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Regional Basic Professional Training Course in Korea

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❙ 485 ❙<br />

8-A. Determ<strong>in</strong>istic Accident Analysis (Non‐LOCA)<br />

values also have to be selected for the <strong>in</strong>tegral value of scram reactivity.<br />

Other boundary conditions that affect reactor power are the various <strong>in</strong>strumentation<br />

process<strong>in</strong>g time delays associated with each trip function. These time delays typically<br />

<strong>in</strong>clude delays <strong>in</strong> signal actuation, <strong>in</strong> open<strong>in</strong>g the trip breakers and <strong>in</strong> the release of the<br />

rods by the magnetic mechanisms. Accident analysis needs to assume conservative values<br />

for the total time delay from reach<strong>in</strong>g the trip conditions up to the beg<strong>in</strong>n<strong>in</strong>g of rod<br />

<strong>in</strong>sertion.<br />

8.5. NON‐LOCA ANALYSES<br />

In this section, AOOs and non‐LOCA DBAs are addressed by pr<strong>in</strong>cipal effect on<br />

potential degradation of fundamental safety functions; Safety aspects of the events<br />

lead<strong>in</strong>g to a potential degradation of barriers are summarized, and suggestions on the<br />

selection of acceptance criteria as well as <strong>in</strong>itial conditions are provided. Also, some<br />

specific methodological <strong>in</strong>structions on how to perform the analysis of <strong>in</strong>dividual are<br />

provided.<br />

8.5.1. Increase <strong>in</strong> Heat Removal by the Secondary Side<br />

For a PWR, the <strong>in</strong>itiat<strong>in</strong>g events that can result <strong>in</strong> <strong>in</strong>crease <strong>in</strong> heat removal by secondary<br />

side are as follows:

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