Thermo-fluid behaviour of periodic cellular metals =

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Thermo-fluid behaviour of periodic cellular metals =

Thermo-fluid behaviour of periodic cellular metals =

作者:卢天健,徐峰,文婷 著

开 本:16开

书号ISBN:9787030348142

定价:150.0

出版时间:2013-03-01

出版社:科学出版社

Thermo-fluid behaviour of periodic cellular metals = 内容简介

  《周期性多孔金属材料的热流性能》在揭示多功能超轻周期性多孔金属材料和结构在强制对流条件下传热传质机理,为研制以多功能超轻多孔材料为基本材料、具有优良传热性能和力学性能的高效紧凑式换热器、微热管等提供理论依据和指导。

Thermo-fluid behaviour of periodic cellular metals = 目录


chapter 1 introduction
1.1 introduction and synopsis
1.2 cellular solids
1.3 periodic cellular solids
1.3.1 2d periodic cellular solids
1.3.2 3d periodic cellular solids
1.4 multifunctional applications
1.5 aims and outline of the book
references

chapter 2 experimental and numerical methods
2.1 introduction
2.2 experimental methods
2.2.1 experimental setup
2.2.2 experimental procedure
2.2.3 data analysis
2.3 numerical method
2.3.1 computational domain
2.3.2 mesh generation
2.3.3 physical boundary conditions
2.3.4 cfd solver
2.3.5 mesh sensitivity
references

chapter 3 2d periodic cellular metals
3.1 introduction and synopsis
3.2 characterization and fabrication of 2d cellular solids..
3.2.1 what are 2d cellular solids
3.2.2 characterizing 2d cellular solids
3.2.3 fabrication of 2d cellular solids
3.3 mechanical properties of 2d cellular metals
3.3.1 general mechanical behaviour
3.3.2 comparisons of 2d cellular metals with different cellshapes
3.3.3 comparisons of 2d cellular metals with other cellularmetals
3.4 fluid-flow behaviour and pressure loss
3.4.1 local pressure loss
3.4.2 frictionm pressure loss
3.4.3 overall pressure loss
3.5 heat transfer
3.5.1 conjugated conduction-convection heat transfer process
3.5.2 local temperature and heat flux distributions
3.5.3 overall heat transfer characteristics
3.6 summary
references

chapter 4 3d periodic cellular metals i. textile
4.1 introduction and synopsis
4.2 characterization and fabrication of woven textiles
4.2.1 topology of textile core
4.2.2 porosity and surface area density
4.2.3 fabrication
4.3 mechanical properties of woven textiles
4.4 flow and pressure loss behaviour
4.4.1 model
4.4.2 experimental result
4.5 heat transfer
4.5.1 effective thermal conductivity
4.5.2 convective heat transfer
4.5.3 volumetric heat transfer coefficient
4.6 summary
references

chapter 5 3d periodic cellular metals ii. lattice-framematerials
5.1 introduction and synopsis
5.2 characterization and fabrication of lattice-framematerials(lfms)
5.2.1 topology
5.2.2 manufacturing process
5.3 mechanical properties of the lfm
5.4 fluid flow behaviour in the lattice-frame material
5.4.1 fluid-flow in the lattice-frame material
5.4.2 flow in x-y plane
5.4.3 flow on strut surfaces
5.4.4 fluid-flow in the lfm
5.4.5 surface flow patterns on the endwall plates
5.5 pressure loss behaviour in the lattice-frame material
5.5.1 pressure loss per unit cell
5.5.2 pressure loss mechanisms in the lfm
5.5.3 effects of topological parameters on the overall pressurelosses
5.6 heat transfer
5.6.1 introduction
5.6.2 thermo-fluid characterisation of the lfm
5.6.3 local temperature distribution in forced air convection
5.6.4 overall heat transfer behaviour
5.6.5 effect of entry and exit regions on the overall endwall heattransfer
5.6.6 effects of thermal conductivity on the overall heattransfer
5.6.7 heat transfer due to flow mixing vs. convection from extendedsurface
5.6.8 endwall surface heat transfer distribution
5.6.9 details of the heat transfer on the strut surfaces(orientation a)
5.6.10 vortex structures in heat transfer
5.6.11 contribution of the local flow features to the overall heattransfer
5.6.12 effects of porosity and surface area density on the overallheat transfer
5.6.13 optimum porosity for both the pressure loss and heattransfer in the lfm
5.7 summary
5.7.1 flow
5.7.2 pressure loss
5.7.3 heat transfer
5.7.4 the lfm as a multifunctional heat exchanger
references

chapter 6 overall evaluation of thermo-fluid performance

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