Publication | Closed Access
Investigating Indoor Air Quality and Thermal Comfort Using a Numerical Thermal Manikin
70
Citations
17
References
2007
Year
EngineeringEnergy EfficiencyAir QualityGreen BuildingSocial SciencesBuilt EnvironmentOccupant ComfortThermal ModelingThermodynamicsNumerical Thermal ManikinAir ConditioningVentilationDesignHeat TransferPersonalised VentilationIndoor ClimateThermal ComfortBuilding ScienceIndoor Air QualityAir PollutionPv SystemThermal Engineering
In this paper, we investigated the pollutant exposure reduction and thermal comfort that can be achieved with personalised ventilation (PV) design when a PV system is combined with two types of background air conditioning systems. For the investigation of inhaled air quality, pollutants emitted from building materials are the targeted pollutants; and for the investigation of thermal comfort, local discomfort associated with nonuniform thermal environment is focused upon. These investigations were performed by combining CFD simulation of the 3D air flow and a multi-nodal humanbody thermo-regulation model. The results reveal some new characteristics of the three typical air distribution designs, i.e. mixed ventilation, displacement ventilation and PV, and provide insight into the possible optimisation of system combinations.
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