Application of PCM based heat storage system in buildings: a review of mathematical modeling methods and experimental research


Click above | Follow us CONTENTS-Volume31, No.6November – December2022SpringerLink: https://link.springer.com/journal/11630/volumes-and-issues/31-6 Journal of Thermal Science1.

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Application of PCM based thermal energy storage system builds: Astateof heart review on the PCM based thermal energy storage and experimental investments Applications of PCM based thermal storage systems in buildings: a review of mathematical modeling methods and experimental research ChaoZeng, YanpingYuan, FariborzHagighat, Karthik Panchabikesan, Mahmood MastaniJoybari, XiaolingCao, LubomírKlime š Zeng Chao, Yuan Yanping, FariborzHaghighat, Karthik Panchabikesan, Mahmood Mastani Joybari, Cao Xiaoling, Lubom í rKlime š School of Mechanical Engineering, Southwest Jiaotong University, Concordia University, Elsevier, Brno University of Technology https://doi.org/10.1007/s11630-022-1650-5JournalofThermalScience , 2022,31 (6): 1821-1852.

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For composite systems, self-developed MATLAB, mature components in ESP-r, TRNSYS and EnergyPlus can be compatible.

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In addition, most experimental studies are conducted on a laboratory scale to provide data for model validation.

Specifically, this paper reviews the software calculation speed, model simplicity, accuracy (by considering the convection term in the melting process) and the application progress of artificial neural network in phase change energy storage system in detail.

2) Special Catalogue of Asian Gas Turbine International Conference – 1 Special Catalogue of Asian Gas Turbine International Conference – 2 Journal Introduction Journal of Thermal Science was founded in 1992, It is an English journal sponsored by the Institute of Engineering Thermophysics, Chinese Academy of Sciences, and an academic journal on energy, power, and environment.

International serial number: ISSN1003-2169 (paper), ISSN: 1993-033X (electronic) Domestic serial number: CN11-2853/O4 Website: https://www.springer.com/journal/11630 Tel.: 010-82545967 (contribution, proofreading) 010-82543009 (proofreading, finance) 010-62561887 (publishing, general affairs) Email: mabingqian@iet.cn (Submission and proofreading) rkxxb2@iet.cn (School reform, finance) rkxxb@iet.cn (Publishing, general affairs) Address: Institute of Engineering Thermophysics, Chinese Academy of Sciences, No.

This review is expected to help establish a unified, simplified, visual and accurate simulation platform based on building phase change energy storage devices and systems.

At the same time, this paper puts forward future research prospects.

The analysis shows that ANSYS Fluent is the most widely used software for analyzing the specific heat transfer phenomena of phase change energy storage device, and the self-developed simplified mathematical model is more flexible and easier for users to promote and apply on a large scale.

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At the same time, this paper also collates the experimental research status of energy storage devices and systems based on phase change materials.

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Abstract: This review critically analyzes the latest progress in experiments and mathematical models of the heat storage and release process of phase change energy storage devices and systems in buildings, including commercial software for mathematical modeling of phase change energy storage systems and built-in numerical calculation models, aiming to present users with appropriate research methods in different situations.

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