M. Jimenez AT/VAC Room Temperature (LSS) Vacuum Systems M. Jimenez.

Slides:



Advertisements
Similar presentations
Sputter Stand Safety Specifics Electrical Hazards High Voltage : Electrical power is required for the high voltage supply, gauging, system controller and.
Advertisements

Muon g-2 Muon g-2 Experiment Quarterly Report Aria Soha All Experimenter’s Meeting March 2, 2015.
LHC HARDWARE COMMISSIONING REVIEW May 2005 CRYOGENIC VACUUM SYSTEM Paul Cruikshank for AT/VAC.
Progress and Plan for Superconducting RF Cavity RF Group.
FAC, 10/12/06 D. Schultz 1 e-Beams Systems Update Linac Injector Undulator Production MMF commissioning ARR David Schultz.
LHC VACUUM SYSTEM: 2012 REVIEW AND 2014 OUTLOOK G. Lanza, V. Baglin, G. Bregliozzi, J.M. Jimenez EVIAN 2012.
1. Commissioning of cryogenic crates using Mobile Test Bench 1. The Mobile Test Bench 2. Cryogenics crates and equipment – types of transducers and actuators.
Isabelle Laugier, AT/VAC/ICM Section February 7 th 2008.
1 Presented at ColUSM by D. Ramos on behalf of the Cold Collimator Feasibility Study Working Group Longitudinal.
The ESS vacuum team has overall responsibility for all technical vacuum systems used on the: Accelerator, Target and Neutron Scattering Instruments and.
LTC Extended days, 03 March’08 J.M. Jimenez, AT Vacuum Group LHC Vacuum commissioning J.M. Jimenez On behalf of AT-VAC.
Workshop “Vacuum systems of Synchrotron Light Sources“ organized by MAX-LAB & ALBA Barcelona, th September 2005 Instrumentation and Vacuum Control.
Vacuum Workshop on Vacuum Systems for Synchrotron Light Sources, Barcelona, Installation and vacuum conditioning, 12 th and 13 th September 2005 L. Schulz.
Experimental Beampipes: Status and Outlook Ray Veness / AT-VAC For the beampipe team With many thanks to the experiment’s installation and coordination.
1 LHC vacuum Rossano Giachino Acknowledgments Jimenez,V.Baglin,J.C.Billy,I.Laugier Rossano Giachino November 2007.
Workshop Chamonix XIV Shortcuts during installation and commissioning: risk and benefit H. Gruehagen, G. Riddone on behalf of the AT/ACR group 18 January.
Roman Pot Engineering Design Review CERN, 14 February 2006 M.Oriunno, CERN PH-TOT Installation, Commissioning and Schedule.
F. Mazzolini Vacuum Systems for Synchrotron Light Sources Barcelona, September 12– Front-end vacuum system F.Mazzolini.
05 Novembre 2003Chamonix XIV Workshop, January How to deal with leaks in the QRL and magnet insulation vacuum Paul Cruikshank for AT/VAC Germana.
Injectors & LHC report K. Foraz on behalf of OSS members 14/06/2013LSC - K. Foraz1.
Claudio Bortolin. Drilling: – tungsten carbide tip welded on twisted ss cable – drill to operate the rotation – counter-flow at 200 mbar w/manometer to.
Experimental Sectors Ray Veness / AT-VAC With many thanks to G.Foffano + W.Cameron TS/MME Patrick Lepeule / AT-VAC.
Technology Department LSS2 modifications Impact on the vacuum systems LTEX - 18/01/2011 Eric PAGE – TE-VSC.
Transport of the CLIC Modules and Elements CLIC Workshop October 2007 Two Beam Hardware and Integration Working Group Keith Kershaw (CERN)
11/4/2005OLAV 1 Workshop CERNW. Maan Fast Vacuum Valves at CERN -Introduction to fast valves -History of fast valves in use/used at CERN -LEP fast shutters.
Test plan for SPL short cryomodule O. Brunner, W. Weingarten WW 1SPL cryo-module meeting 19 October 2010.
Workshop Chamonix XV27-January-2006 DivonneMassimiliano Ferro-Luzzi 1 State of LHCb for the Sector Test  Overview  Agreement  Status of –VELO –exit.
