Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/335795
Title: Studies on effective thermal conductivity of two phase materials considering natural convection
Researcher: Selvakumar, B
Guide(s): Prabhu Raja, V
Keywords: Two-phase materials
Thermal conductivity
Natural convection
University: Anna University
Completed Date: 2021
Abstract: Two-phase materials such as foams, ceramics, composites and porous materials are used in many engineering applications. It is very important to estimate the Effective Thermal Conductivity (ETC) of two-phase materials to study where heat transfer behaviour in applications like thermal storage systems, catalytic convertors, heat exchangers and spacecraft structures. The ETC of two-phase materials is influenced by primary and secondary parameters. The conductivity ratio (and#945;) and the concentration of the solid phase (and#965;) are the primary parameters which have an appreciable influence on ETC. Secondary parameters such as grain shape and size, distribution of solid particles and its orientation, contact resistance and convection also have a substantial influence on ETC of two-phase materials. Literature pertaining to the subject of this research work shows a lack of any mathematical model for determining the ETC considering the above mentioned parameters. Hence an analytical model for unit cell based on electric resistance analogy has been proposed in this research work for the estimation of the ETC of two-phase materials. Theoretical expressions have been derived considering the primary and secondary parameters for 2-D square, hexagonal and octagonal inclusions, and 3-D solid cube. Onedimensional heat conduction through the geometry dependent unit cell has been assumed. The models developed have been validated against the standard models and experimental data presented in the literature. The models have been found to predict ETC of various two-phase materials which are within the upper limit and lower limit, and more accurate for 3-D solid cube. newline
Pagination: xxii,126 p.
URI: http://hdl.handle.net/10603/335795
Appears in Departments:Faculty of Mechanical Engineering

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10_listofabbreviations.pdf141.74 kBAdobe PDFView/Open
11_chapter1.pdf644 kBAdobe PDFView/Open
12_chapter2.pdf196.56 kBAdobe PDFView/Open
13_chapter3.pdf1.08 MBAdobe PDFView/Open
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15_chapter5.pdf1.23 MBAdobe PDFView/Open
16_conclusion.pdf162.64 kBAdobe PDFView/Open
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