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SYMBOLS AND ABBREVIATIONS
DERIVATION OF EQUATIONS FOR ENERGY AND MOISTURE
TEMPERATURE AND VAPOR DISTRIBUTION
4 other sections not shown
air flow air is greater air leaves air space Anderlind APPENDIX Bernt Johansson CM CM CM coefficient of surface cold side contraflux insulation contraflux roof convection corresponding corrugated danger of condensation determined dynamic insulation dynamic U-value Energy flow equation 4.7 example Experimen(al fans flow of air flow of energy flow of heat function of air heat flow Heat losses ID ID ID insulating layer insulating material kdyn kg/m h m/h Ap mean annual temperature measured and calculated mineral wool moisture transport nondimensional obtained outer roof proflux floor proflux insulation purlins Radiative coefficient relative humidity roofing sheets saturation vapor content sheet metal shown in figure Specific heat capacity subfloor space surface heat transfer surface temperature Table for function temperature and vapor temperature gradient Theore(ical Thickness theoretical thermal conductivity thermal insulation thermal transmittance tion total thermal resistance transport of moisture Udyn ventilation requirement vpcp warm side