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Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators

Energy efficiency becomes an increasingly important aspect in regard to the design of modern particle accelerators. Thus, this thesis examines the comparison of different magnet technologies by means of the energy consumption and the total costs. As the requirements on beamlines highly differ among...

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Autor principal: Gardlowski, Philipp
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: GSI 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2156628
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author Gardlowski, Philipp
author_facet Gardlowski, Philipp
author_sort Gardlowski, Philipp
collection CERN
description Energy efficiency becomes an increasingly important aspect in regard to the design of modern particle accelerators. Thus, this thesis examines the comparison of different magnet technologies by means of the energy consumption and the total costs. As the requirements on beamlines highly differ among the different existing accelerator facilities, generalised recommendations on the choice of the magnet type are not possible. However, a few configurations are found, which may deliver significantly lower total costs for specific ranges of the investigated parameters. For low repetition rates below 0.1 Hz, for example, AC operated conventional normal conducting (NC) magnets or high current pulsed (HCP) magnets are an economic solution. For high repetition rates above 1.0 Hz, superconducting Cos(N) (SC) magnets or superferric (SF) magnets are more attractive; at least if they are operated in DC mode and if no dynamic losses occur in the cryogenic system. Unfortunately, a range between these values exist, in which no clear recommendation can be given. Here, a more detailed investigation is necessary for each individual facility. A similar behaviour appears for the magnetic rigidity: For small values of the magnetic rigidity (10 Tm), for example, the NC magnets are more economic due to the low necessary field strengths. Depending on the beamline, permanent magnets (PM) can be an alternative, as well. For large values of the magnetic rigidity (>100 Tm), the necessary integrals field strengths become this large that the SF magnets or the SC magnets represent a more economic respectively more compact solution. Unfortunately, a range also exists, in which no clear recommendation can be given.
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spelling cern-21566282019-09-30T06:29:59Z http://cds.cern.ch/record/2156628 eng Gardlowski, Philipp Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators Accelerators and Storage Rings 3: Energy Efficiency (EnEfficient) 3.6: Beam transfer channels with low power consumption Energy efficiency becomes an increasingly important aspect in regard to the design of modern particle accelerators. Thus, this thesis examines the comparison of different magnet technologies by means of the energy consumption and the total costs. As the requirements on beamlines highly differ among the different existing accelerator facilities, generalised recommendations on the choice of the magnet type are not possible. However, a few configurations are found, which may deliver significantly lower total costs for specific ranges of the investigated parameters. For low repetition rates below 0.1 Hz, for example, AC operated conventional normal conducting (NC) magnets or high current pulsed (HCP) magnets are an economic solution. For high repetition rates above 1.0 Hz, superconducting Cos(N) (SC) magnets or superferric (SF) magnets are more attractive; at least if they are operated in DC mode and if no dynamic losses occur in the cryogenic system. Unfortunately, a range between these values exist, in which no clear recommendation can be given. Here, a more detailed investigation is necessary for each individual facility. A similar behaviour appears for the magnetic rigidity: For small values of the magnetic rigidity (10 Tm), for example, the NC magnets are more economic due to the low necessary field strengths. Depending on the beamline, permanent magnets (PM) can be an alternative, as well. For large values of the magnetic rigidity (>100 Tm), the necessary integrals field strengths become this large that the SF magnets or the SC magnets represent a more economic respectively more compact solution. Unfortunately, a range also exists, in which no clear recommendation can be given. GSI info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2156628 2016
spellingShingle Accelerators and Storage Rings
3: Energy Efficiency (EnEfficient)
3.6: Beam transfer channels with low power consumption
Gardlowski, Philipp
Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title_full Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title_fullStr Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title_full_unstemmed Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title_short Energy Efficient Beam Transfer Channels for High Energy Particle Accelerators
title_sort energy efficient beam transfer channels for high energy particle accelerators
topic Accelerators and Storage Rings
3: Energy Efficiency (EnEfficient)
3.6: Beam transfer channels with low power consumption
url http://cds.cern.ch/record/2156628
http://cds.cern.ch/record/2156628
work_keys_str_mv AT gardlowskiphilipp energyefficientbeamtransferchannelsforhighenergyparticleaccelerators