At a level comprehensible to graduate students and beginning researchers, describes the state of the art in using numerical methods for analyzing turbulence in fluids, a problem still unsolved after centuries of research. The methods described include wavelet-based, semi-Lagrangian, Langrangian multi-pole, continuous adaptation of curvilinear grids, finite volume, and shock-capturing. Among the applications are industrial flows, aerodynamics, two-phase flows, astrophysical flows, and meteorology. Suitable as a course text for graduate students with a background in fluid mechanics. No index. Annotation c. by Book News, Inc., Portland, Or.
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Paperback. Zustand: New. After centuries of research, turbulence in fluids is still an unsolved problem. The graduate-level lectures in this volume cover the state of the art of numerical methods for fluid mechanics. The research in this collection covers wavelet-based methods, the semi-Lagrangian method, the Lagrangian multi-pole method, continuous adaptation of curvilinear grids, finite volume methods, shock-capturing methods, and ENO schemes. The most recent research on large eddy simulations and Reynolds stress modeling is presented in a way that is accessible to engineers, postdoctoral researchers, and graduate students. Applications cover industrial flows, aerodynamics, two-phase flows, astrophysical flows, and meteorology. This volume would be suitable as a textbook for graduate students with a background in fluid mechanics. Bestandsnummer des Verkäufers LU-9780821808139
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Zustand: New. After centuries of research, turbulence in fluids is still an unsolved problem. This title presents graduate-level lectures that cover developments in numerical methods for fluid mechanics. It addresses wavelet-based methods, the semi-Lagrangian method, the Lagrangian multi-pole method, continuous adaptation of curvilinear grids, and ENO schemes. Editor(s): Vincent, Alain. Series: CRM Proceedings & Lecture Notes. Num Pages: 214 pages, halftones, mathematical examples. BIC Classification: PBH; PHDF; PHDS. Category: (P) Professional & Vocational. Dimension: 252 x 176. Weight in Grams: 377. . 1998. Paperback. . . . . Bestandsnummer des Verkäufers V9780821808139
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Zustand: New. After centuries of research, turbulence in fluids is still an unsolved problem. This title presents graduate-level lectures that cover developments in numerical methods for fluid mechanics. It addresses wavelet-based methods, the semi-Lagrangian method, the Lagrangian multi-pole method, continuous adaptation of curvilinear grids, and ENO schemes. Editor(s): Vincent, Alain. Series: CRM Proceedings & Lecture Notes. Num Pages: 214 pages, halftones, mathematical examples. BIC Classification: PBH; PHDF; PHDS. Category: (P) Professional & Vocational. Dimension: 252 x 176. Weight in Grams: 377. . 1998. Paperback. . . . . Books ship from the US and Ireland. Bestandsnummer des Verkäufers V9780821808139
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Paperback. Zustand: New. After centuries of research, turbulence in fluids is still an unsolved problem. The graduate-level lectures in this volume cover the state of the art of numerical methods for fluid mechanics. The research in this collection covers wavelet-based methods, the semi-Lagrangian method, the Lagrangian multi-pole method, continuous adaptation of curvilinear grids, finite volume methods, shock-capturing methods, and ENO schemes. The most recent research on large eddy simulations and Reynolds stress modeling is presented in a way that is accessible to engineers, postdoctoral researchers, and graduate students. Applications cover industrial flows, aerodynamics, two-phase flows, astrophysical flows, and meteorology. This volume would be suitable as a textbook for graduate students with a background in fluid mechanics. Bestandsnummer des Verkäufers LU-9780821808139
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