HIGH RADIATION TO MATERIALS: HIRADMAT STATUS HiRadMat Scientific Board, 23/4/2012 Outline  Location  Status  Beam line  Infrastructure  Exp. Area.

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Presentation transcript:

HIGH RADIATION TO MATERIALS: HIRADMAT STATUS HiRadMat Scientific Board, 23/4/2012 Outline  Location  Status  Beam line  Infrastructure  Exp. Area  Surface lab  Control room  Bunker A. Pardons, S. Evrard EN-MEF EDMS

HRM Sci. Board, 23rd of April, HiRadMat Location S. EVRARD

3 HiRadMat shares the same extraction from SPS as the TI2 line to LHC The experimental area will be upstream the old T9 target for the West Area Neutrino Facility - WANF HRM Sci. Board, 23rd of April, 2012S. EVRARD HiRadMat Location

HRM Sci. Board, 23rd of April, 2012S. EVRARD 4 Control room Surface lab HRM Sci. Board, 23rd of April, 2012S. EVRARD HiRadMat Location

HRM Sci. Board, 23rd of April, 2012S. EVRARD 5 Test Laboratory Control room BA7 Access to underground (person + light tooling) Entrance Access to underground Equipment by elevator HiRadMat Location

6 ‣ WANF dismantling completed ‣ 95t of waste, 323 m3 ‣ 800t of blocks moved around ‣ Beam line (TT66) installation completed ‣ 25 magnets, 13 power converters ‣ 17 beam instrumentation elements ‣ 200m of new vacuum, + TI2 vacuum adaptation ‣ 460 new cables, 4 km, 300 old cables removed ‣ Dry run (April ’11), LI beam commissioning (June ’11), HI commissioning (September ’11) ‣ Infrastructure & Experimental area ready for first experiment ‣ Beam dump installed ‣ Tables for experiments installed and tested. ‣ Ventilation system working, tested and accepted ‣ Access system working, tested and accepted ‣ RAMSES monitoring fully commissioned and operational ‣ Control room and laboratory ready in BA7 Status as of today HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

7 HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

8 vital to check beam line components, instrumentation and optics Low Intensity beam commissioning Wed. 22 June. First pilot sent reached the end of the beam line: Energy matching and trajectory correction performed; Check of: Beam instrumentation response Logging Aperture measurement Optics change Radiation monitor response Courtesy of Malika Meddahi HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

9 Low Intensity beam commissioning: orthogonal steering The beam was steered independently in both planes within the range +/- 4 mm, as specified in the HiRadMat specs. (last BTV screen) Courtesy of Malika Meddahi HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

Radiation monitoring 10  1 x stray rad. Station (includes cabin + infrastructure)  Ventilation station  8 x PMI monitors (for the HIRADMAT area and the neighbouring tunnel, accurate position to be defined)  2 x IG5 monitors (hydrogen type), 1 x IG5 monitors (argon type)  3 Alarm Units (UA)  1 x hand foot monitor  1 x material control monitor BA7 TCC6 B.846 TNC TT61 EPIC ERC Stray radiation Monitoring VGM - VAS Ventilation Monitoring PCM PMI IG5 HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

11 Low Intensity beam commissioning: radiation monitor response Readings (Sv/h) of the residual dose rate monitor PMIHR05 installed next to the dump in the HiRadMat experimental. Courtesy of Malika Meddahi HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

12 High intensity beam commissioning LHC nominal with 144 bunches Courtesy of C. Theis HRM Sci. Board, 23rd of April, 2012S. EVRARD HiRadMat Status

Access 13 HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD

Cooling & Ventilation Run mode 2- Flushing mode 3- Access mode 4- Cold smoke extraction mode HiRadMat Status HRM Sci. Board, 23rd of April, 2012S. EVRARD TNC

15 QuestionProcedureEDMS How to get access authorized to the HiRadMat facility ? Preparatory steps to take before accessing to HiRadMat How to get access to HiRadMatAccess procedure How to escape from the facility ?Escape procedure How to patrol the facility ?Patrol procedure How to deal with activated material ? Activated material management procedure How to handle alarms from HRM ?Alarm management procedure How to maintain the facility ?Maintenance plan How to deal with incidents ?Faulty situation and incident analysis How to manage fire risk ?Fire prevention and fire risk management Operation part HiRadMat Safety file HRM Sci. Board, 23rd of April, 2012S. EVRARD

Experimental area 16  3 positions are foreseen for the test object: stand A, B and C  Base tables carry services (water, signal, motorisation)  Base tables are fixed to tunnel floor and aligned w.r.t. beam  Test object will be on an interface table that connects to the base Test zone in TNC – Base Tables HRM Sci. Board, 23rd of April, 2012S. EVRARD A B C

Experimental area 17 Integration in tunnel Reminder: Test objects must be contained, cable feed-throughs and portholes must be tight Installation of table is 100% remote Each access to TNC must be duly justified. They must be requested before the test table installation. Tables compatible with different sizes and types of test objects After the beam test, the test table will be moved remotely to a downstream location in TNC for a cool-down time defined by the radioprotection team. After the cool-down time, the object will be transported to the surface and brought to an adapted (CERN-RP) lab for dismantling. HiRadMat project recovers the mobile table, the user is responsible for treatment of the test object. HRM Sci. Board, 23rd of April, 2012S. EVRARD

18 Experimental area: Plug-in test Experimental area Tested equipment will be remotely handled Crane driver training completed 3 interface table ready 5 additional ones in the pipeline HRM Sci. Board, 23rd of April, 2012S. EVRARD

Experimental area 19 Services available in 2012 On passage-side wall opposite to test stand: - Manual gas connector for neutral gas (He or N 2 – on request) In TA7- TJ7, at ~25m from test stands -Power (230V) -Signal rack for testing signal & motorisation connections Services available in irradiation area In 2012 Plug-in on base-table: - Cooling circuit (30kW, 3m 3 /h, 9bar) - Power (4 kV/2.5kA) - Signal cables (50V/2A e.g. for camera, motorization, vibration measurement ) Tables A,B,C are all equipped HRM Sci. Board, 23rd of April, 2012S. EVRARD

Surface lab 20  Replica of test stand like in TNC  Preparation area for the experiment mounting, alignment, test with cables/readout  Base table has all connectors, signals read in control room  Test table is aligned (CERN surveyors) w.r.t. virtual beam  No radioactive objects allowed! HRM Sci. Board, 23rd of April, 2012S. EVRARD

Control Room 21  All cables arrive there: 1 rack/stand + 1 rack for surface lab  Beam terminal and info from SPS (beam control from CCC only)  All exp. monitoring during beam test from control room  Network and timing signal available HRM Sci. Board, 23rd of April, 2012S. EVRARD

Bunker in TJ7 22  Protect analysis hardware (fast camera, vibrometer)  230V power supply, network and timing signal available HRM Sci. Board, 23rd of April, 2012S. EVRARD

HRM Sci. Board, 23rd of April, Thank you for your attention – Any questions? HD pictures of the HRM facility available herehere Layouts consultation: 3DVIA composer (under construction) High Radiation to Materials: S. EVRARD HiRadMat site