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Infiltration rates, with the exception of measured values for the underground house, were based on educated guesses. Both the moderately well-insulated and passive/active hybrid houses were estimated to have one air change per hour because no special efforts were made in these houses to reduce this rate. 24 air changes per hour used in analyzing the super-insulated house was based on measured figures of other super-insulated houses. 5 air change per hour level of infiltration in the double envelope house was assumed to be this low because of the inherent integrity of the outer shell of this dwelling.
The impact of potential differences in insolation levels are perhaps less crucial to this analysis because they are used only to calculate the predicted auxiliary fuel use as compared with actual fuel consumed. Given this use, the insolation figures used, though admittedly not absolutely accurate, probably represent a better data base than is normally applied in the Solar Load Ratio calculating technique. Degree Days Base 65° F MINNEAPOLIS October November December January February March Apri I Dai Iv Average 1979-80 1980-81 DULUTH Averaqe 1980-81 16 33 47 53 49 37 20 18 33 39 50 46 38 16 20 28 45 47 41 27 16 20 38 51 56 54 44 28 26 35 53 53 49 37 26 Seasona I Total : Fa I I Winter Spri nq 1958 3607 2150 1947 3341 1907 2094 1642 2275 3883 2629 2376 3226 Annual Total 7714 7382 6775 8803 8397 Deviation From Ave.
Determining the passive and/or active solar gain of each house is a bit less straightforward in the absence of monitored data. We have chosen to represent this quantity as the difference between the calculated heat loss of the house and the auxiliary fuel plus the internal gains calculated for each dwelling. To support this procedure, we suggest that it conforms with the level of confidence which might be ascribed to each of these measures. Auxiliary fuel consumed and internal gains were considered to be the most reliable of these figures.