The present work focuses on structural assessment of DEMO Vacuum Vessel Lower Port structure. Since previous studies have been addressed the structural scheme of the main vessel, this work investigates a feasible layout of vessel supports defining the position of the pumping port cut and different inclinations of the lower port. All design configurations have been analysed according to Design and Construction Rules for Mechanical Components of Nuclear Installations. The structure was checked against a vertical load due to a Vertical Displacement Event in combination with the estimated mass of all components supported by the vessel. The outcome of the assessment gives relevant information about the optimal position of the supports, the impact of the pumping port duct cut and the lower port inclination.

Structural assessment on DEMO lower port structure / Mozzillo, Rocco; Bachmann, Christian; Di Gironimo, Giuseppe. - In: FUSION ENGINEERING AND DESIGN. - ISSN 0920-3796. - 121:(2017), pp. 348-355. [10.1016/j.fusengdes.2017.08.007]

Structural assessment on DEMO lower port structure

Mozzillo, Rocco;Di Gironimo, Giuseppe
2017

Abstract

The present work focuses on structural assessment of DEMO Vacuum Vessel Lower Port structure. Since previous studies have been addressed the structural scheme of the main vessel, this work investigates a feasible layout of vessel supports defining the position of the pumping port cut and different inclinations of the lower port. All design configurations have been analysed according to Design and Construction Rules for Mechanical Components of Nuclear Installations. The structure was checked against a vertical load due to a Vertical Displacement Event in combination with the estimated mass of all components supported by the vessel. The outcome of the assessment gives relevant information about the optimal position of the supports, the impact of the pumping port duct cut and the lower port inclination.
2017
Structural assessment on DEMO lower port structure / Mozzillo, Rocco; Bachmann, Christian; Di Gironimo, Giuseppe. - In: FUSION ENGINEERING AND DESIGN. - ISSN 0920-3796. - 121:(2017), pp. 348-355. [10.1016/j.fusengdes.2017.08.007]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/712685
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