首页> 外文期刊>International Journal of Heat and Mass Transfer >Modeling and estimation of the thermal properties of clusters aggregates for construction materials: The case of clusters aggregates of lateritic soil, sand and pouzzolan
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Modeling and estimation of the thermal properties of clusters aggregates for construction materials: The case of clusters aggregates of lateritic soil, sand and pouzzolan

机译:建筑材料集料骨料热性能的建模和估计:以红土,砂和火山灰的集料骨料为例

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Most of the composite materials are manufactured by mixing several aggregates such as sand, cement, gravel and others. The aim of this paper was to present a method dedicated to the determination of the thermal effusivity and porosity for building material that is in aggregates granular form. A transient asymmetrical hot plate device was constructed to characterize the thermal effusivity. Experimental measurement of the specific heat capacity using the Differential Scanning Calorimeter (DSC) and measurement of apparent density enabled the estimation of the volumetric heat capacity of the aggregates. With these values and that of the thermal effusivity pre-estimated using the simplified 1D model, the study of the reduced sensitivity of the experimental temperature to parameter E_(ag) and ρC_(ag) and ρC_h is carried out. The thermal effusivity is then estimated from a complete 1D model by minimization of the quadratics errors between the experimental temperature curve and simulated one. Experimental results applied on clusters with maximum diameter aggregates 1.6 mm; 1 mm; 0.8 mm, 0.4 mm and 0.2 mm show that for the same diameter, the black pouzzolan have higher thermal effusivity and thermal conductivity than the red pouzzolan (e.g. for D = 1 mm, E_(BPZ) = 418J m~(-2) K~(-1) s~(-1/2), λ_(BPZ) = 0.166 W m~(-1) K~(-1), E_(BPZ) = 418 J m~(-2) K~(-1) s~(-1/2), λ_(RPZ) = 0.135 W m~(-1) K~(-1)). Pouzzolan has the smaller value of porosity and lateritic the greater one.
机译:大多数复合材料是通过混合几种集料(例如沙子,水泥,砾石等)制造的。本文的目的是提出一种专门用于确定骨料颗粒形式的建筑材料的热效率和孔隙率的方法。构造了一个瞬态不对称热板设备来表征热效率。使用差示扫描量热仪(DSC)进行比热容的实验测量和表观密度的测量可以估算骨料的体积热容。利用这些值以及使用简化的一维模型预先估算的热效率,进行了实验温度对参数E_(ag)和ρC_(ag)和ρC_h降低的灵敏度的研究。然后,通过最小化实验温度曲线和模拟温度曲线之间的二次误差,可以从完整的一维模型估算出热效率。实验结果应用于最大直径骨料为1.6 mm的团簇; 1毫米; 0.8 mm,0.4 mm和0.2 mm表明,对于相同的直径,黑色Pouzzolan的热效率和导热率高于红色Pouzzolan(例如,对于D = 1 mm,E_(BPZ)= 418J m〜(-2)K 〜(-1)s〜(-1/2),λ_(BPZ)= 0.166 W m〜(-1)K〜(-1),E_(BPZ)= 418 J m〜(-2)K〜( -1)s〜(-1/2),λ_(RPZ)= 0.135 W m〜(-1)K〜(-1))。火山灰的孔隙率值较小,而红土的孔隙率值较大。

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