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  1. Home
  2. CH-89-05-2 -- Natural Convection in Sealed Glazing Units: A Review

CH-89-05-2 -- Natural Convection in Sealed Glazing Units: A Review ✓ Most Recent

1718152

Conference Proceeding by ASHRAE , 1989

J.L. Wright, P.Eng.; H.F. Sullivan, Ph.D., P.Eng.

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Full Description

In cold climates the augmented edge-glass heat transfer at the bottom of a glazing system creates a special problem. This is where condensed water and/or frost most readily occur. Two mechanisms determining the rate of edge-glass heat transfer, namely, edge-seal conduction and fill gas convection, are discussed. Current methods for estimating average edge-glass heat loss rates are reviewed. No reliable methods have been established for calculating the minimum temperature near the bottom of the indoor glazing. Heat transfer by natural convection of a gas in a vertical slot is a highly complex process about which there exists an abundance of technical information. The literature reviewed describes laminar flow regimes, mechanisms of heat transfer, local heat transfer, hydrodynamic stability, and conditions governing the onset of turbulence. These findings are discussed as they pertain to total and local heat transfer rates in glazing systems.

 

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  • ASHRAE > Conferences > ASHRAE Conferences > 1989 Winter Conference, Chicago, IL > Transactions 1989, Vol. 95, pt. 1 > Symposium Papers

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Published:

1989

Number of Pages:

12

File Size:

1 file

Product Code(s):

D-24569

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This product is restricted and cannot be purchased in the following countries Russia, Belarus
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