Cargando…

Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen

An estimate of the resistive losses in the LHC beam screen is given from cold surface resistance measurements using the shielded pair technique, with particular emphasis on the effect of a high magnetic field. Two different copper coating methods, namely electro-deposition and co-lamination, have be...

Descripción completa

Detalles Bibliográficos
Autores principales: Caspers, Friedhelm, Morvillo, M, Ruggiero, F, Tan, J
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/400683
_version_ 1780894145881047040
author Caspers, Friedhelm
Morvillo, M
Ruggiero, F
Tan, J
author_facet Caspers, Friedhelm
Morvillo, M
Ruggiero, F
Tan, J
author_sort Caspers, Friedhelm
collection CERN
description An estimate of the resistive losses in the LHC beam screen is given from cold surface resistance measurements using the shielded pair technique, with particular emphasis on the effect of a high magnetic field. Two different copper coating methods, namely electro-deposition and co-lamination, have been evaluated. Experimental data are compared with theories including the anomalous skin effect and the magneto-resistance effect. It is shown whether the theory underestimates or not the losses depends strongly on the RRR value, on the magnetic field and on the surface characteristics. In the pessimistic case and for nominal machine parameters, the estimated beam-induced resistive wall heating can be as large as 260 mW/m for two circulating beams.
id cern-400683
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4006832023-05-31T13:23:18Zhttp://cds.cern.ch/record/400683engCaspers, FriedhelmMorvillo, MRuggiero, FTan, JSurface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam ScreenAccelerators and Storage RingsAn estimate of the resistive losses in the LHC beam screen is given from cold surface resistance measurements using the shielded pair technique, with particular emphasis on the effect of a high magnetic field. Two different copper coating methods, namely electro-deposition and co-lamination, have been evaluated. Experimental data are compared with theories including the anomalous skin effect and the magneto-resistance effect. It is shown whether the theory underestimates or not the losses depends strongly on the RRR value, on the magnetic field and on the surface characteristics. In the pessimistic case and for nominal machine parameters, the estimated beam-induced resistive wall heating can be as large as 260 mW/m for two circulating beams.LHC-Project-Report-307CERN-LHC-Project-Report-307oai:cds.cern.ch:4006831999-08-23
spellingShingle Accelerators and Storage Rings
Caspers, Friedhelm
Morvillo, M
Ruggiero, F
Tan, J
Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title_full Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title_fullStr Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title_full_unstemmed Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title_short Surface Resistance Measurements and Estimate of the Beam-Induced Resistive Wall Heating of the LHC Dipole Beam Screen
title_sort surface resistance measurements and estimate of the beam-induced resistive wall heating of the lhc dipole beam screen
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/400683
work_keys_str_mv AT caspersfriedhelm surfaceresistancemeasurementsandestimateofthebeaminducedresistivewallheatingofthelhcdipolebeamscreen
AT morvillom surfaceresistancemeasurementsandestimateofthebeaminducedresistivewallheatingofthelhcdipolebeamscreen
AT ruggierof surfaceresistancemeasurementsandestimateofthebeaminducedresistivewallheatingofthelhcdipolebeamscreen
AT tanj surfaceresistancemeasurementsandestimateofthebeaminducedresistivewallheatingofthelhcdipolebeamscreen