Oxidation and Heat Transfer Studies in Graphite Channels: I. The Effect of Air Flow Rate on the C-O2and CO-O2Reactions
Author:
Affiliation:
1. Brookhaven National Laboratory, Upton, New York
Publisher
Informa UK Limited
Subject
Nuclear Energy and Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/NSE62-A25367
Reference3 articles.
1. Oxidation and Heat Transfer Studies in Graphite Channels: II. Thermal Changes with Time and Distance in Air-Cooled Graphite Channels
2. Oxidation and Heat Transfer Studies in Graphite Channels: III. The Chemical Reactivity of BNL Graphite and Its Effect on the Length of Channel Cooled by Air
3. Oxidation and Heat Transfer Studies in Graphite Channels: IV. Combined Effects of Temperature, Flow Rate, Diameter, and Chemical Reactivity on the Length of Channel Cooled by Air
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1. Phenomenology of Graphite Burning in Air Ingress Accidents of HTRs;Science and Technology of Nuclear Installations;2011
2. Sensitivity studies of air ingress accidents in modular HTGRs;Nuclear Engineering and Design;2008-11
3. Oxidation of a Porous Graphite Cylinder with Airflow Through a Coaxial Hole;Dynamics of Deflagrations and Reactive Systems: Heterogeneous Combustion;1991-01-01
4. Thermal Properties of Air-Cooled Graphite Channels;Nuclear Science and Engineering;1962-07
5. Oxidation and Heat Transfer Studies in Graphite Channels: III. The Chemical Reactivity of BNL Graphite and Its Effect on the Length of Channel Cooled by Air;Nuclear Science and Engineering;1962-01
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