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Experimental and Numerical Thermal Assessment of EPS Concrete Hollow Blocks in Lebanon

机译:黎巴嫩EPS混凝土空心砌块的实验和数值热评估

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摘要

Hollow concrete blocks can be thermally improved either by modifying their cavities shapes or by adding insulation materials into these cavities. It is also possible to improve the thermal conductivity of solid concrete matrix by incorporating some materials to its composition like recycled solid wastes for example. This paper offers a solid and comprehensive study for thermally improved hollow blocks through a case study from the Lebanese context and provides a scientific basis for improving the thermal performance of these blocks. The effect of adding expanded polystyrene (EPS) beads to the concrete solid mixture was investigated in this study through numerical and experimental approaches. The experimental and numerical results were in good agreement and the potential thermal improvement by adding EPS beads to concrete mixture was examined on both numerical and experimental levels. The numerical results for the three-dimensional (3D) model allow the visualization of the heat flux and temperature distribution in the block as well as the air velocity and convective heat exchanges inside the cavities of the block. The results showed that the block thermal resistance can almost double by adding 18 g of polystyrene beads to the concrete mixture.
机译:通过改变它们的空腔形状或通过将绝缘材料添加到这些腔中,可以热改善中空混凝土块。例如,还可以通过将一些材料掺入其组合物中,改善固体混凝土基质的导热率,例如再循环固体废物。本文通过黎巴嫩语境的案例研究提供了一种坚实的和综合性研究,并为提高这些块的热性能提供科学依据。通过数值和实验方法研究将膨胀的聚苯乙烯(EPS)珠加入混凝土固体混合物中的效果。实验和数值结果非常一致,在数值和实验水平上检查通过将EPS珠子添加到混凝土混合物中的潜在热改善。三维(3D)模型的数值结果允许在块中的热通量和温度分布的可视化以及块内腔内的空气速度和对流热交换。结果表明,通过向混凝土混合物中加入18g聚苯乙烯珠粒,嵌段热阻几乎加倍。

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  • 来源
    《Journal of materials in civil engineering》 |2020年第8期|05020007.1-05020007.8|共8页
  • 作者单位

    Laboratory of Applied Physics (LPA) Faculty of Sciences Lebanese Univ. Fanar Campus P.O. Box 90656 Fanar Lebanon;

    Laboratory or Civil Engineering and ueo-Environment (LGCgE-EA 4515) Univ. of Artois Technoparc Futura Bethune F-62400 France;

    Laboratory of Applied Physics (LPA) Faculty of Sciences Lebanese Univ. Fanar Campus P.O. Box 90656 Fanar Lebanon;

    Laboratory of Civil Engineering and Geo-Environment (LGCgE-EA 4515) Univ. of Artois Technoparc Futura Bethune F-62400 France;

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