5.2.2007 Beijing ILC Workshop Global Design Effort 1 The S0S1 Taskforce: an Example of the Complexity for the ILC R&D Environment Lutz Lilje DESY.

Slides:



Advertisements
Similar presentations
IT Strategic Planning Project – Hamilton Campus FY2005.
Advertisements

6-Nov-06 FALC Resource Board Global Design Effort 1 Report from the GDE Barry Barish Caltech / GDE 6-Nov-06.
“The Other Issues” II Moving Forward in Uncertain Times: Clearly, with reduced/loss of funding in the US and the UK, a timeline of 2010 for an EDR is unrealistic.
BDS GDE context LC-ABD2 : WP4 - Beam Line Design 12 th April 2007, LC-ABD Plenary, RHUL Deepa Angal-Kalinin ASTeC, The Cockcroft Institute.
Stoimen Stoimenov QA Engineer QA Engineer SitefinityLeads,SitefinityTeam6 Telerik QA Academy Telerik QA Academy.
Question 27: Outline the key steps for industrialization of machine components and the likely remaining vulnerabilities in achieving them. Achieving industrialization.
RF Cavity / Coupling Coil Module
1 Albrecht Wagner, Snowmass 0805 Albrecht Wagner DESY and Hamburg University Challenges for Realising the ILC.
5Feb07 Beijing GDE meeting 1 S2 Task Force Status (String test definition) Tom Himel.
ILC PM Meeting S0 Webex Global Design Effort 1 S0/S1 Next Steps Lutz Lilje GDE.
Global Design Effort BDS KOM Opening remarks/comments from EDR Project Management SLAC Marc Ross / Nick Walker.
Akira Yamamoto Project Manager, SCRF To be presented, April 19, 2009 AAP Review – SCRF Introduction AAP-SCRF-Introduction.
1 Q3 Main linac starting gradient, upgrade gradient, and upgrade path Results of WG5 discussions.
Global Design Effort U.S. ILC Cost Translation R. Stanek, et al. Vic Kuchler 1/26/07.
Module N° 8 – SSP implementation plan. SSP – A structured approach Module 2 Basic safety management concepts Module 2 Basic safety management concepts.
Cavity Yield Re-Evaluation Plan C.M. Ginsburg (Fermilab) July 10, 2009 (Essentially a copy of presentation June 24, 2009 to SCRF-ML WebEx meeting with.
AARD Sub-panel at Fermilab Feb , 2006 LARP Magnet R&D Program - S. Gourlay1 BNL -FNAL - LBNL - SLAC LARP Magnet R&D Program Steve Gourlay AARD Sub-Panel.
Needs of a European SCRF Facility - the BIG plan Lutz Lilje DESY -MPY- DESY 11/2006 Planning Resource needs.
Cavity Productions at DESY DESY -MPY- FNAL Overview on the cavity productions Review of cavity performance Some conclusions.
Nick Walker, Brian Foster LAL, Orsay WP2: Coordination with the GDE.
International Linear Collider The ILC is the worldwide consensus for the next major new facility. One year ago, the choice was made between the two alternate.
HLRF DRAFT Global Design Effort 1 Defining EDR* Work Packages [Engineering Design Report] Ray Larsen SLAC ILC Division for HLRF Team DRAFT April.
Global Design Effort ILC: From RDR to EDR or “How to Spend the Money” Nick Walker GDE.
Cryomodule Design and R&D during the EDR phase Robert Kephart With input from the T4 CM Collaboration.
Operations, Test facilities, CF&S Tom Himel SLAC.
D.Proch, DESY; GDE meeting Vancouver 06 Technical systems: Cavity Report Overview on costing activities for ILC –European costing method Overview industrial.
24-Aug-11 ILCSC -Mumbai Global Design Effort 1 ILC: Future after 2012 preserving GDE assets post-TDR pre-construction program.
R.L. Geng, KEK September 9, 2010 Global Design Effort 1 Near Term ILC Gradient R&D R&D Specification and Standardization Gradient Gradient Yield/Scatter.
November 7, 2006 Global Design Effort 1 R and D Board report Marc Ross (Fermilab) for ILC GDE R and D Board Valencia GDE meeting, November 7, 2006.
11 June 07 Fermilab Steering Group 1 ILC Baseline Schedule, Milestones, and Decision points Tom Himel.
Global Design Effort 1 S0 Status High-Gradient cavities Lutz Lilje DESY supplement by H. Hayano 04Sep2008 EC
Update on S0, S1 for ILC R&D H. Padamsee, Cornell For the S0/S1 Task Force.
