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Plans and schedule for the Long Shutdown LS1 Hie Isolde Physics Coordination Group CERN, 1 March 2012 Hie-Isolde Erwin Siesling.

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Presentation on theme: "Plans and schedule for the Long Shutdown LS1 Hie Isolde Physics Coordination Group CERN, 1 March 2012 Hie-Isolde Erwin Siesling."— Presentation transcript:

1 Plans and schedule for the Long Shutdown LS1 Hie Isolde Physics Coordination Group CERN, 1 March 2012 Hie-Isolde Erwin Siesling

2 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 2 Abstract Hie-Isolde – Impact on the facility Work during and around LS1 –Until LS1: Civil Engineering, Main Services –During LS1: Civil Engineering (tunnel in hall), Main Services, Cryogenics, Beam transfer Line, miniball move –End of LS1 and into the 2014 run: Cryogenics, Beam transfer Line, Cryo Modules, commissioning –Possible other LS1 activities.. TSR study

3 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 3 Isolde changes

4 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 4 Hie-Isolde Planning Hie-Isolde installation planning in EDMS: Projects – Accelerators - Hie-Isolde – Infrastructure & Integration - Planning https://edms.cern.ch/nav/P:CERN- 0000072786:V0/P:CERN-0000090679:V0/TAB3

5 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 5 Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4 201120122013201420152016 Civil Main services Cryo CM 1&2 CM 3&4 5.5MeV/u 10MeV/u Beam Transfer Line CM 5&6 Hie-Isolde Planning Activities until LS1: Civil Engineering & Main Services Dec 2012 - Apr 2014 sd CM1&2 Isolde & REX Ops shutdown LS1 Cryo Mod 1 & 2 install (Isolde normal operations) (REX perturbations) Timeline: sd Ventilation Demi water Electrical syst.s Start LS1 3 dec 2012

6 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 6 Until LS1 GS/SE: DANIEL PARCHET, ELISEO PEREZ-DUENAS LS1 Civil Engineering

7 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 7 Civil Engineering Construction starting date: Aug 2011

8 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 8 Civil Engineering Removal of the transport hangar September 2011

9 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 9 Civil Engineering Cutting the Hall 170 wall & Terrain flattening October 2011

10 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 10 Civil Engineering New SAS January 2012

11 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 11 Access 2012 run Move of the controlled access Shutdown, February 2012

12 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 12 Civil Engineering Compressor Building B.198 Start February 2012

13 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 13 Civil Engineering Cold Box Building B.199 Civil Engineering finished July 2012

14 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 14 Main Services Electrical systems, Cooling & Ventilation Start installation Main Services July 2012

15 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 15 Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4 201120122013201420152016 Civil Main services Cryo Beam Transfer Line Hie-Isolde versus LS1 Dec 2012 - Apr 2014 sd CM1&2 Isolde & REX Ops shutdown LS1 Cryo Mod 1 & 2 install (Isolde normal operations) (REX perturbations) Timeline: sd Main services Winter physics Jan-March 2013 ? Ventilation Cooling water Electrical syst.s (dismantling + installation works) Start LS1 3 dec 2012 End LS1:Start Low E physics apr 2014 CM 1&2 Activities during LS1: Civil Engineering (tunnel in hall), Main Services, Cryogenics, Beam transfer Line CM 3&4 5.5MeV/u 10MeV/u CM 5&6

16 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 16 Into LS1 EN/EL: RENE NECCA LS1 Electrical systems

17 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 17 Electrical systems Electrical systems: July 2012 – June 2013

18 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 18 Cooling & Ventilation EN/CV: PAUL PEPINSTER, BENOIT LACARELLE LS1 Start of LS1: 3 dec - Keydate!

19 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 19 Cooling & Ventilation EN/CV: PAUL PEPINSTER, BENOIT LACARELLE LS1 Point of No Return!

20 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 20 Cooling & Ventilation Cooling & Ventilation: July 2012 – June 2013

21 Hie Isolde around LS1, 1 March 2012 Erwin Siesling Ventil units 21 Cooling & Ventilation Cooling & Ventilation: July 2012 – June 2013

22 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 22 Cooling & Ventilation Ventilation unit Cooling units Cooling & Ventilation: July 2012 – June 2013

23 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 23 Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4Q1Q2Q3Q4 201120122013201420152016 Civil Main services Cryo CM 1&2 CM 3&4 5.5MeV/u 10MeV/u Beam Transfer Line CM 5&6 LS1 and 2014 run Dec 2012 - Apr 2014 sd CM1&2 Isolde & REX Ops shutdown LS1 Cryo Mod 1 & 2 install (Isolde normal operations) (REX perturbations) Timeline: sd Ventilation Demi water Electrical syst.s Activities LS1 into 2014 run: Cryogenics, Beam transfer Line, Cryo Modules, commissioning End LS1:Start Low E physics apr 2014

24 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 24 Cryogenics TE/CRG: NICOLAS DELRUELLE, JOS METSELAAR LS1 CM1&2 LS1 and 2014 run

25 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 25 Cryogenics Compressors: July 2013 – December 2013 Cold Box: Jan 2014 – June 2014

26 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 26 Tunnel and Cryo Line Cutting walls & install tunnel: Sep 2013 LS1 Cryo Cold Line: January 2014 – June 2014

27 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 27 Modular installation Superconducting Linac

28 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 28 Modular installation Courtesy: Matteo Pasini, Matthew Fraser Schematic:

29 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 29 Superconducting Linac TE/MSC: JEAN-PHILIPE TOCK, YANN LECLERCQ, LLOYD WILLIAMS, ARNAUD BOUZOUD LS1 Cavity and CM development and tests: Isolde facility not affected

