of flow in geological systems. A new way to understand the flow in porous media is presented. The authors pay attention to computational considerations, and options for developing codes are addressed. The note consists of five chapters: the first is introductory; the second and third are devoted to showing how one arrives at the solutions of interest; the fourth chapter presents various reformulations to aid computations and presents a few illustrative examples; the fifth chapter is a natural progression of the first four chapters to more complicated visualizations of flow in porous media.
- Sales Rank: #4631091 in Books
- Brand: Brand: Chapman and Hall/CRC
- Published on: 1995-05-15
- Released on: 1995-05-15
- Original language: English
- Number of items: 1
- Dimensions: 10.00" h x .31" w x 7.00" l, .50 pounds
- Binding: Paperback
- 136 pages
- Used Book in Good Condition
Most helpful customer reviews
0 of 0 people found the following review helpful.
an appendix to c&j (Carslaw and Jaeger)
By Amazon Customer
in reallity a monograph for the applied mathematicians - contains a paucity of practical content or results. however, for the afficiandos of the heat conduction equation an extension of good old c&j ! the confusing part is the insistence on providing results of initial value problems in Laplace space without numerical results in real space and time - the Stehfest inversion is not available to everyone to this day. a possibly important point is the adoption of an incomplete pde for three-dimensional problems where significant vertical flows are guaranteed.
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