The fourth Baseline Technical Review (BTR) - Conventional Facilities and Siting March 2012 All changes made to the CFS 2007 Reference Design during.
1 EMS Fundamentals An Introduction to the EMS Process Roadmap AASHTO EMS Workshop.
Status of the International Linear Collider and Importance of Industrialization B Barish Fermilab 21-Sept-05.
ALCPG/GDE Meeting FNAL Global Design Effort 1 Cavity Work Packages Lutz Lilje GDE.
1 Update on Q2 Main linac starting gradient, upgrade gradient, and upgrade path Results of WG5 discussions after feedback from plenary on Tuesday New Option.
1 Global Design Effort: Controls & LLRF Controls & LLRF Working Group: Tuesday Session (29 May 07) John Carwardine Kay Rehlich.
Introduction and Charge Barry Barish GDE Meeting Frascati 7-Dec-05.
22 September 2006 Global Design Effort 1 The Global R&D Board Status Bill Willis GDE Columbia University.
Conventional Facilities and Siting GG Global Design Effort BILCW 07 - Beijing1 Conventional Facilities and Siting Global Group Summary Report.
1 The ILC Control Work Packages. ILC Control System Work Packages GDE Oct Who We Are Collaboration loosely formed at Snowmass which included SLAC,
Industrial Participation & SRF Infrastructure at Fermilab Phil Pfund with input from Harry Carter, Rich Stanek, Mike Foley, Dan Olis, and others.
HiGrade-Kickoff DESY Global Design Effort 1 ILC-HiGrade WP6 High-Gradient cavities Lutz Lilje DESY.
Global Design Effort: Controls & LLRF Americas Region Team WBS x.2 Global Systems Program Overview for FY08/09.
Lutz Lilje DESY -MPY- SCRF Infrastructure at CERN? Electron Accelerator R&D for the Energy Frontier Lutz Lilje DESY –MPY-
Carlo Pagani University of Milano INFN Milano-LASA & GDE ILC and XFEL Cryomodules Preliminary thoughts for convergence ILC EDR Kick-off Meeting DESY,
General remarks: I am impressed with the quantity and quality of the work presented here and the functioning of the organization. I thank ILC and FNAL.
Global Design Effort September 20-22, 2006 MAC Review R&D Programme (Tools) Eckhard Elsen GDE DESY.
24-July-10 ICHEP-10 Paris Global Design Effort 1 Barry Barish Paris ICHEP 24-July-10 ILC Global Design Effort.
ILC 2007 Global Design Effort 1 Planning Damping Rings Activities in the Engineering Design Phase Andy Wolski Cockcroft Institute/University of Liverpool.
Global Design Effort1 September 20-22, 2006 MAC Review Response to 1 st MAC Mtg Barry Barish GDE.
1 Impedance-related and others collective effects Impedance-driven collective effects/Instabilities –Single-Bunch (very high priority) –Multiple-bunch.
Beijing ILC Workshop Global Design Effort 1 Main Linac EDR: Cavity & Cryomodule Discussion Lutz Lilje DESY.
ALCPG/GDE Meeting FNAL Global Design Effort 1 Cavity Specification Table 23 Oct 2007 FNAL Lutz Lilje DESY.
A European SCRF Infrastructure DESY -MPY Goals of the Infrastructure – ILC – Other projects Timeline – Phasing of work Needs.
1 Comments concerning DESY and TESLA Albrecht Wagner Comments for the 5th meeting of the ITRP at Caltech 28 June 2004 DESY and the LC What could DESY contribute.
19Jul06 Vancouver GDE meeting 1 S2 Task Force Status (String test definition) Tom Himel.
ACD Down-Select Criteria and Time Scales for HLRF ML-KOM FNAL September 27 、 2007 S. Fukuda, KEK & Ray Larsen, SLAC For the ILC HLRF Collaboration.
TDR guideline discussion on Cavity Integration
Information Systems Development
Evolving an ILC focused SCRF Facility from the XFEL Infrastructure
The ILC Control Work Packages
EDR HLRF Work Packages Draft Summary
Main Linac EDR: Cavity & Cryomodule Discussion
S4 will be a “big” Collaboration:
ILC Global Design Effort
Barry Barish GDE Caltech
The S0S1 Taskforce: an Example of the Complexity for the ILC R&D Environment Lutz Lilje DESY Beijing ILC Workshop Global Design Effort.
The EDR phase Discussion Session
Presentation transcript:

Beijing ILC Workshop Global Design Effort 1 The S0S1 Taskforce: an Example of the Complexity for the ILC R&D Environment Lutz Lilje DESY

Beijing ILC Workshop Global Design Effort 2 Cavity Yield The main problem with the cavity performance is getting enough cavities from the 1 st run through the preparation process. 35 MV/m have been achieved in several cases A way to distinguish between problems from the fabrication and the preparation is to make certain cuts on the available data (from TTF database). –Cavity Fabrication Look at the best test of each cavity of a production run –Excludes preparation to some degree, i.e. ‘will get it right eventually‘ –Implicitly assumes that fabrication defects e.g. in the welds cannot be cured –Cavity Preparation: Look at all tests of all cavities of a production batch –Includes all problems, change of procedures These assumptions on how the data is selected must be spelled out clearly –Test database e.g. at TTF is an essential tool to evaluate/correlate data

Beijing ILC Workshop Global Design Effort 3 Cavity Yield All tests including preparation problems, accidents… ‘Scatter‘ of results Best tests reflecting ‚‘fabrication‘ yield. Note: 3rd production data includes 1400°C cavities

Beijing ILC Workshop Global Design Effort 4 S0 Taskforce: Why??? You just saw why… but here is the complete story: –Cavity gradient possible, several cavities exceed 35 MV/m First test yield low Re-processing increases yield, but is costly Acceptance on initial test must be increased for large number of ILC cavities –Focused R&D needed to demonstrate required cavity yield for ILC design gradient Timeline of the ILC needed quick startup on this topic –Be in time for EDR as that is the last chance to change this fundamental parameter –International effort Several labs contribute with existing R&D program Need to coordinate –Get priorities right to achieve cavity yield goal –Economize on resources

Beijing ILC Workshop Global Design Effort 5 Problematic Issues to Be Coordinated Variety of cavity types is not helpful in the long-run –Various lengths, flange systems, magnetic shielding, HOM damping etc. E.g. Ichiro and TESLA-like cavities at KEK, small changes can have large effects –For the ultimate goal a single cavity type is needed Can be built and treated in different regions in parallel provided processes are transferable Variety of preparation recipes/setups and test culture –Must develop protocols that guarantee transferable results Monitoring of parameters should make processes more transparent (e.g. HF content) Exchanging cavities can facilitate Develop common parameter set to be tested esp. for multi-cells –Setups need to be qualified first (tight-loop) Many process steps from niobium to cavity in accelerating module –New vendors will have to learn –separate final process reproducibility from cavity reproducibility (includes fabrication) Cavity development is ongoing –Staging of cavity production is necessary to allow for evolution in cavity design and process improvements Ultimately the number of cavities being built and treated will be small compared to the ILC number of cavities

Beijing ILC Workshop Global Design Effort 6 S0S1: Common Test Protocols Good example of a data set: Talk by E. Kako today!

