<--- Back to Details
First PageDocument Content
Energy / Neutron transport / Nuclear criticality safety / Keno / Nuclear fuel / Nuclear power / Light water reactor / Neutron poison / Nuclear technology / Nuclear physics / Physics
Date: 2014-06-09 06:51:07
Energy
Neutron transport
Nuclear criticality safety
Keno
Nuclear fuel
Nuclear power
Light water reactor
Neutron poison
Nuclear technology
Nuclear physics
Physics

SCALE Newsletter Number 46 SpringHigh-Fidelity Reactor Modeling with KENO

Add to Reading List

Source URL: scale.ornl.gov

Download Document from Source Website

File Size: 736,40 KB

Share Document on Facebook

Similar Documents

Nuclear physics / Nuclear technology / Energy / Neutron poison / Nuclear fuel / Control rod / Burnup / Nuclear reactor / Gadolinium / Boron

Paper Formatting Instructions - Mo

DocID: 1nPdU - View Document

Neutron poison / Control rod / Nuclear reactor / Burnup / Nuclear meltdown / Nuclear fuel / Iodine pit / Nuclear physics / Nuclear technology / Energy

Passive reactivity control with 10B burnable poison in the U-battery Simon de Die April 12, 2007 Foreword

DocID: 1fXRV - View Document

Nuclear safety / Neutron flux / Neutron / Control rod / Reactor vessel / Neutron poison / Chernobyl disaster / Nuclear physics / Nuclear technology / Energy

International Conference Nuclear Energy for New Europe 2002 Kranjska Gora, Slovenia, September 9-12, 2002 www.drustvo-js.si/gora2002 EXPERIENCE IN NEUTRON FLUX MEASUREMENT CHAINS

DocID: 1aQ7V - View Document

Nuclear reprocessing / Actinides / Nuclear fuels / Graphite moderated reactors / Neutron poison / Nuclear reactor / MOX fuel / Advanced gas-cooled reactor / Gas-cooled fast reactor / Nuclear technology / Nuclear physics / Energy

A Moderated TARGET Sub-Assembly Design for Minor Actinide Transmutation

DocID: 1aJ0N - View Document

Nuclear safety / Light water reactors / Actinides / Nuclear chemistry / Pressurized water reactor / Control rod / Nuclear fuel / Nuclear reactor / Neutron poison / Nuclear physics / Nuclear technology / Energy

Reactivity Initiated Accident Analysis of the HPLWR Three Pass Core with Ascending Gap Flow Using the KIKO3D-ATHLET Code György Hegyi, András Keresztúri, Csaba Maráczy, István Trosztel MTA KFKI Atomic Energy Researc

DocID: 1aG2V - View Document