30 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 30 Superconducting Linac LS1 CM1&2 TE/MSC: JEAN-PHILIPE TOCK, YANN LECLERCQ, LLOYD WILLIAMS, ARNAUD BOUZOUD

31 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 31 Hie-Isolde SC Linac First 10MeV/u by March 2016 Hie-Isolde SC Linac: Bunched beam by 2017 ? 5.5MeV/u by the autumn of 2014

32 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 32 Beam Transfer Line

33 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 33 Beam Transfer Line EN/HDO: YACINE KADI, TE/EPC: DAVID NISBET, TE/MSC: JEREMY BAUCHE, TE/ABT: BRENNAN GODDARD, BE/OP: DIDIER VOULOT LS1 CM1&2

34 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 34 Straight line with 2 branches – Oct 2013 - Sept 2014 Miniball move: Oct 2013 – April 2014 Miniball Actar / Helios Beam diagnostics Exp. station Miniball Beam Transfer Line Stage 1

35 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 35 The bend Miniball Actar / Helios TSR Spectrometer Exp. station 2nd Miniball move and Spectrometer installation TSR and beyond.. Stage 3: Beam Transfer Line Stage 2 Stage 3

36 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 36 TSR Max Planck Institute Heidelberg TSR @ Hie-Isolde TSR@Hie-ISOLDE LOI endored Jan 2011 TDR submitted Jan 2012 (K. Blaum, Y. Litvinov) TSR @ Hie-Isolde

37 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 37 Proposed layout to fit the TSR: Installation above the CERN service-tunnel Tilted beamline coming up from the machine. Cost study: Eliseo Perez-Duenas GS/SE 30m 25m Approx 3m higher than Isolde hall floor TSR building Jura (west) side 10m (7m between floor and crane hook)

38 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 38 Building cost study: Eliseo Perez-Duenas GS/SE Drawing: courtesy Didier Voulot 30m 25m 12.4m TSR building

39 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 39 Surface & Weight Total surface TSR floor: 25x30m= 750m2 of which 20x20m (400m2) reserved for the ring (final position of the ring within the building to be defined) 10.4x25m = 260m2 experimental area TSR floor approx. 3m above Hie Linac floor Level of the center of beam at 1.77m above TSR floor Total surface available basement: 12mx30m= 360m2 to house power- supplies and additional racks (total 29m length floor space for the TSR equipment and 7m for the e-target equipment + 10 standard 19’’ racks and ECOOL HV cage 4x4m2) Basement only under outer side of the service tunnel TSR Building surface

40 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 40 Surface & Weight Weight in each corner: Dipole: iron 12t + coil 0.8t Quadrupole: iron 1.9t + coil 0.36t Sextupole: 0.65t Concrete bases 3.2t (to be verified, unknown) Each corner: 2x12.8t + 5x2.26t + 3x0.65t + 2x3.2t= 45.25 ton Electron cooler: ECOOL magnet 6t ECOOL supporting structure 4t (to be verified, unknown), total 10ton Total TSR floor weight: 4x45.25ton=181ton 1 Electron cooler Total: 191 ton (Exclusive experiments, RF resonator and 19 standard 19’’ racks. Example: HELIOS magnet 12ton) TSR floor weight

41 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 41 Transfer lines courtesy Fredrik Wenander / Didier Voulot - The number of dipoles could be reduced by turning the ring 15 degrees (two 60 deg dipoles less) - Re-usage of Heidelberg magnets will reduce the costs. Available: 20 quadrupoles, 2 dipoles 60 deg (Attn. power-supplies 30 years old..)

42 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 42 Possible TSR integration : - TSR building & TSR cooling station Control room TSR Integration TSR building TSR cooling station pit

43 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 43 TSR costs Building costs: Rough estimate 3.5 MChf max. (including the 12m experimental space) The civil engineering study is ongoing and at the design office (outsourced) (Eliseo Perez-Duenas, CERN, GS/SE) 20t Overhead crane: not less than 300kChf (25 m wide, 20t, over 30m) (Caterina Bertone, CERN, EN/HE) Water station: 1MW 27C rough estimate 700kChf (Yannic Body, CERN, EN/CV) A few elements need 20C: some turbo pumps at inj and ej which could run at 27C and additional fan cooling, however, the cryo-compressors need 5kW of 20C water and the high power solenoid for the e-cooling as well Transfer Line: Injection line 1385kChf, Ejection line 915kChf = 1.3MChf (Fredrik Wenander, CERN, BE/ABP) Some elements can be recuperated from Heidelberg: to be discussed with Manfred Grieser Infrastructure: ventilation, electricity – no numbers yet. FTE’s – no numbers yet.

44 Hie Isolde around LS1, 1 March 2012 Erwin Siesling 44 Acknowledgement GS/SE: DANIEL PARCHET, ELISEO PEREZ-DUENAS EN/MEF: STEPHANE MARIDOR BE/ABP: FREDERIK WENANDER BE/OP: DIDIER VOULOT PH/SME: YORICK BLUMENFELD EN/HDO: YACINE KADI BE/RF: MATTEO PASINI, MATTHEW FRASER EN/CV: PAUL PEPINSTER, BENOIT LACARELLE EN/EL: RENE NECCA TE/CRG: NICOLAS DELRUELLE, JOS METSELAAR EN/STI: RICHARD CATHERALL, ANA-PAULA BERNARDES GS/DI: CYRILLE BEDEL TE/MSC: JEAN-PHILIPE TOCK, YANN LECLERCQ, LLOYD WILLIAMS, ARNAUD BOUZOUD


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