CM27 – 8 th July 2010 LH2 System Progress and Future Plans M Hills T Bradshaw M Courthold I Mullacrane P Warburton.
56 Mhz Vacuum Mike Mapes Mhz Insulating Vacuum TURBO PUMP WITH GATE VALVE AND GAUGE SET MOUNTED ON TANK SIMILAR TO RHIC CRYOSTAT & VALVE.
Isabelle Laugier, AT/VAC/ICM Section May 6 th 2008 LHC Vacuum Control system.
Machine Status  Proton Source Commissioning and Studies 8/13-8/14: Linac & Booster Maintenance Period  Main Injector MI30 vacuum ○ Work continues to.
CHAMONIX XV QRL installation and first experiences of operation G. Riddone on behalf of the QRL team AT/ACR-cd Acknowledgements to AT/ACR-op and AT/ACR-in.
RF power couplers vacuum issues J.M. Jimenez Vacuum, Surfaces and Coatings Group (TE-VSC)
Interface of FP420 to LHC FP420 meeting 28-Sep-2006.
Technology Department MKP status L. Sermeus, L. Ducimetière TCM 18 November 2014.
Beampipe Installation Status Ray Veness For the Beampipe team in AT/VAC and TS-MME.
Date 2007/Sept./12-14 EDR kick-off-meeting Global Design Effort 1 Cryomodule Interface definition N. Ohuchi.
Preparation for Circulating Beam - Part II Collimators (40') Oliver Aberle o Breakdown of tests foreseen in preparation for beam o Equipment folder: tests.
Vacuum assessment for BI equipment TE-VSC. Why do we need to assess BI components 10/6/2015 BI Beam Operational Spare Strategy Workshop No 2 2 The main.
LHC Beampipes Ray Veness / AT-VAC FP XII 08Beam Vacuum- R.Veness.
ESS Vacuum Standardization
LHC schedule status K. Foraz EN-MEF 12/04/2013LSC - K. Foraz1.
Wish list from ESS Christine Darve H-ECCTD Kick-off meeting 16 March
Workshop on cryogenic & vacuum sectorisation of the SPL Vacuum Sectorisation Paul Cruikshank, CERN Technology Department (TE) Vacuum Surfaces & Coatings.
Vacuum Related Procedures and Tools of IHEP ILC Test Cryomodule Assembly Jiyuan Zhai (IHEP) TTC Topical Workshop on SRF Cryomodule Clean Room Assembly.
Training LHC Powering – Blanca Perea Solano From Individual System Tests to Powering to Nominal Blanca Perea on behalf of Hardware Commissioning Coordination.
Movable beam pipe and NNC Study & prototype development Manchester 14/12/20091D. FP meeting.
Inner Triplet Review 1 H. Prin AT/MEL Activities on the triplets at CERN Reception and Acceptance Triplet String Assembly in Building 181 Handling and.
ESS Cryomodule Status Meeting – Introduction | | Christine Darve Introduction to Cryomodules for the ESS 2013 January, 9 th Christine Darve.
Inner Triplet Review 1 H. Prin AT/MEL Activities on the triplets at CERN Reception and Acceptance Triplet String Assembly in Building 181 Handling and.
Status of Mechanical Design of LEBT Rich Andrews, Matt Alvarez, Tim Hamerla, Danny Snee.
S A Griffiths CM42 June 2015 Electrical & Control.
Teleconf ACS – FREIA 28th March 2017
Teleconference ACS – FREIA 31th May 2017
Ultra-vacuum components and systems
ELENA – Vacuum chambers and vacuum activities
Testing of SC Magnets Status - November 2010
1.3-GHz Cavity Vacuum Furnace at IB4
ELENA installation and commissioning status
BA6 – crab cavity activities in EYETS
Status of LHC installation & New Installation Schedule
Installation of an Instrument on a CERN machine
Possible causes for SPS ZS2 misalignment
Consolidation and Upgrade of the LHC Experimental Vacuum Systems
XFEL Vacuum System Commissioning
J.M. Jimenez On behalf of TE-VSC group
On behalf of TE-VSC group
November technical stop activities:
ISRC and LEBT Vacuum System Design
Teleconference ACS – FREIA 19th June 2017
Presentation transcript:

