This factor includes a selection of papers offered on the 71st convention on Glass difficulties, October 19-20, 2010 on the Ohio country college, Columbus, Ohio. issues contain glass melting; glass technological know-how, defects; protection; refractories; recycling; controls; and uncooked materials.Content:

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Figure 1. AQC Plant 40 • 71st Conference on Glass Problems Integrated Air Quality Control System for Float Glass Furnace THE FLOAT GLASS MANUFACTURING PROCESS The "float process" is the making of flat glass in which the molten glass continuously streams from a furnace tank onto molten tin for forming and is subsequently "annealed" as one continuous sheet. The flat glass is annealed to prevent or remove stresses in the glass by controlled cooling from a suitable temperature. This takes place in an "annealing lehr" which is a long, tunnel-shaped oven for annealing glass by continuous passage.

Figure 7: Comparison of measured and CFD-predicted crown and glass (bottom) temperature distribution in the furnace for original air-fuel operation. 71st Conference on Glass Problems • 27 Oxy-Fuel Conversion Reduces Fuel Consumption in Fiberglass Melting After the air-fuel operation benchmark study, we carried out a parametric study to identify the optimal design for the full oxygen furnace. In this project, the burner location is pretty much fixed because of restrictions on the furnace structure.

28 ■ 71st Conference on Glass Problems Oxy-Fuel Conversion Reduces Fuel Consumption in Fiberglass Melting Figure 9: Combustion space temperature distribution within FGI's new oxy-fuel furnace. Figure 10: Comparison of measured and CFD-predicted crown and glass (bottom) temperature distribution in the furnace after conversion to oxy-fuel operation. 71st Conference on Glass Problems ■ 29 Oxy-Fuel Conversion Reduces Fuel Consumption in Fiberglass Melting Beside the design optimization, the simulation was also used to study the impacts of the operational variations.

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