Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy

In the Yangtze River zone of China, the heating operation in buildings is mainly part-time and part-space, which could affect the indoor thermal comfort while making the thermal process of building envelope different. This paper proposed to integrate phase change material (PCM) to building walls to...

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Main Authors: Yanru Li, Enshen Long, Lili Zhang, Xiangyu Dong, Suo Wang
Format: Article
Language:English
Published: SAGE Publishing 2021-01-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/0144598720969217
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spelling doaj-4c65848f07c94c7da0cda7127f7397732021-01-12T00:35:07ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542021-01-013910.1177/0144598720969217Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategyYanru LiEnshen LongLili ZhangXiangyu DongSuo WangIn the Yangtze River zone of China, the heating operation in buildings is mainly part-time and part-space, which could affect the indoor thermal comfort while making the thermal process of building envelope different. This paper proposed to integrate phase change material (PCM) to building walls to increase the indoor thermal comfort and attenuate the temperature fluctuations during intermittent heating. The aim of this study is to investigate the influence of this kind of composite phase change wall (composite-PCW) on the indoor thermal environment and energy consumption of intermittent heating, and further develop an optimization strategy of intermittent heating operation by using EnergyPlus simulation. Results show that the indoor air temperature of the building with the composite-PCW was 2–3°C higher than the building with the reference wall (normal foamed concrete wall) during the heating-off process. Moreover, the indoor air temperature was higher than 18°C and the mean radiation temperature was above 20°C in the first 1 h after stopping heating. Under the optimized operation condition of turning off the heating device 1 h in advance, the heat release process of the composite-PCW to the indoor environment could maintain the indoor thermal environment within the comfortable range effectively. The composite-PCW could decrease 4.74% of the yearly heating energy consumption compared with the reference wall. The optimization described can provide useful information and guidance for the energy saving of intermittently heated buildings.https://doi.org/10.1177/0144598720969217
collection DOAJ
language English
format Article
sources DOAJ
author Yanru Li
Enshen Long
Lili Zhang
Xiangyu Dong
Suo Wang
spellingShingle Yanru Li
Enshen Long
Lili Zhang
Xiangyu Dong
Suo Wang
Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
Energy Exploration & Exploitation
author_facet Yanru Li
Enshen Long
Lili Zhang
Xiangyu Dong
Suo Wang
author_sort Yanru Li
title Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
title_short Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
title_full Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
title_fullStr Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
title_full_unstemmed Energy-saving potential of intermittent heating system: Influence of composite phase change wall and optimization strategy
title_sort energy-saving potential of intermittent heating system: influence of composite phase change wall and optimization strategy
publisher SAGE Publishing
series Energy Exploration & Exploitation
issn 0144-5987
2048-4054
publishDate 2021-01-01
description In the Yangtze River zone of China, the heating operation in buildings is mainly part-time and part-space, which could affect the indoor thermal comfort while making the thermal process of building envelope different. This paper proposed to integrate phase change material (PCM) to building walls to increase the indoor thermal comfort and attenuate the temperature fluctuations during intermittent heating. The aim of this study is to investigate the influence of this kind of composite phase change wall (composite-PCW) on the indoor thermal environment and energy consumption of intermittent heating, and further develop an optimization strategy of intermittent heating operation by using EnergyPlus simulation. Results show that the indoor air temperature of the building with the composite-PCW was 2–3°C higher than the building with the reference wall (normal foamed concrete wall) during the heating-off process. Moreover, the indoor air temperature was higher than 18°C and the mean radiation temperature was above 20°C in the first 1 h after stopping heating. Under the optimized operation condition of turning off the heating device 1 h in advance, the heat release process of the composite-PCW to the indoor environment could maintain the indoor thermal environment within the comfortable range effectively. The composite-PCW could decrease 4.74% of the yearly heating energy consumption compared with the reference wall. The optimization described can provide useful information and guidance for the energy saving of intermittently heated buildings.
url https://doi.org/10.1177/0144598720969217
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AT enshenlong energysavingpotentialofintermittentheatingsysteminfluenceofcompositephasechangewallandoptimizationstrategy
AT lilizhang energysavingpotentialofintermittentheatingsysteminfluenceofcompositephasechangewallandoptimizationstrategy
AT xiangyudong energysavingpotentialofintermittentheatingsysteminfluenceofcompositephasechangewallandoptimizationstrategy
AT suowang energysavingpotentialofintermittentheatingsysteminfluenceofcompositephasechangewallandoptimizationstrategy
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