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Determination of Specific Heat Capacity on Composite Shape-Stabilized Phase Change Materials and Asphalt Mixtures by Heat Exchange System

机译:用热交换系统测定复合形状稳定相变材料和沥青混合物上的特定热容量

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Previous research has shown that composite shape-stabilized phase change material (CPCM) has a remarkable capacity for thermal storage and stabilization, and it can be directly applied to highway construction without leakage. However, recent studies on temperature changing behaviors of CPCM and asphalt mixture cannot intuitively reflect the thermoregulation mechanism and efficiency of CPCM on asphalt mixture. The objective of this paper is to determine the specific heat capacity of CPCM and asphalt mixtures mixed with CPCM using the heat exchange system and the data acquisition system. Studies have shown that the temperature-rise curve of 5 °C CPCM has an obvious temperature plateau, while an asphalt mixture mixed with 5 °C CPCM does not; with increasing temperature, the specific heat capacities of both 5 °C CPCM and asphalt mixture first increase and then decrease, while the variation rate of 5 °C CPCM is larger than that of the asphalt mixture, and the maximum specific heat capacity of 5 °C CPCM appears around the initial phase change temperature. It is concluded that the temperature intervals of 5 °C CPCM are ?18 °C–7 °C, 7 °C–25 °C and 25 °C–44 °C, respectively, and that of the asphalt mixture are ?18 °C~10 °C, ?10 °C~5 °C and 5 °C~28 °C. A low dosage of 5 °C CPCM has little influence on the specific heat capacity of asphalt mixture. Finally, the functions of specific heat capacities and temperature for CPCM and asphalt mixture mixed with CPCM were recommended by the sectional regression method.
机译:以前的研究表明,复合形状稳定的相变材料(CPCM)具有显着的热储存和稳定能力,可以直接应用于不泄漏的公路施工。然而,最近关于CPCM和沥青混合物的温度变化行为的研究不能直观地反映CPCM对沥青混合物的热调节机理和效率。本文的目的是使用热交换系统和数据采集系统确定与CPCM混合的CPCM和沥青混合物的比热容。研究表明,5℃CPCM的温度升高曲线具有明显的温度平台,而沥青混合物与5℃CPCM混合而不是;随着温度的升高,5℃CPCM和沥青混合的比热容首先增加,然后减少,而5℃Cpcm的变化率大于沥青混合物的变化率,以及5°的最大比热容量大于5° C CPCM出现在初始相变温度周围。得出结论,5℃Cpcm的温度间隔分别为18℃-7℃,7℃-25℃和25℃-44°C,沥青混合物的Δ18° C〜10°C,?10°C〜5°C和5°C〜28°C。低剂量为5℃cpcm对沥青混合物的比热容量没有影响。最后,通过截面回归法推荐使用与CPCM混合的CPCM和沥青混合料的特定热容量和温度的功能。

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