基于pcm的玻璃系统:太阳能光学特性,节能和碳排放减少

Saboor Shaik, V. Priya, Maduru Venkata Ramana, SK Ariful Rahaman, M. Arıcı, K. Kontoleon, D. Li
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引用次数: 0

摘要

为了减少太阳辐射的传播,有助于建筑节能,本文介绍了具有改善热性能和太阳光学属性的玻璃材料。在印度两种截然不同的气候条件下(温带和炎热),我们探索了在多层办公大楼中使用pcm填充双层玻璃单元来节约能源和减少碳排放的潜力。对不同潜热利用水平(25%、50%、75%和100%)下玻璃系统全年成本节约的计算表明,在温带(新德里)和炎热(马德拉斯)气候下,充分利用潜热(100%)可最大限度地减少每年成本69817美元和66344美元。在温带和炎热的气候条件下,采用om30 pcm的玻璃系统分别减少了855和812吨二氧化碳/年的最高碳排放量。同时进行了经济分析,发现在热环境条件下,OM30的投资回收期最短,为3.2年,潜热利用率为100%。基于pcm的玻璃系统显示出显着的效果,可以帮助实现更好的热条件和建筑节能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PCM-Based Glazing Systems: Solar-Optical Properties, Energy Savings, and Carbon Emission Abatement
To reduce solar radiation transmission and contribute to energy savings in buildings, this article presents glazing materials with improved thermal performance and solar optical attributes. Double-glazed units filled with various organic PCMs (OM 21, OM 30, and OM 35) were tested for their solar and thermal properties, In two quite distinct climates in India (temperate and hot), the potential for energy savings and carbon emission abatement using PCM-filled double-glazing units for a multi-story office building was explored. Computations of the year-round cost savings of glazing systems for different latent heat utilization levels (25, 50, 75, and 100%) revealed that the full utilization of latent heat (100%) resulted in the maximum cost reductions of 69817 and 66344 dollars per year for temperate (New Delhi) and hot (Madras) climates. The glazing systems with OM 30 PCMs have concluded the highest carbon emission abatements of 855 and 812 tCO2/year for temperate and hot climates, respectively. Additionally, the economic analysis was performed, and it was discovered that OM30 had the shortest payback period of 3.2 years for 100% latent heat utilization under hot environmental conditions. PCM-based glazing systems revealed remarkable outcomes and can help achieve better thermal conditions and energy conservation in buildings.
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