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    0 K Description Source File info 21 01100 128 IMG0044 PCD 1 size 0 K Description Source File info AECL CD 0367 IMG0054 PCD 1 size 0 K Description Source File info 300 63 IMG0074 PCD 1 size 0 K Description Source File info 300 68 IMG0079 PCD 1 size 0 K Description Source File info 22 31210 1 IMG0088 PCD 1 size 0 K Description Source File info 22 31000 55 IMG0089 PCD 1 size 0 K Description Source File info 66 32700 5 IMG0073 PCD 1 size 0 K Description Source File info 66 31700 8 IMG0096 PCD 1 size 0 K Description Source File info AECL CD 0373 IMG0098 PCD 1 size 0 K Description Source File info 01 00000 534 IMG0099 PCD 1 size 0 K Description Source File info 66 31700 14 IMG0004 PCD 1 size 0 K Description Source File info 66 31700 10 IMG0012 PCD 1 size 0 K Description Source File info 44 31100 46 IMG0056 PCD 1 size 0 K Description Source File info 44 31100 181 IMG0068 PCD 1 size 0 K Description Source File info 44 31100 180 IMG0069 PCD 1 size 0 K Description Source File info 44

    Original URL path: http://www.nuceng.ca/canteachmirror/imagelib/snook/snook.htm (2014-10-09)
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  • CANTEACH Library: Concepts Outline
    process control plant design assessment critique of existing designs simple calculations to evaluate certain effects criteria coolant temperature erosion corrosion vibration fretting fluence measurement control pressure cost algorithms legacy seminal papers engineering limits velocity quality erosion corrosion swell shrink CHF design decisions horizontal channels refuelling thermosyphoning placement of heat sinks and sources fuel coolant moderator Systems Level Why based on system level considerations reactor physics heat transport system how does

    Original URL path: http://www.nuceng.ca/canteachmirror/concepts_outline.html (2014-10-09)
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  • CANTEACH Library: Concept Map
    Library Help Listings Documents Search Concepts Systems Components Image Library Who s Who Bibliography Links Introduction to CANDU Generic Concept Map by W Garland Back to the Nuclear Engineering Concepts

    Original URL path: http://www.nuceng.ca/canteachmirror/concepts_map.html (2014-10-09)
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  • CANTEACH Library: Reactor Physics Concept Map
    Library Help Listings Documents Search Concepts Systems Components Image Library Who s Who Bibliography Links Introduction to CANDU Reactor Physics Concept Map by W Garland This diagram created using Inspiration by Inspiration Software Inc Back to the Nuclear Engineering Concepts

    Original URL path: http://www.nuceng.ca/canteachmirror/reactorphysics_map.html (2014-10-09)
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  • CANTEACH Library: Reactor Physics Concepts
    L theory Diffusion approximation P 1 EP4D3 Derivation of Fick s Law Validity Matrix form of the Diffusion equations C1 7 C1 3 Spatial mesh C1 7 Core Cell Boundary and Initial conditions C1 7 Edges Interfaces Numerical methods C1 7 Finite differences EP4D3 BC and IC treatment EP4D3 Explicit vs implicit EP4D3 Convergence Consistency Stability Truncation error Statics One speed neutrons fixed sources EP4D3 C1 7 Spectral radius LU decomposition Gaussian elimination Jacobi Gause Seidel Successive Over Relaxation SOR 1 D reactor EP4D3 C1 7 Criticality search eigenvalues C1 3 Multigroup EP4D3 C1 7 Numerical criticality EP4D3 C1 7 Power method Cell calculations EP4D3 C1 7 Adjoint flux C1 3 Perturbation theory C1 3 Space Time Kinetics C1 7 Separation of variables C1 3 Point kinetics EP4D3 C1 3 descriptive and simple equations C1 1 C1 2 analytical soln prompt jump C1 1 C1 2 prompt criticality C1 1 C1 2 inverse method C1 3 reactor trips C1 1 C1 2 neutron source effects C1 1 C1 2 numerical integration Adiabatic Quasi static IQS Synthesis Modal expansion Space time synthesis Nodal method of Avery Direct methods Finite differences Exponential transforms Computer Codes Nuclear data NJOY ENDF Cell codes POWDERPUFS V C1 5 AECL TTM1 WIMS and WIMS AECL AECL TTM1 DRAGON Supercell codes AECL TTM1 MULTICELL DRAGON Core codes CERBRUS IQS C1 5 SMOKIN Modal C1 5 3DDT DONJON RFSP AECL TTM1 Fuel Management RFSP C1 5 Monte Carlo MCNP Plant optimization AESOP Component level Depletion EP4D3 Fuel reaction chains RMC511 AECL TTM1 U235 P239 P240 P241 P242 U238 fission products C1 1 Burnup MW h kg AECL TTM1 C1 1 Burnup equations Fluence RMC511 Fission yields RMC511 General solution RMC511 Calculations RMC511 Reactivity change C1 1 Burnup Poison EP4D3 C1 1 Cross sections RMC511 Equations Burnable RMC511 Non burnable RMC511 Reactivity worth Xenon oscillations Flux tilt Dynamics Coupled Neutronics Thermalhydraulics C1 5 Feedback EP4D3 Heat transfer EP4D3 Thermalhydraulics EP4D3 Temperature effects C1 1 C1 2 Doppler Spectrum effects C1 1 C1 2 Coolant effects C1 1 C1 2 Void Density Moderator effects Geometry effects Creep Sag Codes and code methodology Power and power measurement C1 1 C1 2 Thermal vs neutron power Decay heat Photoneutrons Detectors and instrumentation General intro Reactions used Thermal boron fission self powered Applications Flux mapping Common problems Systems level Operational control Approach to criticality C1 1 C1 2 Systems CANDU Basic characteristics of CANDU lattice AECL TTM1 typical burnup Core design C1 4 fuel AECL TTM1 pressure tube concept AECL TTM1 moderator AECL TTM1 calandria reactivity devices AECL TTM1 liquid zone control AECL TTM1 C1 1 C1 2 mechanical control absorbers AECL TTM1 C1 1 C1 2 adjuster rods AECL TTM1 C1 1 C1 2 booster rods C1 1 C1 2 moderator level C1 1 detector systems AECL TTM1 flux mapping AECL TTM1 void reactivity AECL TTM1 Methodology for r p analysis C1 4 Initial fuel loading C1 4 Commissioning C1 4 Safety systems SDS1 SDS2 moderator dump C1 1 moderator poison AECL

