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Experimental and Numerical Thermal Properties Investigation of Cement-Based Materials Modified with PCM for Building Construction Use

机译:用PCM改装水泥基材料的实验性和数值热性能,用于建筑用途

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Due to their latent heat storage capacity, phase-change materials (PCM) incorporated in wallboards are an effective solution to reduce energy consumption inside buildings. This is achieved by incorporating PCM in construction elements made of cement-based materials. The purpose of this research is to evaluate both the thermal conductivity and the heat storage capacity of mortars and concretes with different amounts of PCM in order to evaluate their thermal performance. Therefore, a laboratory-developed transient plane source experimental setup was used to measure these properties. First, several mortar and concrete specimens including different amounts of PCM (0%, 4.5%, 9%, and 13% by total mass of cement) were manufactured. Then, the experimental setup was used to measure the temperature development on PCM-concretes and PCM-mortars for a period of 1,000 s. The collected data were analyzed to back-calculate the thermal characteristics using a numerical optimization procedure. Numerical findings using the finite-element method show that the testing procedure efficiently provides accurate estimations of the thermal properties of the tested specimens. It was found that cement-based materials incorporating PCM have lower thermal conductivity and higher heat storage capacity, which indicates the improvement of their thermal behavior.
机译:由于它们的潜热存储容量,墙板中的相变材料(PCM)是减少建筑物内能量消耗的有效解决方案。这是通过在由水泥基材料制成的构造元件中结合PCM来实现的。本研究的目的是评估砂浆和混凝土的热导电性和储热容量,以评价它们的热性能。因此,使用实验室开发的瞬态平面源实验设置来测量这些性质。首先,制造了包括不同量的PCM(0%,4.5%,9%和总质量水泥)的砂浆和混凝土样本。然后,使用实验设置来测量PCM - CONCRETES和PCM-Mortars的温度显影为1000秒。分析收集的数据以使用数值优化程序来回计算热特性。使用有限元方法的数值发现表明,测试程序有效地提供了对测试样品的热特性的准确估计。结果发现,包含PCM的水泥基材料具有较低的导热性和更高的储热容量,这表明其热行为的提高。

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