MICE OsC – 22 nd June 2010 Liquid-hydrogen system and absorber M Hills T Bradshaw M Courthold S Ishimoto W Lau I Mullacrane P Warburton.

Slides:



Advertisements
Similar presentations
1 CM24 – 2 nd June 2009 LH2 Infrastructure M Hills M Courthold T Bradshaw I Mullacrane P Warburton.
Advertisements

Hydrogen R&D system HAZOP
Hydrogen Pre-Operation Safety Review 4 th October 2011 Hydrogen R&D System Operational Procedures and Test Plan M Courthold.
1 MICE Hydrogen System Elwyn Baynham, Tom Bradshaw, Iouri Ivaniouchenkov RAL MICE / RAL Safety RAL, 30 October 2003.
Muon g-2 Muon g-2 Experiment Quarterly Report Aria Soha All Experimenter’s Meeting March 2, 2015.
Status of the AFC at RAL Tom Bradshaw John Cobb Wing Lau Matt Hills Elwyn Baynham Mike Courthold Victoria Bayliss MICE Project Board 28 th June 2011.
MICE Superconducting Solenoids: Status and Update RAL: T W Bradshaw M Courthold J Rochford M Hills D Baynham Oxford: J Cobb W Lau S Yang MICE.
Hydrogen Hazard Summary and Preliminary FMECA and HAZOP Yury Ivanyushenkov Elwyn Baynham Tom Bradshaw.
1 Status of Hydrogen System Development MICE Collaboration Meeting, Frascati, June 26-29, 2005 Yury Ivanyushenkov, Tom Bradshaw, Elwyn Baynham, Mike Courthold,
CM26 – 26 th March 2010 Step IV: Liquid Hydrogen Infrastructure M Hills M Courthold T Bradshaw I Mullacrane P Warburton.
Global Magnet Systems including Field Mapping MICE Project Board 28 th June 2011 M Courthold – RAL R Preece - RAL.
Project Report Paul Drumm CM15, FNAL June MICE Schedule Overview First beam September/October 2007 –Shutdown from January 2007 –Eight months for.
1 MICE Absorber working group Columbia, 13 June 2003 MICE Hydrogen System. Preliminary HAZOP. Elwyn Baynham, Tom Bradshaw and Iouri Ivaniouchenkov,
MICE Safety System DE Baynham TW Bradshaw MJD Courthold Y Ivanyushenkov.
MICE AFCSWG Safety Review Summary Mary Anne Cummings Dec. 17, 2003 MICE Video Conference.
MICE Project Board 23 rd September 2010 Liquid Hydrogen and General Infrastructure M Hills T Bradshaw M Courthold S Griffiths T Hayler S Ishimoto A Lintern.
MICE Hydrogen System Implementation Tom Bradshaw Elwyn Baynham Iouri Ivaniouchenkov Jim Rochford.
Spectrometer Solenoid Fabrication & Testing Update Steve Virostek Lawrence Berkeley National Lab MICE CM24 at RAL June 1, 2009.
H2 Safety Review - response paul drumm MICE VC, March 29 th,2006.
Matthew Hills Hydrogen System – Piping and Instrumentation Diagram.
Hydrogen R&D system HAZOP and failure analysis Yury Ivanyushenkov, Elwyn Baynham, Tom Bradshaw, Mike Courthold, Matthew Hills and Tony Jones.
Hydrogen Delivery System – R&D Activities T W Bradshaw M Courthold M Hills J Rochford Daresbury Controls Group etc…
MICE Hydrogen System Design Tom Bradshaw Iouri Ivaniouchenkov Elwyn Baynham Columbia Meeting June 2003.
MICE Collaboration Meeting Harbin, China 13 – 17 January 2009 Integration Issues By Wing Lau, Oxford University.
MICE hydrogen review Summary of system hardware. System function To provide 22 litres of liquid hydrogen for use as a muon absorber within a superconducting.
Electrical Installation CM39 Andy Gallagher & Ian Mullacrane.
Electrical & Control CM40 Daresbury Laboratory. CM40 Electrical Infrastructure Update RRM2 Latest Latest on Installation Progress Rack Allocations Racks.
Mechanical Safety Systems and DSEAR Compliance
Patrick Thornton, SNS/FPE June 9, 2008
MICE Hydrogen Control System MICE H2 Review Meeting RAL 15 th Jan 2015 PJ Warburton – STFC Daresbury Lab.
Alan Grant OsC 30/4/ UK Project Finance & Schedule.
The MICE Hydrogen System Summary Tom Bradshaw, Yury Ivanyushenkov, Elwyn Baynham, Tony Jones, Mike Courthold and Matthew Hills Rutherford Appleton Laboratory.
