Method for Investigation of the Cooling Process of a Layout of a Lithium Divertor Module (LDM) under High Energy Loads

This work is devoted to the methodology for conducting experiments to study the process of cooling by a low-pressure gas–droplet flow under conditions of high energy loads on the receiving surface of a lithium divertor module (LDM) layout. The paper describes in detail the design of the LDM model, a...

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Veröffentlicht in:Physics of atomic nuclei 2023-12, Vol.86 (10), p.2317-2324
Hauptverfasser: Tulubayev, Ye. Yu, Kudiiarov, V. N., Nikitenkov, N. N., Tazhibayeva, I. L., Vertkov, A. V., Zharkov, M. Yu, Ponkratov, Yu. V., Gordienko, Yu. N., Bochkov, V. S.
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container_end_page 2324
container_issue 10
container_start_page 2317
container_title Physics of atomic nuclei
container_volume 86
creator Tulubayev, Ye. Yu
Kudiiarov, V. N.
Nikitenkov, N. N.
Tazhibayeva, I. L.
Vertkov, A. V.
Zharkov, M. Yu
Ponkratov, Yu. V.
Gordienko, Yu. N.
Bochkov, V. S.
description This work is devoted to the methodology for conducting experiments to study the process of cooling by a low-pressure gas–droplet flow under conditions of high energy loads on the receiving surface of a lithium divertor module (LDM) layout. The paper describes in detail the design of the LDM model, all the main systems, parameters, and layout of the test bench. The operating modes of water and gas cooling systems have been calculated under thermal action on the LDM layout with a power equal to 5 MW/m 2 . A description of the experiment on the development of a technique for cooling an LDM layout with a low-pressure gas–droplet flow has been given.
doi_str_mv 10.1134/S1063778823100393
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source SpringerNature Journals
subjects Cooling systems
Droplets
Gas cooling
Layouts
Lithium
Low pressure gases
Modules
Particle and Nuclear Physics
Physics
Physics and Astronomy
Solids under Extreme Conditions
title Method for Investigation of the Cooling Process of a Layout of a Lithium Divertor Module (LDM) under High Energy Loads
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