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ASHRAE OR-16-C075

CFD Design and Validation of a Thermal Storage Tank System and Its Impact in a Design-Build Project

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

Abstract: The use of advanced engineering tools in HVAC industry has increased as the cost of computational fluid dynamics (CFD) has become more affordable for engineering firms. A thermal storage tank system utilized a series of vertical tanks to store chilled water and supplement chillers in the event of a power failure. Chilled water is routed from the storage tanks to critical equipment during chiller re-start, bridging the gap in time that the chillers are unable to provide set-point chilled water due to power failure and subsequent required time to re-start. The main challenge of the tank sizing was to optimize the tanks in order to maximize the output time of stored chilled water while minimizing the height and quantity of the tanks. The goal was achieved through an innovative design in which the tank diffusers were designed through a series of simulations. Once installed, the system was tested rigorously to the same conditions that were previously simulated during design. The result of field-testing verified that the CFD model was accurate within two percent margin of error. Utilization of this process allowed the design-build team to save installation time, money, materials, and building square footage by reducing the number of required storage tanks to provide the required stored chilled water quantity.
URI: http://mapnamagz.yabesh.ir/std;query=autho4A5893/handle/yse/210346
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    ASHRAE OR-16-C075

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contributor authorASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.
date accessioned2017-09-04T18:28:09Z
date available2017-09-04T18:28:09Z
date copyright2016.01.01
date issued2016
identifier otherIPXPOFAAAAAAAAAA.pdf
identifier urihttp://mapnamagz.yabesh.ir/std;query=autho4A5893/handle/yse/210346
description abstractThe use of advanced engineering tools in HVAC industry has increased as the cost of computational fluid dynamics (CFD) has become more affordable for engineering firms. A thermal storage tank system utilized a series of vertical tanks to store chilled water and supplement chillers in the event of a power failure. Chilled water is routed from the storage tanks to critical equipment during chiller re-start, bridging the gap in time that the chillers are unable to provide set-point chilled water due to power failure and subsequent required time to re-start. The main challenge of the tank sizing was to optimize the tanks in order to maximize the output time of stored chilled water while minimizing the height and quantity of the tanks. The goal was achieved through an innovative design in which the tank diffusers were designed through a series of simulations. Once installed, the system was tested rigorously to the same conditions that were previously simulated during design. The result of field-testing verified that the CFD model was accurate within two percent margin of error. Utilization of this process allowed the design-build team to save installation time, money, materials, and building square footage by reducing the number of required storage tanks to provide the required stored chilled water quantity.
languageEnglish
titleASHRAE OR-16-C075num
titleCFD Design and Validation of a Thermal Storage Tank System and Its Impact in a Design-Build Projecten
typestandard
page8
statusActive
treeASHRAE - American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.:;2016
contenttypefulltext
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