A crucial issue for the design of HCLL (Helium Cooled Lead Lithium) Test Blanket Module of ITER and HCLL, WCLL, DCLL Breeder Blanket of DEMO is to efficiently characterise the tritium inventory inside the blanket and the permeation of tritium into the coolant in order to reduce as much as possible the radiological hazard towards the external environment. A fast and reliable sensor is required both for tritium management at the several steps of the reactor fuel cycle and for the development of tritium processing systems, e.g. the TES (Tritium Extraction System)

Development of advanced hydrogen permeation sensors to measure Q2concentration in lead-lithium eutectic alloy / Candido, L.; Utili, M.; Zucchetti, M.; Ciampichetti, A.; Calderoni, P.. - In: FUSION ENGINEERING AND DESIGN. - ISSN 0920-3796. - STAMPA. - 124:(2017), pp. 735-739. [10.1016/j.fusengdes.2017.05.012]

Development of advanced hydrogen permeation sensors to measure Q2concentration in lead-lithium eutectic alloy

Candido, L.;Zucchetti, M.;Ciampichetti, A.;
2017

Abstract

A crucial issue for the design of HCLL (Helium Cooled Lead Lithium) Test Blanket Module of ITER and HCLL, WCLL, DCLL Breeder Blanket of DEMO is to efficiently characterise the tritium inventory inside the blanket and the permeation of tritium into the coolant in order to reduce as much as possible the radiological hazard towards the external environment. A fast and reliable sensor is required both for tritium management at the several steps of the reactor fuel cycle and for the development of tritium processing systems, e.g. the TES (Tritium Extraction System)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2700946
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