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  • Mathematical Modeling and Simulation of Complex Fluid Systems

    Mathematical Modeling and Simulation of Complex Fluid Systems by Singh, Satyvir; Awasthi, Mukesh Kumar;

      • 10% KEDVEZMÉNY?

      • Kiadói listaár GBP 124.99
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    Beszerezhetőség

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    A beszerzés időigényét az eddigi tapasztalatokra alapozva adjuk meg. Azért becsült, mert a terméket külföldről hozzuk be, így a kiadó kiszolgálásának pillanatnyi gyorsaságától is függ. A megadottnál gyorsabb és lassabb szállítás is elképzelhető, de mindent megteszünk, hogy Ön a lehető leghamarabb jusson hozzá a termékhez.

    A termék adatai:

    • Kiadás sorszáma 1
    • Kiadó Chapman and Hall
    • Megjelenés dátuma 2026. október 26.

    • ISBN 9781041121275
    • Kötéstípus Keménykötés
    • Terjedelem308 oldal
    • Méret 234x156 mm
    • Nyelv angol
    • Illusztrációk 128 Illustrations, black & white; 44 Halftones, black & white; 84 Line drawings, black & white; 31 Tables, black & white
    • 700

    Kategóriák

    Rövid leírás:

    This book explores?modern fluid mechanics through mathematical modeling and advanced computational, covering complex topics like compressible flows and fluid-structure interactions. It integrates computational techniques, multiscale modeling, and AI applications.

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    Hosszú leírás:

    This book explores?modern fluid mechanics through mathematical modeling and advanced computational, covering complex topics like compressible flows and fluid-structure interactions. It integrates computational techniques, multiscale modeling, and AI applications, with a focus on industry-specific challenges in energy, manufacturing, and environmental sciences. This book spans fundamental fluid mechanics to cutting-edge simulations of complex fluid systems, providing insights into a wide range of fluid behaviors in engineering, biological, environmental, and industrial contexts. It addresses key challenges such as non-Newtonian fluids, compressible flows, multiphase systems, and fluid-structure. Contemporary research trends like AI-driven optimisation and sustainable energy solutions are also discussed.



    • Covers basic principles to specialized topics such as compressible flows, multiphase systems, and fluid-structure interactions.

    • Focuses on numerical methods, optimization, and computational fluid dynamics (CFD) tools to solve complex fluid dynamics problems.

    • Discusses applications relevant to industries such as petroleum, manufacturing, and energy, including heat exchangers, porous media, and lubrication systems.

    • Covers modern advancements like machine learning, AI optimization, and sustainable energy solutions.

    • Applies fluid dynamics across biological, environmental, and industrial contexts, making the book relevant to engineers, environmental scientists, and healthcare professionals.


    This book is a valuable resource for researchers, engineers, and students in fluid mechanics, computational fluid dynamics, and applied mathematics, providing both theoretical depth and practical solutions.

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    Tartalomjegyzék:

    Chapter 01: Fundamentals of Fluid Dynamics. Chapter 02: Mathematical Tools for Fluid Modeling: Solutions of Nonlinear PDEs in High-Speed Fluid Flows. Chapter 03: Computational Fluid Dynamics Techniques: Finite Difference Modeling of Magnetic Nanofluid Convection. Chapter 04: Numerical Investigation of Heat Flow and Entropy Generation in Vertical Eccentric Annular Convection. Chapter 05: Flow in Porous Media: Study of hybrid nanofluids. Chapter 06: Particle-Laden Flows: Modelling Particle Transport in Non-Newtonian Flows: A Finite Difference Solution. Chapter 07: Non-Newtonian Fluid Dynamics. Chapter 08: Magnetohydrodynamics: Study of Magnetized Rotating Ferrofluid Heated from Below. Chapter 09: Magnetothermal Instabilities in Fluid Systems. Chapter 10: Instability Modeling of viscoelastic fluids in porous medium. Chapter 11: An analytical Study of weak discontinuity waves in one dimensional flow with rotational effects. Chapter 12: Magnetohydrodynamic Effects on Dual-Mode Richtmyer?Meshkov Instability. Chapter 13: Biological Fluids: Study of Casson fluids in porous media. Chapter 14: Optimization in Fluid Dynamics. Chapter 15: Thermal Optimization of a Magnetohydrodynamic U-Channel. Chapter 16: AI-Enhanced Simulation of Nanofluid Natural Convection.

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