1 FD Support and Pacman for GLDc 27 Aug. 2007 Yasuhiro Sugimoto KEK.

Slides:



Advertisements
Similar presentations
SiD Surface assembly Marco Oriunno (SLAC) MDI-CFS Meeting Sep. 4-6, 2014, Ichinoseki (Japan)
Advertisements

CO2 cooling for FPCCD Vertex Detector Yasuhiro Sugimoto KEK 1.
1 Support system of final quadrupole magnet in a Detector Contents -Introduction -Calculations -Installation -Conclusions Nov., ’08 KEK H. Yamaoka.
ITS /MFT installation concept CERN 27 September 2012 Corrado Gargiulo.
Assembly Hall in Hybrid-A’ and ILD 2014/9/6 Yasuhiro Sugimoto 1.
Large Platforms For Push-pull Hitoshi Yamamoto 18-Sep-2007 IRENG07.
Global Design Effort Detector concept # Plenary introductory talk IRENG07 Name September 17, 2007.
DH in Hybrid-A and ILD 2014/9/5 Yasuhiro Sugimoto 1.
Experimental hall in Japanese mountain site Y. Sugimoto ILD MDI/Integration 1.
SiD Forward Region Tom Markiewicz/SLAC KILC’12, Taegu, Korea 24 April 2012.
November 07, 2006 Global Design Effort 1 Beam Delivery System updates BDS Area leaders Deepa Angal-Kalinin, Hitoshi Yamamoto, Andrei Seryi Valencia GDE.
1 Design of Solenoid and iron yoke for GLD KEK Hiroshi Yamaoka Ken-ichi Tanaka July 13, ‘05.
Tracking Integration Challenges Y. meeting 2013/9/25.
1 GLD Surface Assembly Y. Sugimoto KEK
CES Status J.Osborne 6 November 2009 Status Report from Civil Engineering and Services Working Group J.Osborne GS/SEM for CES Working Group.
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 - CFS SiD Collaboration Meeting - SLAC 1 VERTICAL ACCESS ILC IR LAYOUT for SiD and ILD CONVENTIONAL FACILITIES AND SITING.
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.
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,
MEA Machine and Experiment Assembly 1 Norbert Meyners, MEA Engineering Forum at CERN 12.Okt Thoughts about LDC Hall and Assembly (Work is not finished.
1 GLD and GLDc Sep. 12, 2007 Y. Sugimoto KEK. 2 Compact GLD Option Motivation –GLD and LDC will write a common LoI –The detector design should have common.
SiD IR & MDI Engineering Progress Prelude to a Discussion of Integration with ILD and Based on Marco Oriunno’s Jan 2008 Talk at SiD CM Tom Markiewicz/SLAC.
4366-ILD-T-Platform-and-environment.ppt A. Hervé Seoul workshop 17 February 2009 Concept of Platform and Environment A. Hervé / ILD-Webex meeting.
Global Design Effort Critical Interaction Region Issues, Report from the IR engineering workshop Andrei Seryi, SLAC October 24, 2007.
A. Hervé - 17 Oct CLIC-Workshop CLIC Workshop: 17 Oct. 07 Interaction Region Engineering at ILC Push-Pull Option A. Hervé/CERN.
LHCb Experimental Area Meeting V. Bobillier1 Earth network in UX85 experimental cavern.
ILD requirement for assembly space and time 2015/11/3 Yasuhiro 1.
Integration with LDC & Push-pull impact on LumiCal Wojciech Wierba Institute of Nuclear Physics PAN Cracow, Poland FCAL Workshop, LAL Orsay,
A. Hervé - 17 Sept ILC-IRENG IRENG07 Workshop: 17 Sept. 07 Various Possibilities for disposition of Experimental Area A. Hervé/CERN.
1 ILD meeting LAL M. Joré – Integration status Matthieu Joré – 25 th of May ILD integration status and open issues.
UPDATE ON ID INTEGRATION Alice TB, E.Rosso ALICE TECHNICAL BOARD CERN, Ettore Rosso / CERN 1. 3 rd Cone 2. V0_L and Si_3 support 3.
9/17/07IRENG071 Cryogenic System for the ILC IR Magnets QD0 and QF1 K. C. Wu - BNL.
GLD experimental hall and detector assembly Y.Sugimoto KEK 27 Sep
SiD Collaboration Meeting Highlights Tom Markiewicz/SLAC ILC BDS Meeting 08 May 2007.
An Hybrid QD0 for SID ? Marco Oriunno (SLAC), Nov. 14, 2013 LCWS13, TOKYO.
March 22, –  Design Concept & Hall Layout  Access Tunnel  Top heading Tunnel  Displacement of detector hall by push-pull operation.
Assembly scenario of ILD Si trackers 2015/4/21 Yasuhiro 1.
Additional muon stations for the Upgrade of the Elevator Regions in the ATLAS Muon Spectrometer. Installation scenario, status on the installation tools.
ILD and SiD in Japanese site (from discussions in SiD/ILD E/D Interface Working Meeting) Yasuhiro Sugimoto, Marco Oriunno 2011/12/15 SiD
1 May 22, Y.Sugimoto Update of detector hall in mountain region.
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.
MEA Machine and Experiment Assembly Norbert Meyners, MEA 12. July 2007ILC IRENG07 WG-A1 LDC Engineering Design (Status) Introduction General Design Detector.
Joint Institute for Nuclear Research Deformations and stresses in the flux return yoke A.Efremov, Yu.Lobanov, A.Makarov Darmstadt,
Philip Burrows SiD Monthly Phone Meeting, 4/10/071 IR Issues from IRENG07 Philip Burrows John Adams Institute Oxford University.
12 July 2007IRENG07 WG-A M. Breidenbach1 SiD Concept SiD is relatively modest in scale compared to the LHC detectors, and comparable to SLD: Tracker Radius.
SiD MDI Update Topics for Discussion Tom Markiewicz/SLAC ILC BDS Meeting 15 May 2007.
Octobre LAL Orsay Report from the IRENG07 workshop at SLAC W. Lohmann, DESY from Septembre 17 – 21, ~ 100 participants - plenary and parallel sessions.
An idea of ILD general assembly plan 2015/10/8 Yasuhiro Integration Meeting 1.
1 MDI/Integration issues of GLD(c) Yasuhiro Sugimoto KEK Jan. 15,
1 Update of detector hall in mountain regions Y.Sugimoto in Granada.
Experimental Hall in Mountain Regions
Ferrara MECHANICAL SUPPORT for forward tracking detectors Federico Evangelisti INFN - Ferrara GSI – 2-6 march 2009.
Detector Hall Design and Cost Information CONVENTIONAL FACILITIES
Detector Utility/Service Cavern
Yasuhiro Sugimoto 2012/2/1 ILD integration meeting
Experimental hall design in Japanese site
Present status of the flux return yoke design
Endcap shielding senarios:
Update of experimental hall in Japanese mountain site
Detector Service Cavern for ILC
LumiCal mechanical design, integration with LDC and laser alignment
Detector hall in mountain regions
Changes to SiD since the DBD
Sub-Detector Assembly Area Summary of discussion at ALCW2015
Radiation Physics requirements for the IR
Detector hall in mountain regions
Push-pull cryo configuration C
Presentation transcript:

