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【英美经典书籍】《Multiphase Flow Dynamics 4_Nuclear Thermal Hydraulics》
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【英美经典书籍】《Multiphase Flow Dynamics 4_Nuclear Thermal Hydraulics》【已搜索,无重复】 【已搜索,无重复】论坛里,有个同名的帖子,连接已经失效了,“当前主题已经存档”。 失效帖子的链接地址:http://muchong.com/bbs/viewthread.php?tid=499305&fpage=1&target=blank 为此,我上传这本书,供朋友们学习和参考。 我上传的这本书: 作者:Nikolay I. Kolev 2009年,761 页,PDF 格式,26 MB。 Language: English . 封面: 。 。 简介: The nuclear thermal hydraulic is the science providing knowledge about the physical processes occurring during the transferring the fission heat released in structural materials due to nuclear reactions into its environment. Along its way to the environment the thermal energy is organized to provide useful mechanical work or useful heat or both. Chapter 1 contains introductory information about the heat release in the re- tor core, the thermal power and thermal power density in the fuel, structures and moderator, the influence of the thermal power density on the coolant temperature, the spatial distribution of the thermal power density. Finally some measures are introduced for equalizing of the spatial distribution of the thermal power density. Chapter 2 gives the methods for describing of the steady and of the transient temperature fields in the fuel elements. Some information is provided regarding influence of the cladding oxidation, hydrogen diffusion and of the corrosion pr- uct deposition on the temperature fields. Didactically the nuclear thermal hydraulic needs introductions at different level of complexity by introducing step by step the new features after the previous are clearly presented. The followed two Chapters serve this purpose. Chapter 3 describes mathematically the "simple" steady boiling flow in a pipe. The steady mass-, momentum- and energy conservation equations are solved at different level of complexity by removing one after the other simplifying assu- tions. First the idea of mechanical and thermodynamic equilibrium is introduced. ============================== 敬请各位朋友,下载之后,给个回帖评价。我也好继续推出下一个最新科技书籍。 (不下载,也可以评价。) 谢谢! |
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2015-01-11 10:37:38, 26.27 M
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