Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond

In this paper, the effect of adding the composite PCM (Phase Change Material) heat storage capsules to the heat storage layer of the salt gradient solar pond on the thermal performance of the solar pond was studied numerically and experimentally. Based on the program-controlled temperature simulatio...

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Main Authors: Hua Wang, Ma Xiaomeng, Zhang Liugang, Xinmin Zhang, Yanyang Mei, Anchao Zhang
Format: Article
Language:English
Published: SAGE Publishing 2021-05-01
Series:Energy Exploration & Exploitation
Online Access:https://doi.org/10.1177/0144598720974160
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spelling doaj-213d38f2eb474334a5b66280efefc46b2021-04-22T21:34:15ZengSAGE PublishingEnergy Exploration & Exploitation0144-59872048-40542021-05-013910.1177/0144598720974160Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pondHua WangMa XiaomengZhang LiugangXinmin ZhangYanyang MeiAnchao ZhangIn this paper, the effect of adding the composite PCM (Phase Change Material) heat storage capsules to the heat storage layer of the salt gradient solar pond on the thermal performance of the solar pond was studied numerically and experimentally. Based on the program-controlled temperature simulation of the solar pond experimental platform, the effect of adding the composite PCM (48–50°C and 58–60°C melting point paraffin) heat storage capsules on the solar pond temperature and stability was studied, and a numerical simulation model was established to be compared by the experimental results. The results showed that the experimental temperature was consistent with the simulation results; the solar pond with PCM capsules had a smaller temperature change range than the conventional solar pond during the phase change process, but it did not have such effect in the non-phase transition process; in terms of flow, the addition of the PCM phase change units could reduce the flow rate of the heat storage zone, and the PCM with a larger latent heat had a more obvious suppression effect on the flow. Therefore, within a certain temperature range, adding PCM units to the solar pond had a positive effect on maintaining the stable temperature and stability of solar pond.https://doi.org/10.1177/0144598720974160
collection DOAJ
language English
format Article
sources DOAJ
author Hua Wang
Ma Xiaomeng
Zhang Liugang
Xinmin Zhang
Yanyang Mei
Anchao Zhang
spellingShingle Hua Wang
Ma Xiaomeng
Zhang Liugang
Xinmin Zhang
Yanyang Mei
Anchao Zhang
Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
Energy Exploration & Exploitation
author_facet Hua Wang
Ma Xiaomeng
Zhang Liugang
Xinmin Zhang
Yanyang Mei
Anchao Zhang
author_sort Hua Wang
title Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
title_short Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
title_full Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
title_fullStr Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
title_full_unstemmed Numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
title_sort numerical and experimental study of effect of paraffin phase change heat storage capsules on the thermal performance of the solar pond
publisher SAGE Publishing
series Energy Exploration & Exploitation
issn 0144-5987
2048-4054
publishDate 2021-05-01
description In this paper, the effect of adding the composite PCM (Phase Change Material) heat storage capsules to the heat storage layer of the salt gradient solar pond on the thermal performance of the solar pond was studied numerically and experimentally. Based on the program-controlled temperature simulation of the solar pond experimental platform, the effect of adding the composite PCM (48–50°C and 58–60°C melting point paraffin) heat storage capsules on the solar pond temperature and stability was studied, and a numerical simulation model was established to be compared by the experimental results. The results showed that the experimental temperature was consistent with the simulation results; the solar pond with PCM capsules had a smaller temperature change range than the conventional solar pond during the phase change process, but it did not have such effect in the non-phase transition process; in terms of flow, the addition of the PCM phase change units could reduce the flow rate of the heat storage zone, and the PCM with a larger latent heat had a more obvious suppression effect on the flow. Therefore, within a certain temperature range, adding PCM units to the solar pond had a positive effect on maintaining the stable temperature and stability of solar pond.
url https://doi.org/10.1177/0144598720974160
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