
doi: 10.2172/786625
Reduced prestressing and degradation of prestressing tendons in concrete containment vessels were investigated using finite element analysis of a typical prestressed containment vessel. The containment was analyzed during a loss of coolant accident (LOCA) with varying levels of prestress loss and with reduced tendon area. It was found that when selected hoop prestressing tendons were completely removed (as if broken) or when the area of selected hoop tendons was reduced, there was a significant impact on the ultimate capacity of the containment vessel. However, when selected hoop prestressing tendons remained, but with complete loss of prestressing, the predicted ultimate capacity was not significantly affected for this specific loss of coolant accident. Concrete cracking occurred at much lower levels for all cases. For cases where selected vertical tendons were analyzed with reduced prestressing or degradation of the tendons, there also was not a significant impact on the ultimate load carrying capacity for the specific accident analyzed. For other loading scenarios (such as seismic loading) the loss of hoop prestressing with the tendons remaining could be more significant on the ultimate capacity of the containment vessel than found for the accident analyzed. A combination of loss of prestressing and degradation of the vertical tendons could also be more critical during other loading scenarios.
22 General Studies Of Nuclear Reactors, Loss Of Coolant, Ultimate Strength, Reactor Vessels, Prestressed Concrete, 36 Materials Science, Finite Element Method, Containment Systems, Stress Analysis, 624, Crack Propagation, 620
22 General Studies Of Nuclear Reactors, Loss Of Coolant, Ultimate Strength, Reactor Vessels, Prestressed Concrete, 36 Materials Science, Finite Element Method, Containment Systems, Stress Analysis, 624, Crack Propagation, 620
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