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High Performance Simulation for Industrial Paint Shop Applications / by Kevin Verma, Robert Wille.

By: Verma, Kevin, autor
Contributor(s): Wille, Robert, autor
Series: (Intelligent Technologies and Robotics (SpringerNature-42732)); (Intelligent Technologies and Robotics (R0) (SpringerNature-43728)).Publisher: Cham : Springer International Pulishing, 2021Edition: First edition 2021.Description: 1 recurso en línea (IX, 145 páginas) : 56 ilustraciones, 33 ilustraciones a color.ISBN: 9783030716257.Subject: Proceso de datosOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- Background -- Overview of grid-based methods -- Simulation of Electrophoretic Deposition Coatings -- Overview of volumetric decomposition methods -- Volumetric Decomposition on Shared Memory Architectures -- Volumetric Decomposition on Distributed Memory Architectures -- Overview of particle-based methods -- SPH on Multi-GPU Architectures -- SPH Variants on Multi-GPU Architectures -- Conclusion.
Abstract: This book describes the current state of the art for simulating paint shop applications, their advantages and limitations, as well as corresponding high-performance computing (HPC) methods utilized in this domain. The authors provide a comprehensive introduction to fluid simulations, corresponding optimization methods from the HPC domain, as well as industrial paint shop applications. They showcase how the complexity of these applications bring corresponding fluid simulation methods to their limits and how these shortcomings can be overcome by employing HPC methods. To that end, this book covers various optimization techniques for three individual fluid simulation techniques, namely grid-based methods, volumetric decomposition methods, and particle-based methods. Provides the necessary background on fluid simulations, both from the perspective of simulation and high-performance computing; Discusses details of HPC methods used to make corresponding methods applicable to even very complex, realistic problems, such as industrial paint shop applications; Provides not only theoretical background on the covered methods, but also shows their application to actual problems from the automotive industry.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TA357.5.D37 2021 EB (Browse shelf(Opens below)) Acceso electrónico eBook.23122172
Total holds: 0

Introduction -- Background -- Overview of grid-based methods -- Simulation of Electrophoretic Deposition Coatings -- Overview of volumetric decomposition methods -- Volumetric Decomposition on Shared Memory Architectures -- Volumetric Decomposition on Distributed Memory Architectures -- Overview of particle-based methods -- SPH on Multi-GPU Architectures -- SPH Variants on Multi-GPU Architectures -- Conclusion.

This book describes the current state of the art for simulating paint shop applications, their advantages and limitations, as well as corresponding high-performance computing (HPC) methods utilized in this domain. The authors provide a comprehensive introduction to fluid simulations, corresponding optimization methods from the HPC domain, as well as industrial paint shop applications. They showcase how the complexity of these applications bring corresponding fluid simulation methods to their limits and how these shortcomings can be overcome by employing HPC methods. To that end, this book covers various optimization techniques for three individual fluid simulation techniques, namely grid-based methods, volumetric decomposition methods, and particle-based methods. Provides the necessary background on fluid simulations, both from the perspective of simulation and high-performance computing; Discusses details of HPC methods used to make corresponding methods applicable to even very complex, realistic problems, such as industrial paint shop applications; Provides not only theoretical background on the covered methods, but also shows their application to actual problems from the automotive industry.

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