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There are two competitive designs of this reactor type: (1) a German "pebble bed" system that uses spherical fuel elements, nominally 60 mm (2.5 inches) in diameter, containing a graphite-and-fuel mixture coated in a graphite shell; and (2) an American version in which the fuel is loaded into precisely located graphite hexagonal prisms that interlock to create the core of the vessel.
This paper discusses the fluid dynamic behavior of this reactor.
The flow rate of this reactor was ca. 100 times larger than common microfluidics reactors.
The performance of this reactor equipped with highly selective membranes is studied in detail.
This paper shows the potential of this reactor configuration for in situ groundwater remediation.
Neutron-physical and thermo-hydraulic characteristics of this reactor are analyzed.
The objective is to perform safety analysis related to design accidents of this reactor types.
This paper describes some of the design features and safety aspects of this reactor.
The hydrodynamics of the 3-dimensional model of this reactor was solved via COMSOL Multiphysics 4.1.
The performance of this reactor was systematically compared to the corresponding conventional fixed bed reactor.
The concept of this reactor is based on the stability of colloidal suspensions.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com