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Seismic and Cask Drop Excitation Evaluation of the Tower Shielding Reactor
During the current shutdown of the Tower Shielding Reactor II (TSR-II), analyses were performed to determine the effect of nearby cask drops on the structural and mechanical integrity of the reactor. This evaluation was then extended to include the effects of earthquakes. Several analytic models were developed to simulate the effects of earthquake and cask drop excitation. A coupled soil-structure model was developed. As a result of the analyses, several hardware modifications and enhancements were implemented to ensure reactor integrity during future operations. 6 figs.
Seismic and Cask Drop Excitation Evaluation of the Tower Shielding Reactor
During the current shutdown of the Tower Shielding Reactor II (TSR-II), analyses were performed to determine the effect of nearby cask drops on the structural and mechanical integrity of the reactor. This evaluation was then extended to include the effects of earthquakes. Several analytic models were developed to simulate the effects of earthquake and cask drop excitation. A coupled soil-structure model was developed. As a result of the analyses, several hardware modifications and enhancements were implemented to ensure reactor integrity during future operations. 6 figs.
Seismic and Cask Drop Excitation Evaluation of the Tower Shielding Reactor
S. P. Harris (Autor:in) / R. L. Stover (Autor:in) / J. J. Johnson (Autor:in) / B. N. Sumodobila (Autor:in)
1989
7 pages
Report
Keine Angabe
Englisch
Reactor Engineering & Nuclear Power Plants , Reactor Physics , Structural Analyses , Selected Studies In Nuclear Technology , TSR-2 Reactor , Impact Shock , Reactor Components , Reactor Vessels , Seismic Effects , Soil-Structure Interactions , C Codes , Functional Models , Mechanical Structures , Reactor Safety , Recommendations , S Codes , Safety Engineering , Spent Fuel Casks , Testing , ERDA/220900 , ERDA/220500 , ERDA/220600
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