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使用太阳模拟器评估混凝土样品的热扩散率

Thermal Diffusivity of Concrete Samples Assessment Using a Solar Simulator.

作者信息

Bilski Marcin, Górnaś Przemysław, Pożarycki Andrzej, Skrzypczak Przemysław, Słowik Mieczysław, Mielczarek Marta, Wróblewska Agnieszka, Semkło Łukasz

机构信息

Institute of Civil Engineering, Faculty of Civil and Transport Engineering, Poznan University of Technology, 60-965 Poznan, Poland.

Institute of Electrical Engineering and Electronics, Faculty of Automatic Control, Robotics and Electrical Engineering, Poznan University of Technology, 60-965 Poznan, Poland.

出版信息

Materials (Basel). 2023 Feb 2;16(3):1268. doi: 10.3390/ma16031268.

Abstract

The thermal properties of pavement layers made of concrete with varying bulk densities are a particularly interesting topic in the context of development road technologies. If a hybrid layer system is used as a starting point, with thin asphalt layers (from 1 cm to 4 cm) laid on top of a foam concrete layer, thermal properties begin to play a crucial role. The main research problem was to create a test method enabling the assessment of the influence of solar heating on the thermal parameters of the building material, especially cement concrete. For this reason, this paper is concerned specifically with the assessment of a new methodology for testing and calculating the value of the thermal diffusivity coefficient of samples made of concrete varying bulk densities. In this case, using the proprietary concept the authors built a solar simulator using a multi-source lighting system. The analysis of the results of laboratory tests and numerical analyses allowed the authors to observe that there is a strong correlation between the bulk density of samples heated and the thermal diffusivity parameter, which appears in the unidirectional heat transfer equation. The strength of this relationship has been expressed with the coefficient of determination and amounts to 99%. The calculated values of the coefficient of thermal diffusivity for samples made of foam concrete range from 0.16×10-6m2s to 0.52×10-6m2s and are lower (from 2.5 to 8 times) than the value determined for samples made of typical cement concrete.

摘要

在道路技术发展的背景下,由不同容重的混凝土制成的路面层的热性能是一个特别有趣的话题。如果以混合层系统为出发点,即在泡沫混凝土层上铺设薄沥青层(1厘米至4厘米),热性能就开始发挥关键作用。主要研究问题是创建一种测试方法,能够评估太阳加热对建筑材料,特别是水泥混凝土热参数的影响。因此,本文专门关注一种用于测试和计算由不同容重的混凝土制成的样品的热扩散系数值的新方法的评估。在这种情况下,作者使用专有概念构建了一个使用多源照明系统的太阳模拟器。对实验室测试结果和数值分析的分析使作者能够观察到,受热样品的容重与热扩散系数参数之间存在很强的相关性,该参数出现在单向热传递方程中。这种关系的强度用决定系数表示,达到99%。泡沫混凝土制成的样品的热扩散系数计算值范围为0.16×10⁻⁶m²/s至0.52×10⁻⁶m²/s,比典型水泥混凝土制成的样品确定的值低(2.5至8倍)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e720/9921832/dd989f5f55c6/materials-16-01268-g001.jpg

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