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Since complicated phenomena in the blanket, especially a coupling effect between neutronics and heat transfers, make accurate analyses of the blanket very challenging.
The present study uses COMSOL multi-physics code for thermal analyses of the blanket, since the COMSOL conceptually has sufficient capability of considering the heat transfer, neutronics, and even tritium behaviors together in a single code framework.
A 3D slice model of the DEMO HCPB blanket has been set up to run thermo-mechanical analyses of the blanket under steady state and DEMO transient pulsed conditions.
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In this paper, the preliminary thermal-hydraulic and safety analyses of the typical outboard equatorial blanket module (No.12) have been carried out using RELAP5/Mod3.4 code.
Based on the conceptual engineering design, neutronics and thermal-hydraulic analyses of CFETR WCSB blanket, tritium transport process was analyzed.
This paper recalls the main features of the TAURO blanket, a self-cooled Pb 17Li concept using SiCf/SiC composite as structural material, and describes the most recent thermo-mechanical analyses performed on the blanket.
The detailed design and analyses of the flow schemes in different circuits of blanket module and the purge helium flow have been discussed in this report.
To investigate the thermo-mechanical behavior of the current WCCB blanket design version under normal operation and accidental operation scenarios (e.g. in-box loss of coolant accident (LOCA)), the finite element thermo-mechanical analyses of a full blanket module were performed by using ANSYS Multiphysics code.
These analyses have shown and quantified different time instants for the thermal transient on different parts of the blanket structure.
As one of blanket candidates for Chinese Fusion Engineering Test Reactor CFETRR), the concept design of the Water Cooled Ceramic Breeder (WCCB) blanket is being carried out and the analyses of the neutronics and thermal hydraulics have been finished.
The results presented here illustrate that residual stresses in intact sections can strongly promote cracking in adjacent layers, which is in contrast to analyses of blanket film multi-layers which predict that residual stress in adjacent layers has no effect.
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