MICE CM30 7 th July 2011 Liquid Hydrogen Delivery System M Hills (STFC, RAL) T Bradshaw (STFC, RAL) M Courthold (STFC, RAL) S Ishimoto (KEK) A Muir (STFC,
MICE - UK Project Progress Roy Preece 30 th April 2013.
Iouri Ivaniouchenkov RAL Safety considerations at RAL July 9, RAL MICE Collaboration Meeting 1.
MICE Hydrogen Safety Functions IEC61508 Compliance & Emergency Procedures MICE Safety Review Meeting 4 th Oct 2011 PJ Warburton - Daresbury Lab.
1 Liquid Hydrogen R&D test report Video Conference – 23/08/12 S Watson P Warburton M Courthold.
MICE Hydrogen Control System MICE Collaboration Meeting CM33 27 th July 2012 PJ Warburton – STFC Daresbury Lab.
Utilities 14 October 2008 Martin Nordby, Gordon Bowden.
Hydrogen system R&D. R&D programme – general points Hydrogen absorber system incorporates 2 novel aspects Hydrogen storage using a hydride bed Hydrogen.
Hydrogen Pre-Operation Safety Review 4 th October 2011 Results from Helium Commissioning M Hills.
Magnetic Mitigation - Contents l Magnetic Mitigation General l West Wall Compressors l Rack Room 2 l Magnetic Shielding Yoke Jason Tarrant – Integration.
The MICE Hydrogen System Safety Review Introduction Tom Bradshaw, Yury Ivanyushenkov, Elwyn Baynham, Tony Jones, Mike Courthold and Matthew Hills Rutherford.
Hydrogen Delivery System Schedule MICE Schedule Review 23 rd -25 th May 2011 M Hills STFC.
MICE Hydrogen Control System MICE Safety Review Meeting 4 th Oct 2011 PJ Warburton - Daresbury Lab.
CM31 - Vacuum System Update Mike Courthold Matt Hills 1.
CM 28 – 6 th October 2010 LH2 Infrastructure M Hills M Courthold T Bradshaw I Mullacrane P Warburton.
Hydrogen Pre-Operation Safety Review 4 th October 2011 The Hydrogen Delivery System – An Introduction M Hills.
CM27 – 8 th July 2010 LH2 System Progress and Future Plans M Hills T Bradshaw M Courthold I Mullacrane P Warburton.
CM28 - Vacuum System Update Matt Hills Mike Courthold 1.
1 Mice Collaboration Meeting CM33 Glasgow University 25 th – 29 th June 2012 STFC Daresbury Laboratory Electrical Infrastructure Report Authors : Ian Mullacrane.
SOME CEDAR NEWS Lau Gatignon / EN-MEF TD meeting 12/07/2011  Summary of HAZOP and Zoning meeting  Forthcoming CEDAR related work at CERN.
Spectrometer Solenoid Update Steve Virostek Lawrence Berkeley National Lab MICE Video Conference 120 May 7, 2009.
Hydrogen Control System MJD Courthold TW Bradshaw Y Ivanyushenkov D Baynham.
1 Mice Collaboration Meeting CM27 STFC Rutherford Appleton Laboratory, UK 7 th -10 th July 2010 Daresbury Laboratory Electrical Infrastructure Report Authors.
1 Liquid Hydrogen R&D test report CM34 – 17/10/12 S Watson P Warburton M Courthold.
OsC mtg 15/10/2014 MICE Step IV Alan Grant. Content Step IV – Construction Status – Finances – Schedule – Risks – Summary 2.
1 Liquid Hydrogen update CM33 S Watson P Warburton M Courthold.
1 MICE absorbers work package MPB – 27/10/15 Mike Courthold Mark Tucker Phil Warburton Steve Watson.
1 MICE Hydrogen system Working group mtg – 01/09/14.
Schedule to completion, Risk and Critical Interfaces Roy Preece STFC RAL RLSR 16 th April 2015.
Schedule and Milestones Roy Preece STFC RAL FAC 17 th April 2015.
Working group meeting 07/05/15. Agenda Overview of review and current action list Relief system – Summary of problem – Details of analysis, testing and.
S A Griffiths CM42 June 2015 Electrical & Control.
Hydrogen System Update
Liquid Hydrogen Infrastructure Update
Absorber progress MICE-ISIS review of the liquid hydrogen system will be held in early January; guidance from Nominated Engineers on the imported absorber.
MICE Safety Review Meeting 4th Oct 2011 PJ Warburton - Daresbury Lab
Status of Hydrogen System Development
Presentation transcript:

