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Outdoor Characterization of Phase Change Materials and Assessment of Their Energy Saving Potential to Reach NZEB

机译:相变材料的室外表征及其达到NZEB的节能潜力的评估

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Phase change materials (PCM) are very promising materials for improving energy efficiency in buildings, especially in hot weather conditions. In spite of the growing attention paid to the integration of PCM into buildings, there are few studies on PCM evaluation under real operating conditions. This lack of data often does not allow accurate calibration and validation of building simulation models. This work aims to characterize a commercial PCM panel by RUBITHERM ???? . The panel was laid on the floor of a test box exposed outdoors, and the experimental data were used to validate a PCM software tool implemented in IDA Indoor Climate and Energy software. A reference office building model with characteristics prescribed by Italian regulations (STD) was provided with three PCM with melting points of approximately 21 ???°C, 24 ???°C and 26 ???°C, laid on the floor office. The building energy performance obtained was compared to the energy performance of a reference building prescribed by the new Italian building energy performance regulation (NZEB) for three cities in Italy (Trento, Rome and Palermo). The results showed that energy savings obtained from implementing PCM in the STD building were not sufficient to reach the NZEB reference value for all cities. Only the use of night ventilation was able to assist in reaching NZEB. PCM with a 21 ???°C melting point showed the best annual energy saving performance in all cities. Temperature range and temperature peaks experienced by PCM in the dayight cycle can explain the behavior of these materials in the various cities and seasons as latent and sensible heat storage systems.
机译:相变材料(PCM)是非常有前途的材料,可以提高建筑物的能源效率,尤其是在炎热的天气条件下。尽管越来越重视将PCM集成到建筑物中,但在实际操作条件下对PCM评估的研究很少。数据的缺乏通常不允许对建筑仿真模型进行准确的校准和验证。这项工作旨在表征RUBITHERM的商用PCM面板。 。面板放置在暴露于室外的测试箱的地板上,实验数据用于验证IDA室内气候和能源软件中实施的PCM软件工具。具有意大利法规(STD)规定特征的参考办公楼模型,在地面办公楼安装了三个PCM,其熔点分别约为21℃,24℃和26℃。 。将获得的建筑能耗与意大利新建筑能耗法规(NZEB)针对意大利三个城市(特伦托,罗马和巴勒莫)规定的参考建筑的能耗进行比较。结果表明,在STD建筑物中实施PCM所节省的能源不足以达到所有城市的NZEB参考值。只有使用夜间通风才能帮助达到NZEB。熔点为21°C的PCM在所有城市中显示出最佳的年度节能性能。 PCM在昼/夜循环中经历的温度范围和温度峰值可以解释这些材料在各种城市和季节作为潜热和显热存储系统的行为。

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