Beijing ILC Workshop Global Design Effort 7 S0S1 Plan Timeline with different phases developed –Focus on baseline TESLA Cavities, EP+800°C, … –Tried to watch out for alternatives Avoid stopping useful R&D on high priority alternatives e.g. large-grain or low-loss shape (Ichiro) Detailed reasoning for the plan has been presented already –Vancouver, Valencia, Wiki, Today (H. Hayano, S. Mishra) Boundary conditions –Limited resources E.g. real statistics require large number of cavities + sufficient preparation capacity Has influence on alternatives –Regional interest Might lead to duplication as several regions want to be capable of the core technology Need to manage Project management tools Manpower for tracking and coordination needed

Beijing ILC Workshop Global Design Effort 8 Task Force View: Production-like efforts

Beijing ILC Workshop Global Design Effort 9 Taskforce View: Single-Cells and Modules

Beijing ILC Workshop Global Design Effort 10 Projectizing S0S1: Project-Wide RDB –Interface to various interests and responsibilities –Deliverables (major milestones) must be tracked Ultimately: Prepare for critical decision on gradient end 2008 –Distribution of resources Roll-up of costs and manpower of full program worldwide Consultancy for regional programs e.g. FY07 programs in US, UK and Japan –Prioritization Other systems, engineering needs –Information to ILC Project management, Interface to EDR management –Tool: RDB database

Beijing ILC Workshop Global Design Effort 11 RDB Database

Beijing ILC Workshop Global Design Effort 12 S0 in RDB Database

Beijing ILC Workshop Global Design Effort 13 S0 in RDB Database

Beijing ILC Workshop Global Design Effort 14 S0S1 Task force –Deliverables must be tracked to more detail as in RDB Adjust plan if needed Interfacing to RDB database –Vetting of data –Scientific input into planning Comparison to alternatives Input from developments outside of the ILC –Tools: RDB database and e.g. MS Project Projectizing S0S1: Interregional Task Level

Beijing ILC Workshop Global Design Effort 15 Project manager needed: –‘Independent‘ of specific lab –Ensure communication between regions –Tracking Tasks and cavities –E.g. Paperwork –Scientific Improvements to processes –E.g. better monitoring in VTA,, cavity preparation process Data integration –Common data sets –Develop common protocols Data evaluation e.g. low-power vs. high-power tests –Tools: International test results database (a la TTF) e.g. MS Project Technical meeting –Could use of TTC video conference Projectizing S0S1: Interregional Task Level

Beijing ILC Workshop Global Design Effort 16 Projectizing S0S1: Laboratory Level –Demonstrate understanding and control of the technology –Detailed implementation of plan Scheduling of treatments Assignment of resources (manpower) –Determination of effort needed Money for Treatments, Hardware FTEs –Tools: Local project management tool –Good example by Shekhar Mishra today

Beijing ILC Workshop Global Design Effort 17 ILC R&D Environment Continues to Develop General development –With the change from RDR to EDR more project-like structure needs to be implemented for several topics Engineering needs will influence program –New ideas will develop from the engineering design level R&D has been prioritized by RDB –Global perspective essential –Has influenced the planning (funding) in regions already –Tried to find gaps, EDR phase will identify new gaps and/or de-emphasize current priorities –Re-evaluation on regular basis

Beijing ILC Workshop Global Design Effort 18 Summary S0S1 is one element of the complex R&D environment of the ILC which stretches from the project wide approach to the laboratory level –Various responsibilities, needs and interests e.g. non-project wide funding Project management tools are being implemented on these levels –Global R&D database –Interregional Task Level Plan developed Project engineer needed to support implementation Test results database to facilitate data analysis –Lab tools These have to support the communication flow and make the developments more transparent on an international level –Also needed to adapt the expansion of the GDE as well as to changing needs i.e. beginning of the EDR phase