MICE OsC – 22 nd June 2010 Liquid-hydrogen system and absorber M Hills T Bradshaw M Courthold S Ishimoto W Lau I Mullacrane P Warburton

MICE OsC – 22 nd June 2010 Contents 1.Introduction 2.Latest progress on R&D system manufacture 3.The system safety case 4.Control system 5.Hall infrastructure 6.Integration with the AFC module 7.Summary & plans for 2010/11

MICE OsC – 22 nd June 2010 The Hydrogen Delivery System and Absorber 3 AFC Module (Tesla/Oxford /STFC) Absorber (KEK/Mississippi) Hydrogen Delivery System (STFC)

MICE OsC – 22 nd June 2010 System Components

MICE OsC – 22 nd June 2010 R&D System Manufacture (1)  Buffer Volume, Transfer Line and Test Cryostat all complete  Gas Panel assembly well advanced  Design of enclosure is being detailed 5

MICE OsC – 22 nd June 2010 R&D System Manufacture (2) –Gas Panel manufacturing –Weld inspection and pipe cleaning complete –Final assembly of pipework underway –Flow meters (final item of instrumentation) procured and installed in the gas panel –Relief valves assembled into dedicated mounting frames 6

MICE OsC – 22 nd June 2010 Cryostat Cooldown Set-up

MICE OsC – 22 nd June 2010 Cryostat Cooldown Pre-cool with LN2

MICE OsC – 22 nd June 2010 Safety Approach –The system must tolerate two things going wrong simultaneously without becoming unsafe –Design philosophy Maintain separation of hydrogen and oxygen atmospheres Avoid sources of ignition (a hydrogen-oxygen mixture only needs 19µJ to ignite) –Standards Dangerous Substances and Explosive Atmospheres Regulations (DSEAR). This is the UK implementation of the EU ATEX User Directive. IEC (Functional safety of electrical/electronic/programmable electronic systems) –Passive safety concept Relief valves will open to return gas to the hydride bed or high level vents in the event of a rapid pressure rise (e.g. due to loss of insulating vacuum). This happens independently of the control system. 9

MICE OsC – 22 nd June 2010 MICE Safety Considerations The design of the MICE AFC module creates particular requirements: –Thin windows on absorber have a design pressure of 1.7bara (they will be burst pressure tested to 4x this). –Hydrogen system consequently operates at low pressure (relief valves set at 1.5bara; burst discs at 1.9bara) –Rapid pressure rise could result from large liquid-to-gas expansion ratio of hydrogen (approx. 780/1) –Pipework, Buffer Volume and relief valves are sized for total loss of vacuum in the AFC module 10

MICE OsC – 22 nd June 2010 DSEAR Zoning 11  Test Cryostat (or AFC absorber vacuum space)  Gas Panel Enclosure  Pump Enclosure  Connecting ductwork...are Zone 2. (“A place in which an explosive atmosphere....is not likely to occur in normal operation, but, if it does occur, will persist for a short period only.”) The MICE Hall is not

MICE OsC – 22 nd June 2010 Control System (1)  Control Panel assembled with (almost) all components needed for He testing  Barriers provide intrinsic safety (<19µJ in the circuit) for all wiring except the heaters.  PLC programmed  Temperature logging  Valve control tested  Example control sequence tested  Heater control implemented 12 PLC Barriers GP & Cryostat Connectors

MICE OsC – 22 nd June 2010 Control System (2) –Cryostat monitoring complete (almost) –Sequences for gas panel operation currently being written –Design work underway for ventilation system and vacuum system control.

