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Thermal Model and Experimental Validation of Humidifier Systems as Commissioning Tools in HVAC Systems
This paper presents the results of an experimental study performed to obtain a simplified model applicable to two adiabatic humidification systems: wetted wires and centrifugal atomizing. The aims of this study are to provide a model to be used in situ as a diagnosis tool in the commissioning of air-conditioning systems, and to develop a comparison between “wet” and “therma” effectiveness methodologies that also can be useful for the commissioning process. The model is able to predict the exhaust dry-air temperature, exhaust humidity ratio, and the humidifier effectiveness by using as inputs the supply-air temperature and relative humidity as well as the air and water mass flow rates. Simplicity and accuracy are the crucial factors. A series of tests are performed in order to validate the model.
Thermal Model and Experimental Validation of Humidifier Systems as Commissioning Tools in HVAC Systems
This paper presents the results of an experimental study performed to obtain a simplified model applicable to two adiabatic humidification systems: wetted wires and centrifugal atomizing. The aims of this study are to provide a model to be used in situ as a diagnosis tool in the commissioning of air-conditioning systems, and to develop a comparison between “wet” and “therma” effectiveness methodologies that also can be useful for the commissioning process. The model is able to predict the exhaust dry-air temperature, exhaust humidity ratio, and the humidifier effectiveness by using as inputs the supply-air temperature and relative humidity as well as the air and water mass flow rates. Simplicity and accuracy are the crucial factors. A series of tests are performed in order to validate the model.
Thermal Model and Experimental Validation of Humidifier Systems as Commissioning Tools in HVAC Systems
Díaz, Néstor Fonseca (author) / Lebrun, Jean (author) / Hannay, Jules (author)
HVAC&R Research ; 15 ; 1045-1063
2009-11-01
19 pages
Article (Journal)
Electronic Resource
Unknown
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