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ASHRAE OR-16-C074

Using Building's Thermal Mass as Short Term Integrated Energy Storage

Organization:
ASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
Year: 2016

Abstract: Building integrated thermal energy storage (BITES) systems specifically ventilated concrete slabs (VCS) has been discussed in this article. Additionally, a simplified three dimensional model of the VCS was developed in SolidWorks Flow Simulation software. The model was used to better understand the charging and discharging process of the VCS as a thermal energy storage. It was tested for multiple charging and discharging scenarios such as being connected to the building integrated photovoltaic and thermal (BIPV/T) system or using an air source heat pump (ASHP) as the heat source. Preliminary results show VCS is able to store up to 30% of the generated energy by BIPV/T and charging process is even more effective with an ASHP. Moreover, it was shown a properly charged VCS would warm up the cold outdoor air by approximately 5°C (9°F) to be used as an inlet for the heat pump.
URI: https://yse.yabesh.ir/std/handle/yse/180944
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    ASHRAE OR-16-C074

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contributor authorASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
date accessioned2017-09-04T17:57:52Z
date available2017-09-04T17:57:52Z
date copyright2016.01.01
date issued2016
identifier otherFPXPOFAAAAAAAAAA.pdf
identifier urihttps://yse.yabesh.ir/std/handle/yse/180944
description abstractBuilding integrated thermal energy storage (BITES) systems specifically ventilated concrete slabs (VCS) has been discussed in this article. Additionally, a simplified three dimensional model of the VCS was developed in SolidWorks Flow Simulation software. The model was used to better understand the charging and discharging process of the VCS as a thermal energy storage. It was tested for multiple charging and discharging scenarios such as being connected to the building integrated photovoltaic and thermal (BIPV/T) system or using an air source heat pump (ASHP) as the heat source. Preliminary results show VCS is able to store up to 30% of the generated energy by BIPV/T and charging process is even more effective with an ASHP. Moreover, it was shown a properly charged VCS would warm up the cold outdoor air by approximately 5°C (9°F) to be used as an inlet for the heat pump.
languageEnglish
titleASHRAE OR-16-C074num
titleUsing Building's Thermal Mass as Short Term Integrated Energy Storageen
typestandard
page8
statusActive
treeASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.:;2016
contenttypefulltext
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