HVAC Ventilation Strategies: The Contribution for Thermal Comfort, Energy Efficiency, and Indoor Air Quality
Author(s) -
Jatuwat Varodompun,
Mojtaba Navvab
Publication year - 2007
Publication title -
journal of green building
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.248
H-Index - 21
eISSN - 1943-4618
pISSN - 1552-6100
DOI - 10.3992/jgb.2.2.131
Subject(s) - hvac , ashrae 90.1 , indoor air quality , energy recovery ventilation , ventilation (architecture) , displacement ventilation , thermal comfort , computational fluid dynamics , environmental science , airflow , natural ventilation , parametric statistics , marine engineering , air conditioning , simulation , engineering , automotive engineering , mechanical engineering , environmental engineering , meteorology , aerospace engineering , physics , statistics , mathematics
In Heating Ventilating and Air Conditioning (HVAC) systems, ventilation strategies impact building energy consumption, occupants' thermal comfort and Indoor Air Quality (IAQ). Ventilation strategies such as Mixing Jet Ventilation (MJV), Displacement Ventilation (DV), and Impinging Jet Ventilation (IJV) are operated on the different principals. MJV relies on dilution, while DV and IJV rely on both dilution and stratification. Due to climatic variation, ventilation strategies must be operated under different cooling and heating load scenarios. Typically, each ventilation strategy controls the indoor environment through a single adequate flow rate with suitable supply parameters such as temperature, pollutant concentration, vapor, velocity, etc. Hence, the indoor thermal and IAQ condition are independently impacted. A room with excellent thermal condition is possible to have poor IAQ. Given this limitation, vast air flow variables, and occupants' activities, the performances evaluation of these stra...
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