Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank

A physical model and dynamic simulation models of a solar phase-change heat storage heating system with a plate solar collector, phase-change material (PCM) storage tank, plate heat exchanger, and auxiliary heat sources were established. A control strategy and numerical models for each of seven diff...

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Main Authors: Juan Zhao, Yasheng Ji, Yanping Yuan, Zhaoli Zhang, Jun Lu
Format: Article
Language:English
Published: MDPI AG 2017-12-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/10/12/2128
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spelling doaj-07d500d78892434787f18932b597743d2020-11-25T01:31:50ZengMDPI AGEnergies1996-10732017-12-011012212810.3390/en10122128en10122128Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage TankJuan Zhao0Yasheng Ji1Yanping Yuan2Zhaoli Zhang3Jun Lu4School of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, ChinaSchool of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, ChinaSchool of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, ChinaSchool of Mechanical Engineering, Southwest Jiaotong University, Chengdu 610031, ChinaSchool of Urban Construction & Environment Engineering, Chongqing University, Chongqing 400045, ChinaA physical model and dynamic simulation models of a solar phase-change heat storage heating system with a plate solar collector, phase-change material (PCM) storage tank, plate heat exchanger, and auxiliary heat sources were established. A control strategy and numerical models for each of seven different operation modes that cover the entire heating season of the system were developed for the first time. The seven proposed operation modes are Mode 1: free cooling; Mode 2: reservation of heat absorbed by the solar collector in the PCM storage tank when there is no heating demand; Mode 3: direct supply of the heating demand by the solar collector; Mode 4: use of the heat absorbed by the solar collector to meet the heating demands, with the excess heat stored in the PCM storage tank; Mode 5: use of heat stored in the PCM storage tank to meet the heating demands, Mode 6: combined use of heat stored in the PCM storage tank and the auxiliary heating sources to meet the heating demands; and Mode 7: exclusive use of the auxiliary heat sources in order to meet the heating demands. Mathematical models were established for each of the above seven operation modes, taking into consideration the effects of the outdoor meteorological parameters and terminal load on the heating system. The real-time parameters for the entire heating season of the system with respect to the different operation modes can be obtained by solving the simulation models, and used as reference for the optimal design and operation of the actual system.https://www.mdpi.com/1996-1073/10/12/2128solar energyPCM storage tankoperation modecontrol strategydynamic simulation model
collection DOAJ
language English
format Article
sources DOAJ
author Juan Zhao
Yasheng Ji
Yanping Yuan
Zhaoli Zhang
Jun Lu
spellingShingle Juan Zhao
Yasheng Ji
Yanping Yuan
Zhaoli Zhang
Jun Lu
Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
Energies
solar energy
PCM storage tank
operation mode
control strategy
dynamic simulation model
author_facet Juan Zhao
Yasheng Ji
Yanping Yuan
Zhaoli Zhang
Jun Lu
author_sort Juan Zhao
title Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
title_short Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
title_full Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
title_fullStr Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
title_full_unstemmed Seven Operation Modes and Simulation Models of Solar Heating System with PCM Storage Tank
title_sort seven operation modes and simulation models of solar heating system with pcm storage tank
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2017-12-01
description A physical model and dynamic simulation models of a solar phase-change heat storage heating system with a plate solar collector, phase-change material (PCM) storage tank, plate heat exchanger, and auxiliary heat sources were established. A control strategy and numerical models for each of seven different operation modes that cover the entire heating season of the system were developed for the first time. The seven proposed operation modes are Mode 1: free cooling; Mode 2: reservation of heat absorbed by the solar collector in the PCM storage tank when there is no heating demand; Mode 3: direct supply of the heating demand by the solar collector; Mode 4: use of the heat absorbed by the solar collector to meet the heating demands, with the excess heat stored in the PCM storage tank; Mode 5: use of heat stored in the PCM storage tank to meet the heating demands, Mode 6: combined use of heat stored in the PCM storage tank and the auxiliary heating sources to meet the heating demands; and Mode 7: exclusive use of the auxiliary heat sources in order to meet the heating demands. Mathematical models were established for each of the above seven operation modes, taking into consideration the effects of the outdoor meteorological parameters and terminal load on the heating system. The real-time parameters for the entire heating season of the system with respect to the different operation modes can be obtained by solving the simulation models, and used as reference for the optimal design and operation of the actual system.
topic solar energy
PCM storage tank
operation mode
control strategy
dynamic simulation model
url https://www.mdpi.com/1996-1073/10/12/2128
work_keys_str_mv AT juanzhao sevenoperationmodesandsimulationmodelsofsolarheatingsystemwithpcmstoragetank
AT yashengji sevenoperationmodesandsimulationmodelsofsolarheatingsystemwithpcmstoragetank
AT yanpingyuan sevenoperationmodesandsimulationmodelsofsolarheatingsystemwithpcmstoragetank
AT zhaolizhang sevenoperationmodesandsimulationmodelsofsolarheatingsystemwithpcmstoragetank
AT junlu sevenoperationmodesandsimulationmodelsofsolarheatingsystemwithpcmstoragetank
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