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Titlebook: Computational Techniques for Fluid Dynamics 1; Fundamental and Gene Clive A. J. Fletcher Textbook 19881st edition Springer-Verlag Berlin He

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Conference proceedings 1987Latest editionher in Sect. 4.4. However for a given required solution accuracy it may be more economical to solve a higher-order finite difference scheme on a coarse grid than a low-order scheme on a finer grid. This leads to the concept of computational efficiency which is examined in Sect. 4.5.
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Theoretical Background,her in Sect. 4.4. However for a given required solution accuracy it may be more economical to solve a higher-order finite difference scheme on a coarse grid than a low-order scheme on a finer grid. This leads to the concept of computational efficiency which is examined in Sect. 4.5.
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Potential Carcinogenic Risks of Aspartame,In this chapter, procedures will be developed for classifying partial differential equations as elliptic, parabolic or hyperbolic. The different types of partial differential equations will be examined from both a mathematical and a physical viewpoint to indicate their key features and the flow categories for which they occur.
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Gary K. Beauchamp,Beverly J. CowartA broad conclusion from Chap. 7 is that implicit schemes are more effective than explicit schemes for problems with significant dissipation, as exemplified by the one-dimensional diffusion equation.
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Steady Problems,Many of the examples considered in Chaps. 3–5 have included time as an independent variable and the construction of the algorithms has taken this into account. However many problems in fluid dynamics are inherently steady, and the governing equations are often elliptic in character (Sect. 2.4).
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Multidimensional Diffusion Equation,A broad conclusion from Chap. 7 is that implicit schemes are more effective than explicit schemes for problems with significant dissipation, as exemplified by the one-dimensional diffusion equation.
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Varsha Sharma,Akshay Katiyar,R. C. Agrawaltions are described to indicate what CFD is capable of. The typical structure of the equations governing fluid dynamics is highlighted and the way in which these equations are converted into computer-executable algorithms is illustrated. Finally attention is drawn to some of the important sources of further information.
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