低成本相变材料与活性炭混合干式地暖系统的动态传热与电能消耗性能

IF 6.6 2区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Donghui Seo, Su-Gwang Jeong
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引用次数: 0

摘要

日益增长的能源短缺加大了探索替代能源以满足基本能源需求的必要性,这些需求一直在不断增加。为了满足能源需求,利用相变材料(PCMs)与地板辐射采暖系统(RFS)相结合的潜热储存技术已引起越来越多的关注,以提高能量储存效率,实现显著的节能,并改善室内热舒适性。为了解决相变材料(PCMs)漏相和导热系数低的缺点,本研究采用活性炭(AC)和石蜡(ACP)开发了一种储热地暖层,并分析了其在干式地暖系统中的热性能和能耗。热工性能分析表明,由于PCM的掺量,真空浸渍AC和石蜡的ACP的潜热比纯石蜡低60.7%。热重分析显示,在第一个峰之后,ACP的质量保留了66.18%,在600°C时,ACP的重量又减少了8.5%,剩下33.82%,这表明AC的重量虽然减少了,但与石蜡相比,ACP的耐热性更强。对不同饰面材料的动态传热性能分析表明,油毡的表面温度偏差最小,为1.7°C,与其他材料相比,PCM线性采暖型干式地板采暖系统的表面温度变化有效地最小化。为减小PCM线性采暖型干式地板采暖系统的表面温度偏差,将PCM容器应用于膜式干式地板采暖系统,分析了其动态传热性能。结果证实,PCM膜干式地板采暖比湿式地板采暖具有更低的表面温度偏差,可以解决线性采暖的缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic heat transfer and electric energy consumption performance of dry floor heating systems mixed with low-cost phase-change material and activated carbon for field application
The growing energy deficit has amplified the necessity for exploring alternatives to fulfill essential energy requirements, which have been consistently increasing. To meet energy demands, integrating latent heat storage technology using phase change materials (PCMs) with radiant floor heating systems (RFS) has garnered increasing attention for enhancing energy storage efficiency, achieving significant energy savings, and improving indoor thermal comfort. To address the shortcomings of phase change materials (PCMs), such as phase leakage and low thermal conductivity, this study developed a thermal storage floor heating layer using activated carbon (AC) and Paraffin wax (ACP), analyzing its thermal performance and energy consumption within a dry floor heating system. The thermal performance analysis showed that the latent heat of ACP, vacuum-impregnated with AC and Paraffin wax, was 60.7 % lower than that of pure Paraffin wax due to the PCM mixing ratio. Thermogravimetric analysis revealed that 66.18 % of the ACP mass remained after the first peak, with an additional 8.5 % weight loss at 600 °C, leaving 33.82 %, indicating that while AC experienced weight loss, ACP demonstrated greater heat durability compared to Paraffin wax. A dynamic heat transfer performance analysis using various finishing materials showed that linoleum had the smallest surface temperature deviation at 1.7 °C, effectively minimizing the surface temperature variation of the PCM linear heating type dry floor heating system compared to other materials. To reduce the surface temperature deviation of the PCM linear heating type dry floor heating system, the dynamic heat transfer performance was analyzed by applying a PCM container to the film dry floor heating system. The results confirmed that the PCM film dry floor heating has a lower surface temperature deviation than wet floor heating, which can address the shortcomings of linear heat-based floor heating.
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来源期刊
Energy and Buildings
Energy and Buildings 工程技术-工程:土木
CiteScore
12.70
自引率
11.90%
发文量
863
审稿时长
38 days
期刊介绍: An international journal devoted to investigations of energy use and efficiency in buildings Energy and Buildings is an international journal publishing articles with explicit links to energy use in buildings. The aim is to present new research results, and new proven practice aimed at reducing the energy needs of a building and improving indoor environment quality.
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