Summary of the checking items of the Module-C design

Slides:



Advertisements
Similar presentations
Interface of Plug-Compatible Cryomodule Components KEK Norihito Ohuchi 2008/3/41GDE-Sendai Meeting.
Advertisements

Manual Flo-tap Installation Instructions
CTC / MTC 222 Strength of Materials Chapter 12 Pressure Vessels.
Test Chamber Assembly, 1.5M Long (59.00”) Vacuum Tube, 4.00 OD x 3.50 ID Vacuum Tube, 3.75 OD x 3.51 ID 3.375” CFF, Non-Rotatable Feedthrough, Ceramtec.
Vacuum Vessel Production Readiness Review
EXPERIENCE FROM KEK Norihito Ohuchi 2009/11/9-101 Workshop on cryogenic and vacuum sectorisations of the SPL.
1 Issues concerning the Design of the Tracker Solenoids Michael A. Green Lawrence Berkeley National Laboratory 17 August 2005.
Alignment and assembling of the cryomodule Yun He, James Sears, Matthias Liepe MLC external review October 03, 2012.
SPL cryo-module conceptual design review Cavity, helium vessel and tuner assembly N. Valverde, G. Arnau, S. Atieh, I. Aviles, O. Capatina, M. Esposito,
1.3 GHz FNAL Dressed Cavity S-1 Global Deliverable to KEK 7 July 2009.
TDR Part 2: 3.3 Cavity Integration (10 pages) H. Hayano Baseline Design based on the meeting discussion.
R&D Status and Plan on The Cryostat N. Ohuchi, K. Tsuchiya, A. Terashima, H. Hisamatsu, M. Masuzawa, T. Okamura, H. Hayano 1.STF-Cryostat Design 2.Construction.
Heat load study of cryomodule in STF
MQXF Cold-mass Assembly and Cryostating H. Prin, D. Duarte Ramos, P. Ferracin, P. Fessia 4 th Joint HiLumi LHC-LARP Annual Meeting November 17-21, 2014.
FNAL Meeting, July 2006 Basti, Bedeschi, Raffaelli, INFN-Pisa 1 ILC cryomodule mechanical work at INFN-Pisa  Ongoing work  Near term future  Manpower.
Signal port flange and beam pipe Norihito Ohuchi 2009/10/27122nd S1-G Webex meeting.
IHEP 1.3 GHz Cryomodule and Cryogenics IHEP Cryogenic group 2nd Workshop of the IHEP 1.3 GHz SRF R&D Project Dec 2 nd, 2009.
LCLS-II cryomodule alignment. 2 Wednesday meeting, 6/17/2015 Topics Alignment of Components inside the CM Tunnel Network Tolerances LCLS-II cryomodule.
WP3 Required interfaces for cryostat design / integration Patxi DUTHIL SPL 3 rd Collaboration Meeting, CERN, Geneva November 12 th 2009.
FNAL Cavities for S1 Global Jim Kerby ALCPG 09. FNAL Deliverables Discussed in meetings 15/16 July and 10/11 Sept, and Webex and s 9/30/20092FNAL.
Detail discussion of S1 Global at STF H. Hayano (KEK) GDE Mar 3-6, 2008.
Type IV Cryomodule Proposal (T4CM) Don Mitchell, 16 JAN 2006.
News on mechanics Photon veto F. Raffaelli INFN – Sezione di Pisa CERN, January r 02 th, Status of tender Anti Status of the supporting.
Cryomodule prototype Yun He, Dan Sabol, Joe Conway On behalf of Matthias Liepe, Eric Smith, James Sears, Peter Quigley, Tim O’Connell, Ralf Eichhorn, Georg.
E. KAKO (KEK) 2010' Feb. 05 STF Meeting for S1-G Global Design Effort 1 Preparation Status at KEK for S1-Global Eiji Kako (KEK, Japan)
ML Planning for ILC08 First Pass + SCRF agenda Chris Adolphsen Hitoshi Hayano.
5 K Shield Study of STF Cryomodule Norihito Ohuchi, Norio Higashi KEK Xu QingJin IHEP 2008/3/3-61Sendai-GDE-Meeting.
Date 2007/Oct./25 FNAL-GDE-Meeting Global Design Effort 1 Cryomodule Report N. Ohuchi KEK 1.Cryomodule & Cryogenics KOM 2.GDE-meeting discussion I.Interface.
Summary ( Cryomodule, Plug-compatible Interface) Norihito Ohuchi.
Date 2007/Oct./23 FNAL-GDE-Meeting Global Design Effort 1 Cryomodule Interface Definition (FNAL-GDE-Meeting) N. Ohuchi.
Definition of Work Area H. Hayano, KEK EDR-KOM-cavity at DESY Issues of Cavity and Cavity Package, Work Package discussion.
Cryomodule prototype Yun He, Dan Sabol, Joe Conway On behalf of Matthias Liepe, Eric Smith, James Sears, Peter Quigley, Tim O’Connell, Ralf Eichhorn, Georg.
LMQXFA Cold Mass Assembly Antonios Vouris Fermilab February 3, 2016.
What’s Inside a TESLA Cryomodule Tom Peterson Proton Driver Meeting February 9, 2005.
Alignment and assembling of the cryomodule Yun He, James Sears, Matthias Liepe.
S1 global: thermal analysis TILC09, April 19th, 2009 Serena Barbanotti Paolo Pierini.
Check the component list with FNAL solid model Norihito Ohuchi 2009/8/251 19th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)
Date 2007/Sept./12-14 EDR kick-off-meeting Global Design Effort 1 Cryomodule Interface definition N. Ohuchi.
5 K Shield Study of STF Cryomodule (up-dated) Norihito Ohuchi KEK 2008/4/21-251FNAL-SCRF-Meeting.
S1-Global status report KEK Norihito Ohuchi 2008/11/171ILC08-GDE-Meeting-Chicago.
CLIC Permanent Magnet Quadrupole update 27 th January 2011 Mechanical Engineering status update N. Collomb1.
Report on the type 3+ modules production INFN MIlano – LASA III Type IV Cryomodule Design Meeting January, 23 th 2007 Serena Barbanotti.
Visiting DESY for S1-G module Norihito Ohuchi 2009/8/251 19th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)
CW Cryomodules for Project X Yuriy Orlov, Tom Nicol, and Tom Peterson Cryomodules for Project X, 14 June 2013Page 1.
14-Jun-161 Status of Horizontal Test Stand (HTS-2) Development Efforts Pradeep Kush, Prashant Khare, RRCAT, India Team Members: S.Gilankar, Rupul Ghosh,
5K shield removal experiment in STF cryomodule Norihito Ohuchi 2008/11/181ILC08-GDE-Meeting (CHICAGO)
Development of Cryo-Module Test Stand (CMTS) for Fermi Lab (R.L.Suthar, Head,CDM, BARC) Cryo-Module Test stand (CMTS) is a very sophisticated equipment.
The HiLumi LHC Design Study is included in the High Luminosity LHC project and is partly funded by the European Commission within the Framework Programme.
SPL RF coupler: integration aspects
TDR guideline discussion on Cavity Integration
CERN – Zanon discussions
Status and plans for the 3.9 GHz section of XFEL
Meeting for S1-Global module design Cryomodule and Cryogenics
HFM Test Station Main Cryostat
Norihito Ohuchi – KEK (presented by P. Pierini - INFN)
Sensors in the S1-G Cryomodules (Updated )
S1-G cryomodule assembly status
Yamamoto WG3: ML-SCRF Parallel Session,
CERN Cryomodule Requirements for Crab Cavities
5K Shield Study & HL Measurements
IHEP Cryomodule Status
On the accuracy of port assembly at Wendelstein 7-X
IHEP ILC Cavity Status Jiyuan Zhai (IHEP)
PP 14° Bi-Weekly meeting S1-Global, June 1, 2009
Alignment of Main Linac Cryomodule (MLC)
Cryomodule Assembly Plan
CEPC-650MHz Cavity Cryomodule
CRYOMODULE FINAL ASSEMBLY
SNS PPU Cryomodule Vacuum Vessel
CRYOMODULE FINAL ASSEMBLY
Presentation transcript:

Summary of the checking items of the Module-C design Norihito Ohuchi 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Design to be approved by KEK Data: 07/04/2009 Autori: S. Barbanotti, M. Bonezzi Verifications The following verifications are required by KEK. The aim of this verification is to avoid interference problems with existing parts and instrumentation at KEK or incompatibility with KEK components. The number in brackets refers to the part number in the drawing part list. Drawing 3023.0.003: Typical cross section All the pipe vertical and horizontal positions have to be approved by KEK: 19 70K forward line 20 5K forward line 21 70K return line (finned pipe) 22 5K return line (finned pipe) 23 GRP and reduced pipe 24 Warm up / cool down line 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) 21 19 23 22 20 24 All pipe sizes and locations are confirmed. The dimensions of these pipes were compared with KEK CAD data. 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.1.001: Vessel assembly Longitudinal position on the vessel of the support lugs (pos 8, 9) Longitudinal position on the vessel of the module supports (section L-L) Vertical and longitudinal position on the vessel of the Taylor Hobson sphere supports (detail P, pas. 15,16, 17 , 18): please verify that you can look at the spheres with your alignment system. Vertical and longitudinal position on the vessel of coupler pipe supports (pos. 13) K1-K2-k3 openings positions 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.1.002: Vessel details Diameter and thickness of the pipe in the K1-K2-K3 flange detail (pos. 36): the one in the drawing are the standard values of commercial parts. 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) ISO 160F Module A Welded pipe size: Outer dia. = 139.8mm Thickness = 5.1 mm 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.1.004: Adjustable support assembly This drawing represents the cryomodule support system. Please verify that this system is compatible with KEK facility 275 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) 362.4 247 (87.4 mm) 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.2.001: HeGRP assembly Section B-B: diameter and thickness of the reduced pipe; the values in the drawing are the standard one for commercial pipes (pos. 113). Detail H (WPM support): the center of the holes is at 212 mm from the vessel axis, while the center of the WPM line is at 212 mm from the same axis. I sit correct? Do you want to have the same value? Module A O.D.=76.3 mm T=2.1 mm 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) 212 WPM by H. Hayano 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.3.001 and 3023.4.001: 4.5 K and 70 K shields Please verify the design of the Aluminum finned pipes. 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Drawing 3023.5.00X: pipes Please verify the pipe diameters and lengths. 70K pipe : L= 7000 mm + 50  2 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) 4.5K pipe : L= 7000 mm + 50  2 Stepping motor pipe 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)

12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics) Warm-up tube Main pipe: 42.1  1.65 Branch pipe: 10.2  2.6 + 5  1 2009/4/28 12th Biweekly Webex meeting (S1-G, Cryomodule, Cryogenics)