ASHRAE OR-10-047-2010 Infiltration Investigation of a Radiantly Heated and Cooled Office《辐射加热和冷却办公室的渗透调查》.pdf
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1、2010 ASHRAE 437ABSTRACTAir infiltration has a significant impact on the heating andcooling loads of small office and residential buildings. In aradiantly heated and cooled office, air infiltration normallydetermines whether this type of system can operate withoutcondensation on the radiant cooling s
2、urface in summer in mildand humid climatic conditions, because infiltration may bringconsiderable moisture into the space. The office studied expe-riences infiltration that seriously limits the effectiveness of theradiant cooling system and active desiccant dehumidificationsystem. Earlier infiltrati
3、on measurements using the tracer gasprocedure showed infiltration levels of 0.7-1.12 ACH, whileCO2concentration measurements gave values from 0.1-0.2ACH. This paper reports the results of infiltration levels deter-mined from blower door measurements and logged humiditydata from the ventilation unit
4、as well as a reanalysis of the CO2data. There were still significant discrepancies that areresolved by combining the measured results with a calibratedsimulation and additional site measurements. It is found thatinfiltration in the studied office is from two sources: one isoutdoor air; the other is
5、the indoor air from the floor below thestudied office. The total air infiltration for the studied spacemay vary from 0.74 ACH in the summer to 1.5 ACH in thewinter, while the air leaking into the studied office from thespace under the floor may range from 0.46-1.03 ACH.INTRODUCTIONTo provide a healt
6、hy indoor environment for buildingoccupants, an adequate outside air supply is necessary todilute and remove indoor air contaminants. Outside air isnormally provided by mechanical ventilation in commercialbuildings and by natural ventilation in most residentialbuildings. However, the energy required
7、 to condition theoutdoor air in buildings is often a significant portion of thetotal space conditioning load. Large commercial buildingsnormally operate continuously at a slightly pressurized condi-tion in which air infiltration is expected to have less impact onbuilding conditioning load. In most s
8、mall office buildings andresidential buildings, the air infiltration has a significantimpact on the space conditioning load since the buildings arenot pressurized and air conditioning systems operate intermit-tently. In a radiantly heated and cooled office, the infiltrationnot only has an impact on
9、building heating and cooling load;it also strongly affects the indoor humidity level and hence theability to operate the radiant cooling panels without conden-sation. The magnitude of the infiltration into this type of thebuilding must be known in order to size the radiant panels anddehumidification
10、 equipment for this type of system properly.Significant research has been done on building air flowmodels and infiltration measurement procedures. Building airflow models can be classified as single zone models and multi-zone models. A widely used multizone model is COMISwhich was developed by Feust
11、el and Raynor-Hoosen (1990),and improved by Feustel (1999). The single zone LBNLmodel developed by Sherman and Grimsrud (1980) has beenused very widely. Walker and Wilson (1993) also proposed awell recognized enhanced single zone model. For small officebuildings and residential buildings, the single
12、 zone model isapplicable. According to Persily (1986) and Walker andWilson (1998), these models can have an error of 40% orhigher. In order to obtain an applicable yearly infiltrationprofile, these models should be combined with air infiltrationmeasurements. Commonly used infiltration measurementpro
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