MICE OsC – 22 nd June 2010 Control System Safety Functions Only three functions of the control system identified as ‘safety critical’: I.Operation of the ventilation system on detection of a hydrogen leak II.Shut-off PV20* if there is pressure rise in the cryostat during operation. III.Interlock the Gas Panel Enclosure with system returning to ‘safe state’ on breaking of interlock These will all be hard-wired and separate from the PLC. [*This isolates the vacuum system.] 14

MICE OsC – 22 nd June 2010 UPS Requirements  Recent discussions held amongst the Hydrogen System team on the UPS requirements for the system  Document currently being drafted for submission to MICE Technical Board  Key conclusions –In the event of a mains failure: System will fail to its pre-defined ‘safe-state’ Instrumentation and valve position information should continue to be available from the control system The hydrogen detection system should continue to function 15

MICE OsC – 22 nd June 2010 Hall Infrastructure To install the R&D system in the MICE Hall requires: –Bottle store –Vacuum system with roughing pumps sited externally –Ventilation system to exhaust any leak in Gas Panel, Buffer Volume or Hydride Bed. 16

MICE OsC – 22 nd June 2010 Hall Infrastructure 17 Relief lines Ventilation ducts Fans Test Cryostat Gas Panel Enclosures

MICE OsC – 22 nd June 2010 Ventilation System H2 vented during operation of relief valves is separate form ventilation system

MICE OsC – 22 nd June 2010 Ventilation System Basis of safety –Eliminate sources of ignition ATEX rated fans –Fans are specified such that one fan only is capable of providing sufficient flow to exhaust all three systems –An explosive atmosphere from a small leak in the gas panel would only persist for a matter of minutes –Fans have been purchased and are ready to install. 19

MICE OsC – 22 nd June 2010 Vacuum System –Dedicated pump enclosure to be sited on MICE Hall roof –Will house backing pumps required for all 3 hydrogen systems –Will also have capacity to house backing pumps required for other cooling channel modules –Designated Hydrogen Zone 2 (same as Gas Panel Enclosures) for DSEAR purposes –Turbo pumps for AFC modules’ safety vacuum shown on South Wall (must be behind magnetic shield wall) Turbo pumps Backing pump

MICE OsC – 22 nd June 2010 – Located opposite the MLCR – Virtually all preparation for rack installation complete: – room cleaned out – new door fitted – redundant pipes removed – Cabinet support frames installed – cable routes established Hydrogen Control Room

MICE OsC – 22 nd June 2010 Integration with the AFC –Working with Oxford, KEK and Tesla to ensure that the R&D system is compatible with the AFC module –Instrumentation –Process line connections –Aim to test absorber in R&D test cryostat to check interfaces and instrumentation 22

MICE OsC – 22 nd June 2010 Absorber Instrumentation 23

MICE OsC – 22 nd June 2010 Schedule 24

MICE OsC – 22 nd June 2010 Summary and Future Plans –R&D System components complete with exception of Gas Panel and Enclosure; these are due for installation at start of long ISIS shutdown. –Control system well advanced –Safety principles of system well established, but implementation and documentation of these are still ongoing. Results from helium testing will be an important input to a pre-operation safety review. –Design work underway for hall infrastructure requirements, but lots to do. –Need to continue to work closely with KEK, Oxford and Tesla to ensure compatibility with AFC. –Aim to take advantage of the long ISIS shutdown and delays to the Spectrometer Solenoids to install as much infrastructure as possible in the rest of this financial year. –Several tasks: Install R&D system components on south mezzanine Build pumping enclosure and install vacuum system Position fans, install ductwork and construct access platforms Route vent lines outside hall Install hydrogen detection system Route cabling and install control racks in H2 Control Room 25