Summary
An analytical model of the heat and mass transfer performance of an indirect evaporative cooling system with condensation from primary airflow is developed in this paper. Different forms of heat transfer effectiveness have been defined, which can be used to calculate the outlet temperatures of the two airstreams. The fraction of condensation area to the total heat transfer area F(A) is proposed, which is an important parameter in the energy performance simulation of the installation. A complete set of independent dimensionless parameters that affect the overall performance of the heat exchanger has been developed as well. The influence of these parameters on the effectiveness and F(A) is discussed. Finally, an experimental comparison is presented for validating part of the simulation model.
Details
- Original title: Study on performance correlations of an indirect evaporative cooler with condensation from primary airflow.
- Record ID : 2006-2570
- Languages: English
- Source: HVAC&R Research - vol. 12 - n. 3
- Publication date: 2006/07
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Performance of a run-around system for HVAC hea...
- Author(s) : FAN H., SIMONSON C. J., BESANT R. W., et al.
- Date : 2006/06
- Languages : English
- Source: HVAC&R Research - vol. 12 - n. 2
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The numerical model for direct evaporative cooler.
- Author(s) : KOVACEVIC I., SOURBRON M.
- Date : 2017/02/25
- Languages : English
- Source: Applied Thermal Engineering - vol. 113
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Mechanical supply and extract ventilation syste...
- Author(s) : BLEY H.
- Date : 1991/09
- Languages : German
- Source: Haustechnik - n. 18
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Heat and mass transfer in plate-fin sinusoidal ...
- Author(s) : ZHANG L. Z.
- Date : 2008/02
- Languages : English
- Source: International Journal of Heat and Mass Transfer - vol. 51 - n. 3-4
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Evaluating the steady-state performance of a sm...
- Author(s) : MOGHADDAM D. G., LEPOUDRE P., BESANT R. W., et al.
- Date : 2013/06/16
- Languages : English
- Source: Clima 2013. 11th REHVA World Congress and 8th International Conference on Indoor Air Quality, Ventilation and Energy Conservation in Buildings.
- Formats : PDF
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