Title of article
Effect of spacers on the thermal performance of an annular multi-layer insulation
Author/Authors
Haim، نويسنده , , Y. and Weiss، نويسنده , , Y. and Letan، نويسنده , , R.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
4
From page
418
To page
421
Abstract
The current study presents a model and is experimentally conducted in a system of 40 stainless steel coaxial foils, of nitrogen gas, entrapped between the foils, and of spacers, which are zirconia, spherical, 50 μm in size particles, widely dispersed in the gaps between the foils. The model, experimentally verified, relates to radiation between the foils, unobstructed by particles, to conduction in the nitrogen gas, and to conduction across the particles. The study was, in particular, aimed to measure the effective thermal conductivity of the particles and to assess its effect upon the array. At vacuum of 0.092 Pa, the effective thermal conductivity of the particles was 2.13 × 10−4 W/m K, while the effective thermal conductivity of the array was 4.74 × 10−4 W/m K. Thus, the low contribution of the particles conduction at vacuum conditions improves the insulation. It reaches 45% of the heat transfer rate. At atmospheric pressure, the effective thermal conductivity of the array reaches 4.5 × 10−2 W/m K. There, the spacers contribution is negligible.
Keywords
Thermal Insulation , Spacers , multi-layer , Effective thermal conductivity
Journal title
Applied Thermal Engineering
Serial Year
2014
Journal title
Applied Thermal Engineering
Record number
1906951
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