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Titlebook: Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction; Ki-Han Kim,Georges Chahine,Ayat Karimi Book 2014 Springe

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期刊全称Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction
影响因子2023Ki-Han Kim,Georges Chahine,Ayat Karimi
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发行地址Comprehensive treatment of both fluid and material aspects of cavitation erosion.Includes the most relevant experimental methods and computational approaches to study cavitation erosion.Includes a did
学科分类Fluid Mechanics and Its Applications
图书封面Titlebook: Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction;  Ki-Han Kim,Georges Chahine,Ayat Karimi Book 2014 Springe
影响因子.This book provides a comprehensive treatment of the cavitation erosion phenomenon and state-of-the-art research in the field. It is divided into two parts. Part 1 consists of seven chapters, offering a wide range of computational and experimental approaches to cavitation erosion. It includes a general introduction to cavitation and cavitation erosion a detailed description of facilities and measurement techniques commonly used in cavitation erosion studies, an extensive presentation of various stages of cavitation damage (including incubation and mass loss) and insights into the contribution of computational methods to the analysis of both fluid and material behavior. The proposed approach is based on a detailed description of impact loads generated by collapsing cavitation bubbles and a physical analysis of the material response to these loads. Part 2 is devoted to a selection of nine papers presented at the International Workshop on Advanced Experimental and Numerical Techniques for Cavitation Erosion Prediction (Grenoble, France, 1-2 March 2011) representing the forefront of research on cavitation erosion. Innovative numerical and experimental investigations illustrate the most
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Modeling of Cavitation Dynamics and Interaction with Material120 recipes that describe a wide range of macromolecules.No .Emphasis is on a broad description of the general methods and processes for the synthesis, modification and characterization of macromolecules. These more fundamental chapters will be supplemented by selected and detailed experiments. In a
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Hydrodynamic Processes Controlling Cavitation Erosionsis, such as velocities, periodic components, and preferential morphologies, and the simulation of cells’ dynamical behavior from theoretical models. Two methods have been alternatively used for analyzing the videomicroscopy sequences. The first one is based on an optical flow approach and relies on
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Investigations into Dependence Between Cavitation Structures and Cavitation Erosionbrine in a waterflood in order to increase the viscosity of the drive fluid, which in turn improves the oil-water mobility ratio. This leads to improved areal and vertical sweep efficiency. In this chapter, how polymers actually viscosify in aqueous (or other) solutions is discussed. In addition, ho
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