Dynamic Thermal Performance of an Experimental Masonry BuildingU.S. National Bureau of Standards, 1973 - 98 pages |
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ABSP air temperature cycle ASHRAE average inside air Brüel and Kjaer BTU/HR Bureau of Standards CALCULATED HEATING LOAD ceiling center of room CFML Comparison computer program concrete blocks CONTINUE cooling loads CR(I DESCRIPTION OF LAYERS DIMENSION door DRY-BULB TEMPERATURE experimental building EXPOSURE floating test floor FOOT LEVEL FORMAT 50HO GO TO 50 heat conduction heat flow heat flux HEAT TRANSFER COEFFICIENT indoor air temperature input inside air temperature inside surface insulation inside INTERNAL MASS IRUN Kjaer Model load profiles masonry maximum heating load measured and calculated MEASURED HEATING LOAD meter National Bureau NBSLD NEXP noise reduction Number outdoor temperature perature percent PLANE WALL LAYER polystyrene polystyrene insulation predicted procedures RADIATION REAL RES(I RETURN END shown in figure single-pane windows sol-air temperature solid SUBROUTINE TEMPERATURE DEVIATIONS thermal conductivity thermal insulation Thermal resistance thermocouples tion variations WALL LAYER L(I WET-BULB TEMPERATURE WRITE
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Page 32 - Certain commercial equipment, instruments, or materials are identified in this paper in order to adequately specify the experimental procedure. In no case does such identification imply recommendation or endorsement by the National Bureau of Standards, nor does it imply that the material or equipment identified is necessarily the best available for the purpose.