Building Research Journal, Volume 52SAP, 2004 - Building |
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Page 64
... coefficient of the web was taken as wo = A / 500 and A / B = 1. In the solution the formulae ( 3 ) to ( 6 ) have been used . According to Eurocode 3 , 2001 the stress range is Δσ = 2000 NO.2 MPa ( 7 ) where N is the number of cycles of ...
... coefficient of the web was taken as wo = A / 500 and A / B = 1. In the solution the formulae ( 3 ) to ( 6 ) have been used . According to Eurocode 3 , 2001 the stress range is Δσ = 2000 NO.2 MPa ( 7 ) where N is the number of cycles of ...
Page 104
... coefficients a ' ( x ) , j = 1 , 2 , ... , μ , which are functions of the space co - ordinates x = [ 11 , 12 ] . For ... coefficient vector a ( x ) is determined by minimizing a weighted discrete L2 defined as n - J ( x ) = Σwa ( x ) ...
... coefficients a ' ( x ) , j = 1 , 2 , ... , μ , which are functions of the space co - ordinates x = [ 11 , 12 ] . For ... coefficient vector a ( x ) is determined by minimizing a weighted discrete L2 defined as n - J ( x ) = Σwa ( x ) ...
Page 204
... coefficient for water vapour transfer [ s m - 1 ] , ta is the ambient air temperature [ ° C ] , ts is the surface ... coefficients for heat and water vapour transport ( for example in the room corners ) and the real indoor air ...
... coefficient for water vapour transfer [ s m - 1 ] , ta is the ambient air temperature [ ° C ] , ts is the surface ... coefficients for heat and water vapour transport ( for example in the room corners ) and the real indoor air ...
Contents
CONTENTS | 1 |
T Kambezidis H D Katsoulis B D Muneer T Bartzokas | 19 |
CONTENTS | 137 |
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Academy of Sciences aerated concrete aeroelastic air change rate air flow analysis Beskos BIE system boundary conditions Boundary Element Methods boundary integral equations Bratislava Bratislava 5-mi data Building Research Journal calculated cavity coefficients computational considered crack DARULA daylight deflection deformations distribution domain Dv/Ev ratios dynamic elastic formulation frequency function girder heat and moisture hygro-thermal indoor air relative indoor air temperature insulation system integral equations kernel Kittler Laplace transform layer lintels long-term load Lz/Dv material mechanical meshless modulus moisture transfer Moving Least Square nodes normalized stresses overcast skies overheating index overheating of indoor panel parameters partial differential equations partly cloudy plaster polystyrene prisms problems relative humidity Selected data recorded shear shear modulus simply supported simulation sky standards sky type Sladek Slovak Academy Solar altitude solution sticking mortar structures tension clamp Tesár thermal total number values vapour viscoelastic Young modulus Әп მყ