کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
7055119 1458040 2016 10 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
Modeling and estimation of the thermal properties of clusters aggregates for construction materials: The case of clusters aggregates of lateritic soil, sand and pouzzolan
ترجمه فارسی عنوان
مدل سازی و برآورد خواص حرارتی سازه های خوشه ای برای مصالح ساختمانی: نمونه های خوشه ای خاک خاک، شن و پوزولان
کلمات کلیدی
مصالح ساختمانی، چهار قطبی حرارتی، خواص حرارتی، روش گذرا، شبیه سازی عددی،
موضوعات مرتبط
مهندسی و علوم پایه مهندسی شیمی جریان سیال و فرایندهای انتقال
چکیده انگلیسی
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 Eag and ρCag and ρCh 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, EBPZ=418Jm-2K-1s-1/2, λBPZ=0.166Wm-1K-1, ERPZ=418Jm-2K-1s-1/2, λRPZ=0.135Wm-1K-1). Pouzzolan has the smaller value of porosity and lateritic the greater one.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: International Journal of Heat and Mass Transfer - Volume 102, November 2016, Pages 407-416
نویسندگان
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