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Numerical and experimental investigation on dynamic thermal performance of floor heating system with phase change material for thermal storage

机译:隔热储存相变材料的地板加热系统动态热性能的数值实验研究

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摘要

The floor heating system with phase change materials (PCMs) for thermal storage is an effective approach to increase the floor thermal capacity and reduce indoor temperature fluctuation range. A two-dimensional numerical model of the floor heating system combined with PCM was developed to investigate its dynamic thermal performance in winter. To verify the reliability of the model, an experimental room was established in Beijing, China. The experiment results agreed well with the modelling results, which demonstrated that the numerical model was reliable. The effects of the phase change temperature, latent heat and thermal conductivity of PCM on the thermal performance of the floor were numerically investigated. The results showed that the phase change temperature and thermal conductivity of PCM had a significant influence on thermal comfort. At the same time, these two thermal physical parameters also played a critical role in improving the utilization rate of PCM. Conversely, the latent heat, in the range of 100 to 200 kJ/kg, had no obvious influence on the thermal performance of the floor. PCM with phase change temperature of 313 K was recommended, which could increase the average indoor temperature by 2.2 K, increase the thermal energy storage ratio by 12% and reduce indoor temperature fluctuation range by 2.2 K.
机译:具有相变材料(PCM)的地板加热系统用于热存储的有效方法,以增加地板热容量,降低室内温度波动范围。开发了一种与PCM结合使用的地板加热系统的二维数值模型,以研究其冬季动态热性能。为了验证模型的可靠性,在中国北京建立了一个实验室。实验结果与建模结果相同,这表明数值模型可靠。数值研究了PCM相变温度,PCM潜热和导热率的影响。结果表明,PCM的相变温度和导热率对热舒适性有显着影响。同时,这两个热物理参数也在提高PCM的利用率方面发挥着关键作用。相反,在100至200 kJ / kg的范围内潜热对地板的热性能没有明显影响。建议使用相变温度为313 k的PCM,这可以将平均室内温度增加2.2 k,将热能储存比率提高12%,减少室内温度波动范围2.2 K.

著录项

  • 来源
    《Indoor and built environment》 |2021年第5期|621-634|共14页
  • 作者单位

    Beijing Key Lab of Heating Gas Supply Ventilating and Air Conditioning Engineering Beijing University of Civil Engineering and Architecture|Beijing Advanced Innovation Centre for Future Urban Design Beijing University of Civil Engineering and Architecture;

    Beijing Key Lab of Heating Gas Supply Ventilating and Air Conditioning Engineering Beijing University of Civil Engineering and Architecture;

    Beijing Key Lab of Heating Gas Supply Ventilating and Air Conditioning Engineering Beijing University of Civil Engineering and Architecture;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phase change material; Mass concrete floor; Floor heating system; Thermal energy storage; Numerical simulation;

    机译:相变材料;质量混凝土地板;地板加热系统;热能存储;数值模拟;

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