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Heat transfer reduction in buildings by embedding phase change material in multi-layer walls: Effects of repositioning, thermophysical properties and thickness of PCM

机译:通过在多层壁中嵌入相变材料来减小建筑物的传热减少:重新定位,热物理性和PCM厚度的影响

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摘要

Passive latent heat thermal energy storage approach incorporating phase change materials (PCM) is a brilliant technique to tackle high energy consumption issue in buildings. This paper investigated the thermal performance of the conventional walls of buildings in Isfahan, Iran with the inclusion of thirteen different phase change materials. The studied base wall was composed of plaster (2 cm), clay brick (15 cm), and cement (3 cm). The effect of PCM position inside the wall on the heat transfer was assessed in two scenarios, namely: close to the interior and close to exterior. The nonlinear governing equations were solved using the finite volume method. The results show that the performance of PCM-based wall is strongly influenced by the thermal conductivity, phase-change enthalpy and melting temperature of PCM. A PCM can more efficiently reduce the heat transfer to the interior space in case it has a lower thermal conductivity, has a higher latent heat of phase-change, and its phase-change temperature is closer to the room temperature. Moreover, the thermal conductivity has priority over other PCM thermophysical properties. The lower PCM thermal conductivity leads to transfer the lower amount of heat to the interior space. A two-fold increase in the thickness of the PCM leads to less than a twofold reduction in the heat transfer. Among the studied PCMs, the heat transfer reduction by Enerciel 22 was within the range 15.6-47.6%, while this range was 2-7.8% for CaCl2 center dot 6H(2)O.
机译:包含相变材料(PCM)的被动潜热热能储存方法是一种在建筑物中解决高能耗问题的辉煌技术。本文调查了伊朗伊斯法罕,伊朗常规建筑物墙壁的热性能,其中包含十三个不同的相变材料。研究的底壁由石膏(2cm),粘土砖(15cm)和水泥(3cm)组成。在两种情况下评估了热传递壁内壁内的PCM位置的影响,即:靠近内部并靠近外部。使用有限体积法解决非线性控制方程。结果表明,基于PCM的壁的性能受到PCM的热导率,相变焓和熔化温度的强烈影响。在导热性较低的情况下,PCM可以更有效地将传热降低到内部空间的热传递,相变的潜热更高,并且其相变温度更接近室温。此外,导热率优先于其他PCM热物理性质。较低的PCM导热率导致将较低量的热量转移到内部空间。 PCM厚度的两倍增加导致热传递的重倍数低于两倍。在研究的PCM中,Enerciel 22的传热减少在15.6-47.6%的范围内,而CaCl2中心点6h(2)O的该范围为2-7.8%。

著录项

  • 来源
    《Energy Conversion & Management》 |2019年第9期|43-56|共14页
  • 作者单位

    Ocean Univ China Sch Engn Tsingdao 266100 Peoples R China|Univ Wollongong Sch Mech Mat Mechatron & Biomed Engn Wollongong NSW 2522 Australia;

    Publ Author Appl Educ & Training Coll Technol Studies Dept Automot & Marine Engn Technol Kuwait Kuwait;

    Soran Univ Fac Engn Dept Civil Engn Soran Kurdistan Regio Iraq;

    Islamic Azad Univ Dept Mech Engn Najafabad Branch Najafabad Iran;

    Kermanshah Univ Technol Dept Mech Engn Kermanshah Iran;

    Ton Duc Thang Univ Adv Inst Mat Sci Lab Magnetism & Magnet Mat Ho Chi Minh City Vietnam|Ton Duc Thang Univ Fac Sci Appl Ho Chi Minh City Vietnam;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PCM; Heat transfer reduction; Thermal conductivity; Multi-layer walls; Thickness; CFD;

    机译:PCM;传热减少;导热率;多层墙壁;厚度;差价合约;

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