1 FD Support and Pacman for GLDc 27 Aug Yasuhiro Sugimoto KEK

2 QD0 Support from Endcap TPC has to be shifted by 4.5 m in order to make access to the inner trackers –Support rail sticks out by >4m from the CAL –Inner trackers are usually supported by TPC, but will be supported by the support rail when TPC is shifted  Deformation of the rail has to be reasonably small –If 300 kg (FCAL and W-mask) is applied to the tip of the 4 m long rail (2cmx4cm cross section), the deformation is ~3 m and maximum stress is >2 GPa  Rail breaks –Width of the experimental hall has to be >23 m, anyway –Even if we ignore the space for TPC shift, crane accessibility, and safety issues, the hall width has to be >20m (=2x{[detector half width(7m)]+[endcap opening on the beam line(1.5m)] +[space for service cryostat(1.5m)]}) Pipe for QD0 has to be disconnected

3 New Pacman design with Support Tube A: slide sideway using air pad B: supported from the floor of platform Support tube is supported from B We can put additional support for the support tube at the entrance of endcap to damp the vibration, if necessary Upper part of B (~10 ton) must be removable by crane for installation and removal of the support tube C: slide along the wall (D) (common to both experiments) ~50 tonx2 D: part of the wall Wall distance can be as small as 11.5 m from IP, if the crane can access to 2.65m from the wall Construction of C is done by a mobile crane (CMS style) Inner radius of pacman should be determined after design of gate valve etc. between QD0 and QF1 is fixed

4 New Pacman design with Support Tube Plan view 3D view B C The other experiment should make “nose” in their pacman to fill this gap

5 Still smaller cavern option Forget about crane access Forget about safety issues Design with cavern floor width as small as 21m can be drawn with the support- tube scheme –Pacman “C” moves upwards (using a small gantry crane fixed to the wall?) in push-pull operation –There is no way for a person to run away from one side of the detector to the other side C moves upwards in push-pull

6 Summary Extension rail scheme for QD0 support suggested by SiD will not work for GLDc Hall width difference between QD0 support from endcap and from floor is very small (~50cm=[Width of support leg] - [Width of service cryostat structure]) If TPC extraction for the maintenance of inner trackers is taken into account, there is no merit for supporting QD0 from endcap When QD0 is supported from the floor through support tube, additional support from endcap just to absorb vibration may be useful