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Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments
The research for automated measurement solutions for the Large Hadron Collider (LHC) is a key point for future developments and of extreme importance for even bigger accelerators like the Future Circular Collider (FCC) where manual measurements are almost excluded due to the very large scale of the...
Autores principales: | , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2849054 |
_version_ | 1780976873300295680 |
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author | Bestmann, Patrick Werkland, Aron Strom |
author_facet | Bestmann, Patrick Werkland, Aron Strom |
author_sort | Bestmann, Patrick |
collection | CERN |
description | The research for automated measurement solutions for the Large Hadron Collider (LHC) is a key point for future developments and of extreme importance for even bigger accelerators like the Future Circular Collider (FCC) where manual measurements are almost excluded due to the very large scale of the future machine. The developments for transversal measurements using close- range photogrammetry are making good progress and first results should be available from the High-Luminosity IT- String test in 2024 where a High Luminosity-LHC Triplet section will be fully tested on the surface. The R&D for the vertical measurements is still at the beginning and will combine close-range photogrammetry with mobile Hydro- static Levelling System (mHLS) measurements. HLS are commonly used in the field of high precision measurements or long-term monitoring of vertical displacements. The basic principle is quite robust and directly linked to an equipotential surface. There are several working principles available ranging from tactile, capacitive, or optical sensors to ultrasonic sensors in different configurations. For a mobile application, a particularly suitable system is the ultrasonic system with the transducer submerged in the water. A small number of critical aspects need to be solved to be usable in the Large Hadron Collider environment. The tunnel slope and system stabilization, the temperature gradient and atmospheric pressure differences due to tunnel ventilation needed to be considered in the design of the mobile system. The final goal is to make the system available for a use on a future Survey Train in the LHC. This paper describes the principle of the system along with some specific mitigation measures and validations for the mobile application. |
id | cern-2849054 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28490542023-04-19T11:55:16Zhttp://cds.cern.ch/record/2849054engBestmann, PatrickWerkland, Aron StromChallenges for Mobile Hydrostatic Levelling Systems applied in accelerator environmentsEngineeringThe research for automated measurement solutions for the Large Hadron Collider (LHC) is a key point for future developments and of extreme importance for even bigger accelerators like the Future Circular Collider (FCC) where manual measurements are almost excluded due to the very large scale of the future machine. The developments for transversal measurements using close- range photogrammetry are making good progress and first results should be available from the High-Luminosity IT- String test in 2024 where a High Luminosity-LHC Triplet section will be fully tested on the surface. The R&D for the vertical measurements is still at the beginning and will combine close-range photogrammetry with mobile Hydro- static Levelling System (mHLS) measurements. HLS are commonly used in the field of high precision measurements or long-term monitoring of vertical displacements. The basic principle is quite robust and directly linked to an equipotential surface. There are several working principles available ranging from tactile, capacitive, or optical sensors to ultrasonic sensors in different configurations. For a mobile application, a particularly suitable system is the ultrasonic system with the transducer submerged in the water. A small number of critical aspects need to be solved to be usable in the Large Hadron Collider environment. The tunnel slope and system stabilization, the temperature gradient and atmospheric pressure differences due to tunnel ventilation needed to be considered in the design of the mobile system. The final goal is to make the system available for a use on a future Survey Train in the LHC. This paper describes the principle of the system along with some specific mitigation measures and validations for the mobile application.CERN-BE-2023-005oai:cds.cern.ch:28490542022-10-31 |
spellingShingle | Engineering Bestmann, Patrick Werkland, Aron Strom Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title | Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title_full | Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title_fullStr | Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title_full_unstemmed | Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title_short | Challenges for Mobile Hydrostatic Levelling Systems applied in accelerator environments |
title_sort | challenges for mobile hydrostatic levelling systems applied in accelerator environments |
topic | Engineering |
url | http://cds.cern.ch/record/2849054 |
work_keys_str_mv | AT bestmannpatrick challengesformobilehydrostaticlevellingsystemsappliedinacceleratorenvironments AT werklandaronstrom challengesformobilehydrostaticlevellingsystemsappliedinacceleratorenvironments |