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This post was last edited by hjztbwg on 2016-1-25 at 15:49. The common methods for calculating the heat transfer due to cold air infiltration are (A) Gap method, air exchange rate method, percentage method; B Equivalent length method, equivalent resistance method, gap method; C Equivalent length method, air exchange rate method, percentage method; D Gap method, equivalent length method, air exchange rate method
The gap method, the air change rate method, the percentage method
The gap method, the air change rate method, the percentage method
A. Gap method, air change rate method, percentage method.
The gap method, the air change rate method, the percentage method
The common methods for calculating the heat loss due to cold air infiltration are (A) Gap method, air change rate method, percentage method; B Equivalent length method, equivalent resistance method, gap method; C Equivalent length method, air change rate method, percentage method; D Gap method, equivalent length method, air change rate method
The common methods for calculating the heat loss due to cold air infiltration are (A) Gap method, air change rate method, percentage method; B Equivalent length method, equivalent resistance method, gap method; C Equivalent length method, air change rate method, percentage method; D Gap method, equivalent length method, air change rate method
The common methods for calculating the heat loss due to cold air infiltration are (C) A. Gap method, air change rate method, percentage method; B. Equivalent length method, equivalent resistance method, gap method; C. Equivalent length method, air change rate method, percentage method; D. Gap method, equivalent length method, air change rate method