Fluid dynamics

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  • Computational fluid dynamics (CFD) is concerned with the efficient numerical solution of the partial differential equations that describe fluid dynamics. CFD techniques are commonly used in the many areas of engineering where fluid behavior is an important factor. Traditional fields of application include aerospace and automotive design, and more recently, bioengineering and consumer and medical electronics.

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  • This book is intended to serve as a reference text for advanced scientists and research engineers to solve a variety of fluid flow problems using computational fluid dynamics (CFD). Each chapter arises from a collection of research papers and discussions contributed by the practiced experts in the field of fluid mechanics. This material has encompassed a wide range of CFD applications concerning computational scheme, turbulence modeling and its simulation, multiphase flow modeling, unsteady-flow computation, and industrial applications of CFD....

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  • Two decades ago when we wrote Spectral Methods in Fluid Dynamics (1988), the subject was still fairly novel. Motivated by the many favorable comments we have received and the continuing interest in that book (which will be referred to as CHQZ1), and yet desiring to present a more modern perspective, we embarked on the project which resulted in our recent book (Canuto et al. (2006), referred to as CHQZ2) and the present new book (referred to as CHQZ3).

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  • (BQ) Part 1 book "Computational fluid dynamics" has contents: Governing equations, solution methods of finite difference equations, incompressible viscous flows via finite difference methods, finite volume methods via finite difference methods, introduction to finite element methods, linear problems,... and other contents.

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  • (BQ) Part 2 book "Computational fluid dynamics" has contents: Structured grid generation, unstructured grid generation, adaptive methods, computing techniques, computing techniques, applications to chemically reactive flows and combustion, applications to acoustics, applications to multiphase flows,...and other contents.

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  • (BQ) Part 1 book "The finite element method" has contents: Introduction and the equations of fluid dynamics; convection dominated problems - finite element appriximations to the convection-diffusion equation; a general algorithm for compressible and incompressible flows - the characteristic-based split (CBS) algorithm; incompressible laminar flow - newtonian and non-newtonian fluids; free surfaces, buoyancy and turbulent incompressible flows.

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  • (BQ) Part 1 book "Computational fluid dynamics for engineers" has contents: Conservation equations, turbulence models, numerical methods for model parabolic and elliptic equations, numerical methods for model hyperbolic equations.

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  • (BQ) Part 2 book "Computational fluid dynamics for engineers" has contents: Inviscid flow equations for incompressible flows, boundary layer equations, stability and transition, grid generation, inviscid compressible flow, incompressible navier stokes equations, compressible navier—stokes equations.

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  • Lectures "In elementary: Fluid dynamics" has contents: Some background - Basic physics of fluids, the equations of fluid motion, applications of the navier–stokes equations.

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  • The book "Wind Tunnels and Experimental Fluid Dynamics Research" is comprised of 33 chapters divided in five sections. The first 12 chapters discuss wind tunnel facilities and experiments in incompressible flow, while the next seven chapters deal with building dynamics, flow control and fluid mechanics. Third section of the book is dedicated to chapters discussing aerodynamic field measurements and real full scale analysis (chapters 20-22).

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  • Tham khảo sách 'applied computational fluid dynamics techniques', kỹ thuật - công nghệ, cơ khí - chế tạo máy phục vụ nhu cầu học tập, nghiên cứu và làm việc hiệu quả

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  • (BQ) Part 1 book "Fundamentals of fluid mechanics" has contents: Introduction, fluid statics, elementary fluid dynamics—the bernoulli equation, fluid kinematics, finite controlvolume analysis, differential analysis of fluid flow.

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  • (BQ) Part 2 book "Introduction to fluid mechanics" has contents: Drag and lift, dimensional analysis and law of similarity, measurement of flow velocity and flow rate, measurement of flow velocity and flow rate, flow of a compressible fluid, unsteady flow, computational fluid dynamics, computational fluid dynamics.

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  • (BQ) Part 2 book "Introduction to fluid mechanics" has contents: Elements of flow visualization and flow structure, governing equations of fluid dynamics, analysis of incompressible flow, flow in pipes and ducts, external flow, open channel flow.

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  • (BQ) This book presents the fundamentals of computational fluid mechanics for the novice user. It provides a thorough yet user-friendly introduction to the governing equations and boundary conditions of viscous fluid flows, turbulence and its modelling, and the finite volume method of solving flow problems on computers.

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  • (BQ) Part 2 book "Fluid mechanics" has contents: Computational fluid dynamics, instability, turbulence, geophysical fluid dynamics, aerodynamics, introduction to biofluid mechanics.

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  • (BQ) Part 1 book "Fundamentals of fluid mechanics" has contents: Introduction, fluid statics, elementary fluid dynamics—the bernoulli equation, fluid kinematics, finite control volume analysis, differential analysis of fluid flow, similitude, dimensional analysis, and modeling.

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  • Only in limited cases, for example, can the nonlinearities of the Navier-Stokes equations be ignored. With the addition of energy and mass transport, multiphase flows, and moving boundaries, as are present in practical applications, the complexity becomes magnified. Each chapter of this book presents an interesting approach to this complexity.

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  • Over the past three decades, information in the aerospace and mechanical engineering fields in general and turbomachinery in particular has grown at an exponential rate. Fluid Dynamics and Heat Transfer of Turbomachinery is the first book, in one complete volume, to bring together the modern approaches and advances in the field, providing the most up-to-date, unified treatment available on basic principles, physical aspects of the aerothermal field, analysis, performance, theory, and computation of turbomachinery flow and heat transfer....

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  • The history of Computational Fluid Dynamics, or CFD for short,, started in the early 1970’s. Around that time, it became an acronym for a combination of physics, numerical mathematics, and, to some extent, computer sciences employed to simulate fluid flows. The beginning of CFD was triggered by the availability of increasingly more powerful mainframes and the advances in CFD are still tightly coupled to the evolution of computer technology.

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