The current model was developed using MATLAB and was
validated using experimental data from a number of different
sources, most critically Costelloe and Finn [7]. As part of an ongoing
research programme, this mathematical model will be integrated
with an EnergyPlus simulation model of a commercial building.
This work is motivated by the broader research question which
aims to examine the performance limitations of open forced
draught counter cooling towers as a mechanism for providing
chilled water for building cooling in temperature climates. In
particular, the question will be considered in the context of integrating
the cooling tower with a building radiant cooling system
and displacement ventilation system for conditioning within
typical commercial buildings. This will allow the building energy
simulation model to be used to analyse the integrated performance
of the system, thereby allowing the evaporative/radiant cooling
system to be evaluated for different building loads, different
climate types, as well as allowing system optimisation studies to be
carried out.
The current model was developed using MATLAB and was
validated using experimental data from a number of different
sources, most critically Costelloe and Finn [7]. As part of an ongoing
research programme, this mathematical model will be integrated
with an EnergyPlus simulation model of a commercial building.
This work is motivated by the broader research question which
aims to examine the performance limitations of open forced
draught counter cooling towers as a mechanism for providing
chilled water for building cooling in temperature climates. In
particular, the question will be considered in the context of integrating
the cooling tower with a building radiant cooling system
and displacement ventilation system for conditioning within
typical commercial buildings. This will allow the building energy
simulation model to be used to analyse the integrated performance
of the system, thereby allowing the evaporative/radiant cooling
system to be evaluated for different building loads, different
climate types, as well as allowing system optimisation studies to be
carried out.
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