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- W3214441566 abstract "Abstract Accurately evaluating the relation between heat transfer performance and the complex structure of porous media is still a difficult task. Most previous fractal models of effective thermal conductivity (ETC) are developed to describe the heat‐conducting characteristics of a unit cell or a representative elementary volume in porous media, and few models have paid attentions to the ETC for practical circular tubes made with a porous structure based on fractal theory. This paper proposes a new ETC model for a circular tube made with porous media based on fractals, and the validity of the present model is proved by previous models and testing data in the literature, then the effects of intrinsic thermo‐physical properties of each component and pore structures on the ETC are discussed. The analysis results indicate that a circular tube made with porous media can improve its heat‐insulating performance by about 25% compared with a common parallel circular tube. This can supply an alternative scheme for pipe insulation design in cold/hot fluid supplying systems or air conditioning systems." @default.
- W3214441566 created "2021-11-22" @default.
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- W3214441566 date "2021-11-09" @default.
- W3214441566 modified "2023-09-27" @default.
- W3214441566 title "Analysis of effective thermal conductivity for circular tubes made with porous media based on fractal theory" @default.
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- W3214441566 doi "https://doi.org/10.1002/htj.22380" @default.
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