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基于稳态法的泡沫玻璃热导率数值模拟

Numerical Simulation of Thermal Conductivity of Foam Glass Based on the Steady-State Method.

作者信息

Qin Zipeng, Li Gang, Tian Yan, Ma Yuwei, Shen Pengfei

机构信息

College of Water Conservancy and Architectural Engineering, Shihezi University, Shihezi 832000, China.

State Key Laboratory of Frozen Soil Engineering, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

Materials (Basel). 2018 Dec 24;12(1):54. doi: 10.3390/ma12010054.

Abstract

The effects of fly ash, sodium carbonate content, foaming temperature and foaming time on foam glass aperture sizes and their distribution were analyzed by the orthogonal experimental design. Results from the steady-state method showed a normal distribution of the number of apertures with change in average aperture, which ranges from 0.1 to 2.0 mm for more than 93% of apertures. For a given porosity, the thermal conductivity decreases with the increase of the aperture size. The apertures in the sample have obvious effects in blocking the heat flow transmission: heat flow is quickly diverted to both sides when encountered with the aperture. When the thickness of the sample is constant, the thermal resistance of the foam glass sample increases with increasing porosity, leading to better thermal insulation. Furthermore, our results suggest that the more evenly distributed and orderly arranged the apertures are in the foam glass material, the larger the thermal resistance of the material and hence, the better the thermal insulation.

摘要

通过正交试验设计分析了粉煤灰、碳酸钠含量、发泡温度和发泡时间对泡沫玻璃孔径大小及其分布的影响。稳态法结果表明,孔径数量随平均孔径变化呈正态分布,超过93%的孔径范围为0.1至2.0毫米。在给定孔隙率下,热导率随孔径尺寸的增加而降低。样品中的孔隙对热流传递有明显影响:热流遇到孔隙时会迅速向两侧转移。当样品厚度恒定时,泡沫玻璃样品的热阻随孔隙率增加而增大,从而具有更好的隔热性能。此外,我们的结果表明,泡沫玻璃材料中孔隙分布越均匀、排列越有序,材料的热阻越大,隔热性能越好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5277/6337271/e2018e31ef0a/materials-12-00054-g001a.jpg

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