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Nuclear safety / Atomic Energy of Canada Limited / Nuclear reactors / Energy conversion / CANDU reactor / Void coefficient / Loss-of-coolant accident / Boiling water reactor / Light water reactor / Nuclear technology / Nuclear physics / Energy


Design Requirements and Engineering Considerations
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Document Date: 2015-01-10 17:07:19


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City

Chernobyl / /

Company

Process Systems / I&C Systems / CANDU / Shutdown Systems / Special Safety Systems / Process I&C Systems / /

Country

Canada / /

Event

Force Majeure / Man-Made Disaster / FDA Phase / Reorganization / /

Facility

CANDU reactor / CANDU plant / Advanced CANDU reactor / /

IndustryTerm

compressed helium gas / auxiliary systems / control algorithms / software engineering industries / technology moves / energy source / pressurized gas accumulators / system using conventional equipment / individual systems / control systems / safety-critical software / nuclear power plant applications / reactor protection systems / reactor systems / electrical power systems / fission products / actuation technologies / logic using relay technology / safety systems / energy / /

Organization

Atomic Energy Control Board / Canadian Nuclear Safety Commission / /

Person

G. Alan Hepburn / /

Position

author / Independent contractor / /

Product

Koss R-10 Headphone/Headset / AECB1977 / /

PublishedMedium

Architectural Design / /

Technology

Design Verification / control algorithms / The technologies / resulting control algorithms / 6.5 Logic Technology / process control / implementation technologies / 28 6.4 Control Logic Technology / actuation technologies / Boolean logic using relay technology / /

URL

//canteach.candu.org / /

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