Philip Burrows MDI Panel Meeting 15/08/06 Philip Burrows John Adams Institute Oxford University SiD and IR/MDI Issues.

Slides:



Advertisements
Similar presentations
Kitakami IR Access Discussions T. Markiewicz/SLAC 13 May 2014 SiD Meeting / AWLC Fermilab.
Advertisements

SiD Surface assembly Marco Oriunno (SLAC) MDI-CFS Meeting Sep. 4-6, 2014, Ichinoseki (Japan)
Replies by N.Meyners (in green) 27 August 2007ILC Questions M. Breidenbach1 ILC Detector Strategy Questions Some of us have been wondering about the fundamental.
Global Design Effort Goals and Introduction Andrei Seryi, SLAC, September 17, 2007.
1 IR Hall for GLD Oct Y. Sugimoto KEK. 2 Underground hall HybridPure CMS IR hall area (WxL)25x55 Beam height8.6 Crane max hook height20.5 Largest.
Summary of wg2a (BDS and IR) Deepa Angal-Kalinin, Shigeru Kuroda, Andrei Seryi October 21, 2005.
Global Design Effort Detector concept # Plenary introductory talk IRENG07 Name September 17, 2007.
NLC - The Next Linear Collider Project IR Layout Tom Markiewicz SLAC LCWS Cornell 15 July 2003.
DH in Hybrid-A and ILD 2014/9/5 Yasuhiro Sugimoto 1.
Experimental hall in Japanese mountain site Y. Sugimoto ILD MDI/Integration 1.
BDS Design Studies John Amann ILC Mechanical Engineering 10/24/06.
November 07, 2006 Global Design Effort 1 Beam Delivery System updates BDS Area leaders Deepa Angal-Kalinin, Hitoshi Yamamoto, Andrei Seryi Valencia GDE.
1 GLD Surface Assembly Y. Sugimoto KEK
Philip Burrows MDI session, LCWS06 Bangalore, 10/3/06 SiD MDI Issues Philip Burrows John Adams Institute Oxford University Thanks to: Marty Breidenbach,
LCC Linear Collider Collaboratio ILC - CFS 12 November 2013 LCWS13 Tokyo University 1 Site-specific CF design from TDR LCWS13, 12 November 2013 Atsushi.
1 Alternative assembly option of ILD Y.Sugimoto 2010/10/18 ILD Integration
Experimental hall in Japanese mountain site Y. Sugimoto 1.
Global Design Effort Push-pull studies How to proceed LCWS07 June 1, 2007 at DESY Andrei Seryi for BDS Area leaders Deepa Angal-Kalinin, A.S., Hitoshi.
WBS1 SBS Basic: Magnet and Infrastructure Robin Wines 11/4/ SBS DOE Review.
October 13, 2006 Global Design Effort 1 International Linear Collider Machine Detector Interface Materials for discussion at Engineering Forum: experiences.
February 4, 2007 Global Design Effort 1. February 4, 07 Global Design Effort IR&MDI: 2 Contents Will describe design of Beam Delivery System, focusing.
ILC experimental area - How to ‘develop’ CFS details for TDP (cavern size, number of shafts, HVAC, EL spec etc) ? - KEK site specific issues CFS V.Kuchler.
PD5: Detector Integration / Machine Detector Interface T. Markiewicz/SLAC 15 May 2014 SiD Meeting / AWLC Fermilab Summary.
Global Design Effort Beam Delivery System => EDR LCWS07 June 2, 2007 at DESY Andrei Seryi for BDS Area leaders Deepa Angal-Kalinin, A.S., Hitoshi Yamamoto.
September 20, 2006 Global Design Effort 1 Process of change of BDS baseline to 14/14 configuration BDS Area leaders Deepa Angal-Kalinin, Hitoshi Yamamoto,
Thanks to Andrei for slides October 26, 一般報告 Hitoshi Yamamoto, Oct 26, 2006.
Philip Burrows SiD Meeting, Paris 11/02/081 Machine Detector Interface Issues Philip Burrows John Adams Institute Oxford University Thanks to: Tom Markiewicz.
September 18, 2007H. J. Krebs1 SiD Collaboration One Piece End Door Design Concept plus Forward Equipment Interfaces H. James Krebs SLAC September 18,
Date Event Global Design Effort 1 ILC UPDATE Vancouver to Valencia Ewan Paterson Personal Report to SiD Collaboration Oct 27, 2006.
Si D in 14mrad/14mrad/z=0 ILC T. Markiewicz/SLAC SiD Advisory Group 14 August 2006.