M. Jimenez AT/VAC Room Temperature (LSS) Vacuum Systems M. Jimenez

M. Jimenez AT/VAC Main Topics Introduction to the RT LSS Vacuum Systems Installation Sequence –Mechanical installation –Check-out of the Instrumentation and Control System –Bake out and NEG activation Vacuum Control and Interlock Systems Commissioning Failure scenarios and their impacts Overlap between RT vacuum system installation & HC

M. Jimenez AT/VAC Introduction to the RT LSS Vacuum Systems LSS RT Elementary Sector Ref: LHCLJV_L0011

M. Jimenez AT/VAC Introduction to the RT LSS Vacuum Systems Know-how Well known procedures validated during the installation and operation of previous accelerators like ISR and LEP The use of NEG coated chambers requires additional precautions: –Limit the exposure of the coatings to ambient atmosphere, –Avoid any leak prior or during the activation cycle (performance dramatically reduced), –Special bake out and NEG activation cycles for tanks with BN or C-C (TDI, TCDx and collimators).  Laboratory and LEIR experience confirmed the procedures

M. Jimenez AT/VAC Installation Sequence Mechanical Installation Installation of the standalone magnet cryostats –Connection of the standalone beam vacuum to the pumping modules –Pumping & leak detection (4-6 weeks required to go down to mbar) –Bake out of RT parts of the standalone cold sector prior to cool down  in the background of the interconnections & assembly of inner triplets Installation of the RT vacuum sectors –Marking & installation of the supports, installation of machine elements –Installation of vacuum chambers, transitions, bellows, pumping and instrumentation modules –Survey (AT/VAC), pumping and leak detection Bake out installation and check-out –Installation of the heaters, cabling and connection to the regulation box –Check-out of the cabling by launching a short cycle –“Cleaning” of the area to allow night transportations Vacuum Instrumentation and Control System –Installation of ion pump power supplies, gauges and sector valves controllers in the racks –Cable connection on the equipments in the tunnel

M. Jimenez AT/VAC Installation Sequence Check-out of the Instrumentation & Control System Prior to these activities, the RT sector shall be under vacuum, leak tight and with the installation of the instrumentation and Control system completed Check list: –Control cable at the level of the sector valve disconnected (avoid manipulations) –Gauges and ion pumps connected and controlled  electrical test, shall not be powered ON to avoid contaminations (230 V disconnected) –Connection to the controllers and verification of the communication interface with the PLC master –Verification of the vacuum interlocks to the bake out regulation Controller

M. Jimenez AT/VAC Installation Sequence Bake out and NEG activation Prior to these activities, the RT sector shall be under vacuum, leak tight and with the installation of the instrumentation and Control system completed and checked Bake out and NEG activation sequence: –Checking the entire system ½ d –Programming the bake out and NEG activation cycles –Bake out of the non NEG coated components 1.5 d –NEG activation 1.5 d –Removal of bake out and pumping equipment1 d  Transport restrictions during the NEG activation when T>180 °C  Will be planed during the day

M. Jimenez AT/VAC Vacuum Control & Interlock Systems Commissioning Prior to these activities, the RT sector shall be under vacuum, leak tight, the installation of the instrumentation and Control system completed and the vacuum systems (standalone cold and RT with NEG activation) according to the specifications Sequence of commissioning –Reconnection of the sector valves –Checking the sector valves RT / Sector valve / RT  Upstream and downstream RT sectors baked and with NEG activated RT / Sector valve / Cold Sector (Standalone)  RT sectors baked and with NEG activated and Cold sector 4.5 K (1.9 K pour les triplets) –Checking the interface between the vacuum system and the BIC  No activities in parallel to limit consequences when manipulating the sector valves If the required conditions are not available, the commissioning will be postponed and will take place during the Hardware Commissioning, after achieving the specified conditions.

M. Jimenez AT/VAC Failure scenarios and their impacts Overlap between RT vacuum system install. & HC Failure scenarios –Leak on the cold beam vacuum  Shall be repaired prior to the cool down –Replacement of a failing equipment –Leak on a RT beam vacuum after the bake out or NEG activation –Vacuum specifications not achieved  Bake out and NEG activation shall be repeated Overlaps –Delays in the installation of machine elements –Delays in the verification of the interlocks Sector valves interlocks Interlocks with the BIC