77th Conference on Glass Problems – Ceramic Engineering and Science Proceedings, Volume 38, Issue 1
A Collection of Papers Presented at the 77th Conference on Glass Problems, Greater Columbus Convention Center, Columbus, OH, November 7–9, 2016
Samenvatting
This volume is part of the Ceramic Engineering and Science Proceeding (CESP) series. This series contains a collection of papers dealing with issues in both traditional ceramics (i.e., glass, whitewares, refractories, and porcelain enamel) and advanced ceramics. Topics covered in the area of advanced ceramic include bioceramics, nanomaterials, composites, solid oxide fuel cells, mechanical properties and structural design, advanced ceramic coatings, ceramic armor, porous ceramics, and more.
Specificaties
Inhoudsopgave
<p>Preface xi</p>
<p>Acknowledgments xiii</p>
<p>OPERATIONS</p>
<p>Glass Plant Audits Three Case Studies in Glass Production 3</p>
<p>Problems and Their Solutions<br />J. M. Uhlik</p>
<p>Furnace Design and Operation for the Long Term 19<br />D. Boothe</p>
<p>CONTROLS</p>
<p>Energy Reduction with Model Based Predictive Control 33<br />M. Powys and D. Armagost, M. P. H. Muijsenberg, R. Bodi, J. Muller, J. David, and G. Neff</p>
<p>Smart Manufacturing for Continuous, High–Technology 45</p>
<p>Glass Production<br />D. Kuhn and J. Ahrens</p>
<p>Optimal Control Strategy for Predictive Compensation of Gas 55</p>
<p>Quality Fluctuations in Glass Melting Furnances<br />P. Hemmann</p>
<p>ENERGY</p>
<p>New Furnace Design Solution Breaks the 3 Gigajoules per Ton 67</p>
<p>Benchmark Limit<br />M. Lindig–Nikolaus</p>
<p>Ox–Fuel Tableware Furnace with Novel Oxygen– and Natural 73</p>
<p>Gas Preheating System<br />T. Görüney, Ne et Arzan, Süleyman Koç, O. Öztürk and H. ahin, H. Kim and T. Kang, Y. Joumani, X. Paubel, and L. Jarry</p>
<p>Advanced Heat Recovery for Ox–Fuel Fired Glass Furnaces with 83</p>
<p>Plus Technology<br />S. Laux, U. Iyoha, R. Bell, J. Pedel, A. Francis, K.T. Wu, and H. Kobayashi</p>
<p>Improving Energy Efficiency of Glass Furnances 93<br />M. van Kersbergen, and S. Lessmann</p>
<p>Optimization of Combustion Settings: An Energy Efficient Approach to the Reduction of Emissions by Glass Melting Furnaces 103<br />S. Tiozzo, W. Battaglia, R. Dall Igna, and A. Migatta</p>
<p>MELTING</p>
<p>Impact of Redox in Industrial Glass Melting and Importance of 115</p>
<p>Redox Control<br />M. Hubert, A. J. Faber, H. Sesigur, F. Akmaz, S–R. Kahl, E. Alejandro, and T. Maehara</p>
<p>MODELING AND FORMING</p>
<p>Fluid Dynamics Analysis Leading to Innovative Glass 131</p>
<p>Homogenization Device Arctwister <br />A. Fuchs</p>
<p>Non–Isothermal Glass Moulding of Complex LED Optics 141<br />H. Kreilkamp, A. T. Vu, O. Dambon, and ND F. Klocke</p>
<p>REFRACTORIES</p>
<p>Tin Bath Block Evolution and Development: A Case of Toil, 153</p>
<p>Endeavour and Fears<br />Christopher J. Windle</p>
<p>New Oxy–Combustion Crown Efficient Flue Gas 167</p>
<p>Heat Recovery<br />W. Kuhn and A. Reynolds</p>
<p>Extending the Life of Fused Cast Ceramics 171<br />R. McGrath and J. Crowe</p>
<p>Enhanced Radar Control for High Performance Bottom Paving 179<br />J–G. Vuillermet, M. Gaubil, I. Cabodi, and O. Bories</p>
<p>High Performance Superstructure Concept for Container Glass 187</p>
<p>Furnaces<br />B. C. Snow and T. Close</p>
<p>Enhanced Hydrated Lime A Simple Solution for Acid Gas 201<br />Compliance<br />G. Hunt and M. Sewell</p>

