Modeling and Analysis of Modern Fluid Problems

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  • Author : Liancun Zheng
  • Publisher : Academic Press
  • Pages : 470 pages
  • ISBN : 9780128117538
  • Rating : /5 from reviews
CLICK HERE TO GET THIS BOOK >>>Modeling and Analysis of Modern Fluid Problems

Download or Read online Modeling and Analysis of Modern Fluid Problems full in PDF, ePub and kindle. this book written by Liancun Zheng and published by Academic Press which was released on 01 June 2017 with total page 470 pages. We cannot guarantee that Modeling and Analysis of Modern Fluid Problems book is available in the library, click Get Book button and read full online book in your kindle, tablet, IPAD, PC or mobile whenever and wherever You Like. Modeling and Analysis of Modern Fluids helps researchers solve physical problems observed in fluid dynamics and related fields, such as heat and mass transfer, boundary layer phenomena, and numerical heat transfer. These problems are characterized by nonlinearity and large system dimensionality, and 'exact' solutions are impossible to provide using the conventional mixture of theoretical and analytical analysis with purely numerical methods. To solve these complex problems, this work provides a toolkit of established and novel methods drawn from the literature across nonlinear approximation theory. It covers Pad� approximation theory, embedded-parameters perturbation, Adomian decomposition, homotopy analysis, modified differential transformation, fractal theory, fractional calculus, fractional differential equations, as well as classical numerical techniques for solving nonlinear partial differential equations. In addition, 3D modeling and analysis are also covered in-depth. Systematically describes powerful approximation methods to solve nonlinear equations in fluid problems Includes novel developments in fractional order differential equations with fractal theory applied to fluids Features new methods, including Homotypy Approximation, embedded-parameter perturbation, and 3D models and analysis

Modeling and Analysis of Modern Fluid Problems

Modeling and Analysis of Modern Fluid Problems
  • Author : Liancun Zheng,Xinxin Zhang
  • Publisher : Academic Press
  • Release : 01 June 2017
GET THIS BOOK Modeling and Analysis of Modern Fluid Problems

Modeling and Analysis of Modern Fluids helps researchers solve physical problems observed in fluid dynamics and related fields, such as heat and mass transfer, boundary layer phenomena, and numerical heat transfer. These problems are characterized by nonlinearity and large system dimensionality, and 'exact' solutions are impossible to provide using the conventional mixture of theoretical and analytical analysis with purely numerical methods. To solve these complex problems, this work provides a toolkit of established and novel methods drawn from the literature

Modeling and Analysis of Modern Fluid Problems

Modeling and Analysis of Modern Fluid Problems
  • Author : Liancun Zheng,Xinxin Zhang
  • Publisher : Academic Press
  • Release : 26 April 2017
GET THIS BOOK Modeling and Analysis of Modern Fluid Problems

Modeling and Analysis of Modern Fluids helps researchers solve physical problems observed in fluid dynamics and related fields, such as heat and mass transfer, boundary layer phenomena, and numerical heat transfer. These problems are characterized by nonlinearity and large system dimensionality, and ‘exact’ solutions are impossible to provide using the conventional mixture of theoretical and analytical analysis with purely numerical methods. To solve these complex problems, this work provides a toolkit of established and novel methods drawn from the literature

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  • Release : 09 June 2014
GET THIS BOOK Nostradamus 2014 Prediction Modeling and Analysis of Complex Systems

The prediction of behavior of complex systems, analysis and modeling of its structure is a vitally important problem in engineering, economy and generally in science today. Examples of such systems can be seen in the world around us (including our bodies) and of course in almost every scientific discipline including such “exotic” domains as the earth’s atmosphere, turbulent fluids, economics (exchange rate and stock markets), population growth, physics (control of plasma), information flow in social networks and its dynamics,

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GET THIS BOOK Engineering Mathematics I

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  • Author : Association of Principals of Technical Institutions (India)
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  • Publisher : Springer Nature
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GET THIS BOOK Modeling in Engineering Using Innovative Numerical Methods for Solids and Fluids

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  • Publisher : Springer Science & Business Media
  • Release : 08 March 2011
GET THIS BOOK The Mechanics of Solids and Structures Hierarchical Modeling and the Finite Element Solution

In the recent decades, computational procedures have been applied to an increasing extent in engineering and the physical sciences. Mostly, two separate fields have been considered, namely, the analysis of solids and structures and the analysis of fluid flows. These continuous advances in analyses are of much interest to physicists, mathematicians and in particular, engineers. Also, computational fluid and solid mechanics are no longer treated as entirely separate fields of applications, but instead, coupled fluid and solid analysis is being

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  • Publisher : Springer Science & Business Media
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GET THIS BOOK Probability and Partial Differential Equations in Modern Applied Mathematics

"Probability and Partial Differential Equations in Modern Applied Mathematics" is devoted to the role of probabilistic methods in modern applied mathematics from the perspectives of both a tool for analysis and as a tool in modeling. There is a recognition in the applied mathematics research community that stochastic methods are playing an increasingly prominent role in the formulation and analysis of diverse problems of contemporary interest in the sciences and engineering. A probabilistic representation of solutions to partial differential equations

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This volume is devoted to the study of the Navier–Stokes equations, providing a comprehensive reference for a range of applications: from advanced undergraduate students to engineers and professional mathematicians involved in research on fluid mechanics, dynamical systems, and mathematical modeling. Equipped with only a basic knowledge of calculus, functional analysis, and partial differential equations, the reader is introduced to the concept and applications of the Navier–Stokes equations through a series of fully self-contained chapters. Including lively illustrations that

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GET THIS BOOK Applied Mathematics And Modeling For Chemical Engineers

This Second Edition of the go-to reference combines the classical analysis and modern applications of applied mathematics for chemical engineers. The book introduces traditional techniques for solving ordinary differential equations (ODEs), adding new material on approximate solution methods such as perturbation techniques and elementary numerical solutions. It also includes analytical methods to deal with important classes of finite-difference equations. The last half discusses numerical solution techniques and partial differential equations (PDEs). The reader will then be equipped to apply mathematics