    Original URL path: http://www.nuceng.ca/canteachmirror/reactorphysics_concepts.html (2014-10-09)
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  • CANTEACH Library: Thermalhydraulic Concepts
    Critical heat flux Fuel Metallurgical considerations Possible fuels U Th Pu Metal vs ceramic Plates vs pins Brook s summary Feeders NUCIRC Sizing Layout Creep allowances Endfittings Headers Sizing Flow distribution Pumps Sizing NPSH Head flow curve 4 quadrant characteristics Heat exchangers Steam generators Sizing Integral or separate preheater Recirculation Material selection Costing Area margin Valves Types and characteristics Equations Sizing Standards Pressure vessels Standards relief valve sizing Measurement devices Flow orifice ultrasonic Temperature RTD thermocouple Pressure Level Heat Transport System How does it work Simple circuit and heat balance Flow operating point pump head vs flow and losses vs flow Simple equations Simple heat duty diagram Solutions to simple case flow approximately constant primary T floats on top of the secondary T secondary side governed by SS P variation with power HTS efficiency vs thermodynamic efficiency PIC Control and transient behaviour An ideal HTS Low P high T Coolant cheap stable to P T and radiation non corrosive Hign heat capacity High conductivity Moderator properties Low friction Gord Brooks paper Design considerations Variations on a theme of pumps layout figure of 0 8 split core in Bruce Layout for thermosyphoning Pump downstream of the SG for NPSH considerations Boiling

    Original URL path: http://www.nuceng.ca/canteachmirror/thermahydro_concepts.html (2014-10-09)
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  • CANTEACH Library: Corrosion Concepts
    mitigation Crevice description equations calculations mechanisms environmental effects examples analysis prevention mitigation Pitting description equations calculations mechanisms environmental effects examples analysis prevention mitigation Intergranular attack description equations calculations mechanisms environmental effects examples analysis prevention mitigation Selective leaching description equations calculations mechanisms environmental effects examples analysis prevention mitigation Erosion corosion description equations calculations mechanisms environmental effects examples analysis prevention mitigation Stress corrosion cracking description equations calculations mechanisms environmental effects examples analysis

    Original URL path: http://www.nuceng.ca/canteachmirror/corrosion_concepts.html (2014-10-09)
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  • CANTEACH: Instrumentation, Control and Electrical Concepts
    Instrumentation Equipment and Components Applications Specific examples of CANDU NPP Instrumentation Equipment and Components installations and intended functions CANDU NPP Man Machine Interface Concepts CANDU NPP Information Presentation Strategies Main Control Room Secondary Control Area and Local Panel Indicators and Annunciators Human Factors Engineering Concepts Error Catching and Error Mitigation Post Accident Management Fundamentals of CANDU NPP Electrical Electrical Grouping and Channelization In Plant Electrical Power Distribution External Grid Connection Ring Bus and Unit System Service Transformer Automatic Electrical Transfer Concepts Emergency Electrical Transfer Concepts CANDU NPP Electrical Grouping Classes of Power and Grounding Practices Functional Grouping Classes of Power and Rationale Station Electrical Grounding Practices CANDU NPP Electrical Distribution and Transfers Typical Station Electrical Bus distribution and loads by Class Transfer logic goals Standby Generator function logic and loading CANDU NPP Electrical Equipment and Components Generic CANDU Electrical Equipment Components organized by Voltage and Function CANDU NPP GSI Oriented Electrical Equipment and Components Applications Specific examples of CANDU NPP Electrical Equipment and Components installations and intended functions organized by GSI CANDU NPP Electrical Support for I C including Distribution and Qualification Class II and Class I Power Review Power Supply Lists Fusing and Generic I C Loops Testing of Power Supply Integrity for Odd Even Sample GSI applications Fundamentals of CANDU NPP Control CANDU Plant Operating Modes Normal Alternate Define Manual Automatic Supervisory and Semi Automatic Modes Control Transfer Strategies and Requirements CANDU NPP Control Equipment and Components Generic Loop Equipment and Components Required for Control Applications Generic Control Strategies and Approaches Introduce concept of Negative Feedback Control Control Modes PI D function and general application Further Control Concepts Feedforward cascade Overview of CANDU NPP Control Techniques General Control Strategies for sample Key systems Typical Generic CANDU Loop examples CANDU NPP GSI Oriented Control Applications GSI Specific Control loops

    Original URL path: http://www.nuceng.ca/canteachmirror/ic_concepts.html (2014-10-09)
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