WP4 Progress Status

WP4 Progress Status
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This project focuses on adapting the EUROnu designed target station to meet ESSnuSB requirements, with tasks including coordination, system adaptation, optimization, and alternative solutions. The project aims to enhance the facility structure, explore new hadron collector options, and simulate the neutrino beam for optimal performance. Milestones and deliverables are set for design optimization, system integration, and final station completion.

  • Target Station Development
  • EUROnu
  • ESSnuSB
  • Neutrino Beam
  • Hadron Collector

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  1. WP4 Progress Status Piotr Cupial AGH University of Science and Technology Krakow, Poland Funded by the H2020 Framework Programme of the European Union ESSnuSB annual meeting, 7.11.2018 1

  2. Target station concept The switching yard is not part of WP4, it is being studied within WP3 ESSnuSB annual meeting, 7.11.2018 2

  3. Objectives: Adapt the EUROnu designed target station to the ESSnuSB requirements the target hadron collector (Horn) Power Supply Units Investigate the possibility of using a solenoid based hadron collector Optimise the facility structure Simulate the neutrino beam Tasks: Task 4.1 Coordination of the Target Station study (AGH) Task 4.2 Adapt the EUROnu design target station to the ESSnuSB requirements (AGH,CNRS,UniGe) Task 4.3 Target integration (AGH,CNRS,CERN) Task 4.4 Optimization of the horn-type hadron collector (CNRS, AGH, CERN) Task 4.5 Horn current pulse generator (CNRS) Task 4.6 Alternative hadron collector (UU, CERN) ESSnuSB annual meeting, 7.11.2018 3

  4. Deliverables and milestones Task Delive rable Milest one D4.1 Partner's responsibility/ Name Dead lines Year Description of task M24 2019 Optimised design of the magnetic horn (M24) Evaluation of an alternative hadron collector AGH D4.2 M28 2020 AGH (M28) Design of the pulse generator and of the horn D4.3 M36 2020 AGH cooling system (M36) D4.4 M45 2021 Design of the target station (M45) Review of the 1st year achievements, deliverables & costs (M12) Design of the hadron collection device (M18) First estimation of neutrino beam intensity AGH MS1 M12 2018 CNRS MS5 M18 2019 AGH MS7 M24 2019 AGH (M24) Review on interim milestones, deliverables & MS9 M24 2019 CNRS costs (M24) Review of the 3rd year milestones, deliverables & costs (M36) Final design of target station (M42) Cost and performance evaluation complete MS13 M36 2020 CNRS MS17 M42 2021 AGH MS18 M42 2021 CNRS (M48) 4

  5. Detailed tasks and progress status Adapt the EUROv design target station to the ESSnuSB requirements Target station concept for ESSnuSB Horn electrical system AGH/CNRS/UNI GE T4.1 Status T4.1.1 T4.1.2 T4.1.3 AGH/CNRS CNRS CNRS done underway underway Safety Optimization of the horn type hadron collectorAGH/CNRS/CERN Performance Stress levels in the horn and assessment of its lifetime Horn cooling cystem Horn support structure Safety Horn current pulse generator Pulse generator Electrical power supply (Strip line connector to the horn) T4.2 T4.2.1 CNRS underway T4.2.2 AGH underway T4.1.3 T4.2.4 T4.2.5 T4.3 T4.3.1 AGH/CNRS AGH CNRS CNRS CNRS underway underway T4.3.2 CNRS T4.3.3 Safety CNRS ESSnuSB annual meeting, 7.11.2018 5

  6. T4.4 T4.4.1 T4.4.2 Alernative hadron collector UU/CERN UU UU Performance Design issues underway Target performance and neutrino beam simulation Simulation Geant4/FLUKA Packed bed target (Baseline) Graphite target (Second Option) Target IntegrationAGH/CNRS/CERN/ T4.5 CNRS T4.5.1 T4.5.2 T4.5.3 CNRS CNRS CNRS T4.6 UNIGE Definition of target integration T4.6.1 AGH/UNIGE concept T4.6.2 T4.6.3 T4.6.4 T4.6.5 T4.6.6 Stress levels in the granular target AGH AGH AGH underway Target longevity Target cooling Target material Issues UNIGE/CERN CNRS/CERN underway Safety Feasibility of graphite target (Second option) Target station facility AGH/CNRS/CERN Target station layout AGH/CNRS/CERN Electrical power plant Cooling plant Global safety Cost evaluation T4.6.7 AGH T4.7 T4.7.1 T4.7.2 T4.7.3 T4.7.4 T4.8 CNRS AGH CNRS CNRS underway ESSnuSB annual meeting, 7.11.2018 6

  7. WP4 meetings are held regularly (5 video meetings held so far) Presentations of WP4 during conferences and workshops: Presentations specifically devoted to WP4 P. Cupial ESSnuSB Target Station , 7th High Power Targetry Workshop, Facility for Rare Isotope Beams (FRIB), East Lansing, 4-8.06.2018 M. Dracos The ESSnuSB Target and Horn Studies and Future Developments , NuFact2018, Blacksburg, Virginia, 12-18.08.2018 WP4 issues were also part of several other presentations this year ESSnuSB annual meeting, 7.11.2018 7

  8. Recruitment of posdocs: Two postdoc positions are currently open within WP4, both with application deadline of 30.11.2018: Postdoc at CNRS , Strasbourg, France, in the field of neutrino physics Postdoc at AGH UST, Krakow, Poland, in the field of computational mechanics or the design of high-power targetry The announcements have been posted on the ESSnuSB webpage (essnusb.eu/site/jobs-2/) as well as European and national forums ESSnuSB annual meeting, 7.11.2018 8

  9. Technical presentations to be made during the WP4 Sessions: Wednesday morning: P. Cupial Introduction to WP4 studies (AGH, Krakow) N. Vassilopoulos Present Status of Super Beam (IHEP, Beijing) P. Cupial Transient Temperature, Thermal Stress and Natural Frequency for Spheres: Analytical vs. Finite Element Analysis (AGH, Krakow) Wednesday afternoon: M. Koziol 3D Analysis of the Horn Under Magnetic and Thermal Excitation (AGH, Krakow) E. Baussan Target Station (CNRS, Strasbourg) P. Poussot Power Supply (CNRS, Strasbourg) Thursday morning: M. Olvegard Alternative Methods for Hadron Collection: Status and Plan (University of Uppsala) E. Baussan Safety (CNRS, Strasbourg) E. Noah The Baby Mind Project (University of Geneva) ESSnuSB annual meeting, 7.11.2018 9

  10. Thank you ESSnuSB annual meeting, 7.11.2018 10

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