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The experimental background for the reactor condenser (axial and radial configurations) is presented.
In distribution systems, radial configurations are often preferred by distribution operators as these configurations require simple protection schemes.
Radial configurations are reported for packaging the Boiling Water Reactor (BWR) and Pressurized Water Reactor (PWR) used fuel assemblies.
For robust plasmas, ICP operating conditions and performance for multi-element quantitative analysis do not differ significantly from those of conventional radial configurations.
With normal aerosol load and under robust plasma conditions (as evidenced by Mg II/Mg I intensity ratios >8), EIE, Ca and mineral acid induced interferences are relatively small and are similar in axial and conventional radial configurations.
The proposed ES guarantees the generation and analysis of all possible radial configurations that restore the service to all healthy out-of-service areas requiring operations only in Tier 1 normally open switches.
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Scenario III employs a conventional radial configuration in order to compare and investigate different aspects.
A typical radial configuration is also compared with these two optimal layouts.
It is found that, in general, the escaped radial configuration is the preferred one.
Reference solutions are built for a smooth radial configuration and for the 2D Riemann problem.
Commonly, the distribution systems have radial configuration that consists of the feeders with low X/R lines.
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