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Titlebook: Statistical Hydrodynamic Models for Developed Mixing Instability Flows; Analytical "0D" Eval Antoine Llor Book 2005 Springer-Verlag Berlin

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发表于 2025-3-21 18:18:41 | 显示全部楼层 |阅读模式
书目名称Statistical Hydrodynamic Models for Developed Mixing Instability Flows
副标题Analytical "0D" Eval
编辑Antoine Llor
视频video
概述Includes supplementary material:
丛书名称Lecture Notes in Physics
图书封面Titlebook: Statistical Hydrodynamic Models for Developed Mixing Instability Flows; Analytical
描述.Part textbook, part exploratory work, this book aims to raise the awareness of students, physicists, and engineers in turbulence on the modeling of gravitationally induced turbulent mixing flows as produced, for instance, by Rayleigh-Taylor instabilities. The discussion is centered on the differences between single-fluid and two-fluid approaches, and it is illustrated with a 0D analysis of two specific elementary models in common use. Important deviations are shown to appear on many features, among others the prominence of directed energy, the simultaneous restitution of test cases, the responses to variable acceleration and shocks, and the behavior of various length scales..
出版日期Book 2005
关键词Phase; mixing instability; statistical hydrodynamics; turbulence; two-phase flows; fluid- and aerodynamic
版次1
doihttps://doi.org/10.1007/11531746
isbn_softcover978-3-642-42180-8
isbn_ebook978-3-540-31623-7Series ISSN 0075-8450 Series E-ISSN 1616-6361
issn_series 0075-8450
copyrightSpringer-Verlag Berlin Heidelberg 2005
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Conclusion, Future Modeling Trends, to a list of evaluation criteria corresponding to the specific needs of the Dam. In this spirit, this study made it possible to define effective approaches for developing and validating new hydrodynamic models for mixing flows.
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0075-8450 aneous restitution of test cases, the responses to variable acceleration and shocks, and the behavior of various length scales..978-3-642-42180-8978-3-540-31623-7Series ISSN 0075-8450 Series E-ISSN 1616-6361
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,Two‐Fluid Approach: Example of Awe’s Model,s that can become complicated [82–86]. We will re‐examine the conservation equations (2.1) for a single global fluid with variable properties depending on the position: equation of state, constitutive laws, thermodynamic variables, etc. The various quantities will thus reflect variations due to both
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,Comparison of Single and Two‐Fluid Approaches,s two‐fluid models as outlined in Table 7.1. No further comments will be given on this comparison except for one specific point that is crucial to modeling: the energy dissipation circuits. The representation of these circuits in Table 7.1 is rearranged and simplified from Figs. 5.1 and 6.4.
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Specific Treatment of Shocks: Constraints on Models1,lence of a compressible fluid has . that are very different in nature. As is reviewed in B, the velocity fluctuation field can be decomposed into divergent irrotational and nondivergent rotational parts, respectively [147–149]. Only the latter is present for an incompressible fluid. Despite certain
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0075-8450 ngineers in turbulence on the modeling of gravitationally induced turbulent mixing flows as produced, for instance, by Rayleigh-Taylor instabilities. The discussion is centered on the differences between single-fluid and two-fluid approaches, and it is illustrated with a 0D analysis of two specific
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