Results 201 to 210 of about 32,826 (267)
Some of the next articles are maybe not open access.

Nuclear Fuel Assemblies and Fuel Debris Monitor for Characterization of Fuel Assemblies for Final Storage

Volume 1: Low/Intermediate-Level Radioactive Waste Management; Spent Fuel, Fissile Material, Transuranic and High-Level Radioactive Waste Management, 2013
NUKEM monitor FAMOS is designed to measure the burn up of fuel assemblies (FA’s) and allows the calculation of the content of fissile material and other actinides. The knowledge of the isotopic composition and activities of FA’s is required for a safe handling and storage of the elements.
M. Sokcic-Kostic   +3 more
openaire   +1 more source

On the development of fuel assemblies

Experimental Thermal and Fluid Science, 1991
Abstract Investigations of RBMK fuel assembly models of various geometries were carried out to develop fuel assemblies with reduced uranium dioxide temperatures and decreased void reactivity effect. The investigations include thermophysical experiments and neutron and physical calculations.
V.M. Kvator   +6 more
openaire   +1 more source

Fuel Sub-assembly

2017
Superphenix fuel sub-assembly was presenting three main differences compared to Phenix one: Sub-assembly dimensions more important. 30 % increase in the clad diameter, which led to choose annular pellets so as to limit the fuel heart temperature.
Joël Guidez, Gérard Prêle
openaire   +1 more source

CAP1400 Fuel Assembly Development and PWR Fuel Assembly Technology Progress in China

Volume 3: Nuclear Fuel and Material, Reactor Physics and Transport Theory; Innovative Nuclear Power Plant Design and New Technology Application, 2017
In 1990s the first generation of PWR fuel assembly FA300 was developed in China. With constantly design improvements over the following 20 years, three types of FA300 fuel assemblies have been developed with max fuel assembly average burnup reach 40000 MWd/tU and successfully used in 300MWe PWRs.
Libing Zhu   +10 more
openaire   +1 more source

Assembly of Fuel Cells and Stacks with Robots

2009
PEM-fuel cell stacks (PEM = Polymer-Electrolyte-Membrane) are still produced manually to a large extent. Therefore identical components have to be positioned precisely. Besides higher total costs, logistical and weight problems is also a result in a higher statistical sensitivity for failures due to assembly errors and the total of assembly tolerances.
Peter Konold   +2 more
openaire   +1 more source

Assembly techniques for proton exchange membrane fuel cell stack: A literature review

Renewable and Sustainable Energy Reviews, 2022
Albert Albers, Yuhang Ding, Ke Song
exaly  

Assembly for cutting off the fuel part of a spent fuel assembly

Atomic Energy, 2011
K. A. Ladeinov   +2 more
openaire   +1 more source

Recent Advances on PEM Fuel Cells: From Key Materials to Membrane Electrode Assembly

Electrochemical Energy Reviews, 2023
Lei Du, Siyu Ye, Lixin Xing
exaly  

Home - About - Disclaimer - Privacy