Detector design optimization for push-pull IR and for surface assembly and corresponding IR requirements Tom Markiewicz/SLAC SLAC BDS Kick-Off-Meeting.
10/2010 IWLC2010 Global Design Effort 1 Brief Overview of Interaction Region Conventional Facilities in RDR Times Presenter Tom Lackowski.
The ILC IR John Amann ILC Mechanical Engineering 09/12/06.
1 BDS and Detector schedules for discussion at MDI meeting August 15, 2006 Andrei Seryi with input from Martin Gastal, Yasuhiro Sugimoto et al.
MDI DBD Editors Report Tom Markiewicz/SLAC SiD Collaboration Meeting, SLAC 22 August 2012.
Philip Burrows Snowmass 2005: SiD Concept Plenary, 15/8/05 SiD and MDI issues Philip Burrows Queen Mary, University of London Thanks to: Toshiaki Tauchi,
Interaction Region & IR integration EDR Planning Tom Markiewicz/SLAC SLAC BDS Kick-Off-Meeting 13 October 2007.
October 20, 2006 Global Design Effort 1 ILC Interaction regions : The GDE perspective Talk based on several talks presented by BDS area leaders Andrei.
November 07, 2006 Global Design Effort 1 Beam Delivery System / Machine Detector Interface BDS Area leaders Deepa Angal-Kalinin, Hitoshi Yamamoto, Andrei.
Experimental Areas Studies Lessons learnt at CMS M Gastal & CMS Technical Coordination (A Ball, W Zeuner)
Philip Burrows SiD Meeting, SLAC 27/10/06 Machine Detector Interface Issues Philip Burrows John Adams Institute Oxford University.
SiD Engineering and Solenoid Kurt Krempetz (Layer 5) (Layer 1) VXD.
GLD experimental hall and detector assembly Y.Sugimoto KEK 27 Sep
SiD Collaboration Meeting Highlights Tom Markiewicz/SLAC ILC BDS Meeting 08 May 2007.
Construction Schedule for Baseline and Hybrid A’ Configuration 1 5 th September, 2014 J-POWER MDI-CFS Meeting - Ichinoseki City, JAPAN.
Assembly scenario of ILD Si trackers 2015/4/21 Yasuhiro 1.
FCC-hh MDI 5 th Meeting Friday 13 th March 2015 Civil Engineering Layouts for Experimental Caverns – First Draft Charlie Cook (GS), John Osborne (GS)
ILD and SiD in Japanese site (from discussions in SiD/ILD E/D Interface Working Meeting) Yasuhiro Sugimoto, Marco Oriunno 2011/12/15 SiD
SiD MDI Issues Tom Markiewicz/SLAC Beijing ACFA/GDE Meeting 05 February 2007.
Experimental hall in Japanese mountain site 2011/11/30 Yasuhiro CFS Webex meeting 1.
Status of GDE BDS Design Talk based on several talks presented by BDS area leaders Andrei Seryi, Hitoshi Yamamoto, Deepa Angal-Kalinin at and after Vancouver.
Philip Burrows SiD Monthly Phone Meeting, 4/10/071 IR Issues from IRENG07 Philip Burrows John Adams Institute Oxford University.
Implication of gamma-gamma on 14mr tunnels discussion (questions for discussion with WG-C and WG-A) Valery Telnov Budker INP IRENG07, Sept.19, 2007, SLAC.
Comments on Services Elba Comments on Services & … Bill Wisniewski SLAC.
An idea of ILD general assembly plan 2015/10/8 Yasuhiro Integration Meeting 1.
M.Oriunno, SLAC 1 SiD installation with horizontal access shafts Marco Oriunno, SLAC SiD/ILD Engineering Meeting SLAC, December 2011.
Experimental Hall in Mountain Regions
Detector Hall Design and Cost Information CONVENTIONAL FACILITIES
Updated Design of Detector Hall
Yasuhiro Sugimoto 2012/2/1 ILD integration meeting
Marco Oriunno (SLAC), March 12, 2014 MDI WG
Experimental hall design in Japanese site
Update of experimental hall in Japanese mountain site
Sub-Detector Assembly Area Summary of discussion at ALCW2015
SiD IR Layout M. Breidenbach, P. Burrows, T. Markiewicz
Beam Delivery System Schedule at ILC2010
Detector hall in mountain regions
Extract from today’s talk given to DCB
BDS civil construction Single IR upgrade scenarios discussion
SiD IR Layout M. Breidenbach, P. Burrows, T. Markiewicz
Presentation transcript:

Philip Burrows MDI Panel Meeting 15/08/06 Philip Burrows John Adams Institute Oxford University SiD and IR/MDI Issues

Philip Burrows MDI Panel Meeting 15/08/06 Response to BDS CCB request SiD Advisory Group met 14/8/06 to consider BDS request IR crossing angles: 2/20 -> 14/14 mrad: support with enthusiasm -- downstream monitoring of energy and polarisation -- control of backgrounds with anti-DID -- small loss of acceptance for (some) SUSY searches Single IR hall at z=0 shared by both detectors: acceptable -- concerns about mechanical interferences between detectors: vibrational coupling, esp. during installation, repairs, upgrades -- would like to understand better single IR hall layout + size, access/installation issues (eg. shafts, shielding walls) …

Philip Burrows MDI Panel Meeting 15/08/06 IR hall issues: underground assembly Current baseline hall for single IR costed by CFS: 72m (x) 32m (z) 35m (y) accommodates SiD comfortably SiD DoD specifies hall: 48m (x) 28m (z) 30m (y) assuming assembly underground (18m in z may be acceptable) If CCB approves single IR hall for 2 detectors would like to understand CFS model in new paradigm

Philip Burrows MDI Panel Meeting 15/08/06 SiD closed, on beamline, in 20m x 28m area 3.0 m Foot Mobile PAC1 Fixed PAC m Pit Wall Tunnel Shield Wall Door Barrel

Philip Burrows MDI Panel Meeting 15/08/06 SiD open, on beamline, in 20m x 28m area 3.00 m m3.120 m 3.20 m m 3.00 m 6.45 m 0.55 m

Philip Burrows MDI Panel Meeting 15/08/06 Underground assembly space 5.00 m 6.45 m 3.00 m 4.00 m 5.00 m Barrel Yoke rotated HCAL rotated Shield Wall (beam comm. only)

Philip Burrows MDI Panel Meeting 15/08/06 Elevation View Hall height: 30m ? –1.000 Barrel-floor –12.90 Detector diameter –12.90 Free space above detector –3.000 Crane bridge and hook NB need to know elevation of beamline rel. to floor (CFS assumes 8.6m, above assumes 7.5m)

Philip Burrows MDI Panel Meeting 15/08/06 Surface assembly model (1) No objection in principle to surface assembly Like to understand implications for cost savings, schedule, ‘CMS model’ … Given it some initial consideration (MIB 1/8/06) No detailed plan yet for assembly procedures -> size of surface hall or underground IR hall; happy to consider

Philip Burrows MDI Panel Meeting 15/08/06 Surface assembly model (2) Some initial considerations: surface crane capacity: barrel iron T / n segments (8<n<16) coil package: c. 600T Hcal: c. 400T complete endcap door: c. 2000T / 6 pieces 1000T crane capacity may be OK shaft diameter: 9m may be OK 2-3 years of IR hall access needed for final assembly

Philip Burrows MDI Panel Meeting 15/08/06 Summary SiD supports BDS request for 14/14 mrad Xing with single IR hall at z=0: like to understand CFS IR hall model in this case SiD has no objection to concept of surface assembly: like to understand implications for cost savings, schedule, learn more about ‘CMS model’ Suggestion (for discussion) that respective hall + shaft costs be assigned to each detector concept rather than machine