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Thermo-fluid Dynamics of Two-Phase Flow

โœ Scribed by Mamrou Ishii


Publisher
Springer
Year
2005
Tongue
English
Leaves
470
Category
Library

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โœฆ Synopsis


Thermo-fluid dynamics of two-phase flow is an important subject for various scientific and engineering fields. It plays a particularly significant role in thermal-hydraulic analysis of nuclear reactor transients and accidents. The topics of multiphase flow are also essential for various engineering systems related to energy, chemical engineering processes and heat transfer.

Thermo-fluid Dynamics of Two-phase Flow is written for graduate students, scientists and engineers who need in depth theoretical foundations to solve two-phase problems in various technological systems.

Based on the extensive research experiences focused on the fundamental physics of two-phase flow, the authors present the detailed theoretical foundation of multi-phase flow thermo-fluid dynamics as they apply to: Nuclear reactor transient and accident analysis; Energy systems; Power generation systems; Chemical reactors and process systems; Space propulsion; Transport processes.


๐Ÿ“œ SIMILAR VOLUMES


Thermo-Fluid Dynamics of Two-Phase Flow
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<p><p><i>Thermo-Fluid Dynamics of Two-Phase Flow</i>, <i>Second Edition</i> focuses on the fundamental physics of two-phase flow. The authors present the detailed theoretical foundation of multi-phase flow thermo-fluid dynamics as they apply to:</p><p>Nuclear reactor transient and accident analysis;

Thermo-Fluid Dynamics of Two-Phase Flow
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โœ Mamoru Ishii, Takashi Hibiki (auth.) ๐Ÿ“‚ Library ๐Ÿ“… 2011 ๐Ÿ› Springer-Verlag New York ๐ŸŒ English

<p><p><i>Thermo-Fluid Dynamics of Two-Phase Flow</i>, <i>Second Edition</i> focuses on the fundamental physics of two-phase flow. The authors present the detailed theoretical foundation of multi-phase flow thermo-fluid dynamics as they apply to:</p><p>Nuclear reactor transient and accident analysis;

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Proceedings of the Japan-US seminar on Two-Phase Flow Dynamics held in Japan, 1988. Papers are grouped into five categories: fundamental equations and closure laws; flow regime modeling and dynamics; phase separation and distribution phenomena; wave and shock phenomena and critical flows; and forced