Cargando…

LHC availability 2017: Proton physics-setting the scence

This paper summarises the LHC machine availability for the standard proton physics period in 2017. This paper first considers operational aspects, such as beam mode ratios, beam dump causes, fill length and turnaround. Following this, a detailed breakdown of all faults and their impact upon LHC is g...

Descripción completa

Detalles Bibliográficos
Autores principales: Todd, B, Apollonio, A, Ponce, L, Walsh, D, Roderick, C
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2813534
_version_ 1780973409602109440
author Todd, B
Apollonio, A
Ponce, L
Walsh, D
Roderick, C
author_facet Todd, B
Apollonio, A
Ponce, L
Walsh, D
Roderick, C
author_sort Todd, B
collection CERN
description This paper summarises the LHC machine availability for the standard proton physics period in 2017. This paper first considers operational aspects, such as beam mode ratios, beam dump causes, fill length and turnaround. Following this, a detailed breakdown of all faults and their impact upon LHC is given, with notable faults and new root causes identified. This paper compares the LHC's 2017 and 2016 availability performance, giving principle changes observed. This work has been produced and ratified by the Availability Working Group [1], which has compiled fault information for the period in question using the Accelerator Fault Tracker [2].
id cern-2813534
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-28135342022-06-26T21:06:18Zhttp://cds.cern.ch/record/2813534engTodd, BApollonio, APonce, LWalsh, DRoderick, CLHC availability 2017: Proton physics-setting the scenceAccelerators and Storage RingsThis paper summarises the LHC machine availability for the standard proton physics period in 2017. This paper first considers operational aspects, such as beam mode ratios, beam dump causes, fill length and turnaround. Following this, a detailed breakdown of all faults and their impact upon LHC is given, with notable faults and new root causes identified. This paper compares the LHC's 2017 and 2016 availability performance, giving principle changes observed. This work has been produced and ratified by the Availability Working Group [1], which has compiled fault information for the period in question using the Accelerator Fault Tracker [2]. oai:cds.cern.ch:28135342019
spellingShingle Accelerators and Storage Rings
Todd, B
Apollonio, A
Ponce, L
Walsh, D
Roderick, C
LHC availability 2017: Proton physics-setting the scence
title LHC availability 2017: Proton physics-setting the scence
title_full LHC availability 2017: Proton physics-setting the scence
title_fullStr LHC availability 2017: Proton physics-setting the scence
title_full_unstemmed LHC availability 2017: Proton physics-setting the scence
title_short LHC availability 2017: Proton physics-setting the scence
title_sort lhc availability 2017: proton physics-setting the scence
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2813534
work_keys_str_mv AT toddb lhcavailability2017protonphysicssettingthescence
AT apollonioa lhcavailability2017protonphysicssettingthescence
AT poncel lhcavailability2017protonphysicssettingthescence
AT walshd lhcavailability2017protonphysicssettingthescence
AT roderickc lhcavailability2017protonphysicssettingthescence