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The actual lowest CO concentration and maximum power density based on the reactor volume were 90 ppm and 0.8 kW/L, respectively.
In the present work a computational methodology based on the reactor network approach is developed, targeting the thermochemical assessment of fuel flexibility in SOFC systems.
The sensitivity of different parameters such as solid flow rate and column height based on the reactor performance is also determined.
In this paper it is argued that such criteri a should be based on the reactor selectivity, from which eventually a maximum allowable temperature can be derived.
Based on the reactor model presented in this paper, a process control strategy was developed and successfully tested at a pilot plant.
However, the present comparison based on the reactor vessel structure and primary cooling system pointed out relatively good economic potential of the FS-loop concept, because differences in the secondary cooling systems of the pool/loop configurations are not essential from the viewpoint of pool/loop comparison.
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Optimal reactor design and operating conditions were searched for in relation to its accumulation based on the reaction kinetics and reactor characteristics.
The reactor design is based on the French reactor Rapsodie with several modifications which include the provision of a steam-water circuit and turbo-generator.
The reactor design is based on the French reactor Rapsodie, with several modifications, which include the provision of a steam water circuit and turbine-generator in place of sodium air heat exchanger in Rapsodie.
Based on the proposed reactor disjunctions, two different reactor superstructures are developed and employed.
The main objective of the Central Design Team (CDT) project is to establish an engineering design of a Fast Spectrum Transmutation Experimental Facility FASTEFF) that is the pilot plant of an experimental-scale of both an Accelerator Driven System (ADS) and a Lead Fast Reactor (LFR), based on the MYRRHA reactor concept, planned to be built during the next decade.
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