WBS Tokamak Exhaust Process

Slides:



Advertisements
Similar presentations
ITER Tokamak Cooling Water System Fusion Power Symposium Washington, DC Tom Coleman AREVA Federal Services December 15, 2011.
Advertisements

An Introduction to what they are, how they work, and their parts
FCX Performance, Inc.. The Power of One 2 World class flow control solutions built on over 100 years of experience FCX does not run businesses; we provide.
Report from US ITER Fusion Power Associates December 15, 2011 Ned Sauthoff Project Manager.
Inert Gas Purification Systems
Inert Gas Purification Systems Why do we need them??? Many of the materials used in research and development today are extremely air sensitive, and can.
Sept. 30, 2004 NIKHEF-1 Hans de Vries Status NIKHEF Mechanics Secondary vacuum box Bellows Vacuum system CO 2 cooling: Bart Verlaat.
Stuart East, 22 nd May 2012 Delivering industrial solutions for the fusion research community Stuart East.
Piping and Instrument Diagrams
Overview of Vacuum Systems Tejas Deshpande 24 July, 2014.
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.
Procurement ORNL U.S. ITER Project 1 November 15, 2006 PROCUREMENT Jeff Geouque U.S. ITER Procurement Director.
Harold G. Kirk Brookhaven National Laboratory The CERN Target Experiment Schedule and Budget MERIT Review BNL December 12, 2005.
SRF Cryomodule Assembly Facility Plans Tug Arkan AAC, May 10-12, 2005.
Normal Operating Parameters Maintenance Schedule Common Problems Normal Operating Parameters Maintenance Schedule Common Problems ClearWater Tech, LLC.
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.
Stewart Shen October 27, LCLS-XTOD Gas Attenuator LCLS FAC Meeting October 27, 2005 Stewart Shen, Keith Kishiyama and Marty Roeben.
PWF 3/01 Plasma Fueling Program1 Pumping Systems for ITER, FIRE and ARIES P. W. Fisher Oak Ridge National Laboratory C. A. Foster Cryogenic Applications.
Sensors used in EFI (Electronic Fuel Injection)
Valves and Appurtenances
NeSSI Update An Implementation of the Generation 2 Bus Siemens Activities November 2006.
The ESS vacuum team has overall responsibility for all technical vacuum systems used on the: Accelerator, Target and Neutron Scattering Instruments and.
“TRITIUM PLANT CONSORTIUM OF ASSOCIATES”
LARP review, Fermilab, 6/10/2013Magnet Project Overview – G. Sabbi 1 HL-LHC IR Quadrupole Magnet Project Overview GianLuca Sabbi Internal Review of proposed.
SuperFRS Multiplett and Dipole Vacuum Interfaces Multiplett: Insulation vacuum: Insulation Vacuum Pumping flanges: Two CF flanges of the size DN160 must.
Status of vacuum & interconnections of the CLIC main linac modules C. Garion TE/VSC TBMWG, 9 th November 2009.
Date Event Global Design Effort 1 Technical System Review John Noonan, ANL Yusuke Suetsugu,KEK Paolo Michelato, INFN Milano.
1 Packaging bio- methane connections for the future Dan Anderson CEng 11 th January 2012.
ILO Meeting #26 Ongoing and forthcoming Procurement activities 29 th September San Sebastian F4E Market Intelligence group - ILO Meeting #26 – 29th.
EFDA EUROPEAN FUSION DEVELOPMENT AGREEMENT FMEA Meeting, D.Murdoch; WDS Design Slide 1 ITER Water Detritiation System; Basis for FMEA An outline.
TBM Costing Lessons from Recent ITER Activities Scott Willms Los Alamos National Laboratory Presented at INL August 10, 2005.
Status: Tritium Plasma Experiment at the INL Safety and Tritium Applied Research (STAR) Facility R. A. Anderl*, J. P. Sharpe*, R.D. Tillotson* (*INL) R.A.
Hydrogen system R&D. R&D programme – general points Hydrogen absorber system incorporates 2 novel aspects Hydrogen storage using a hydride bed Hydrogen.
Conceptual Design Review of the NPDGamma Experiment in Beam Line 13 Seppo Penttila NPDGamma project manager September 25, 2007 at SNS.
Training in Vacuum Technology for JUAS 2013 Students
SC Project Review of NCSX, April 8-10, 2008 NCSX Cryogenics Systems WBS-62 Steve Raftopoulos NCSX Cryogenic Systems WBS(62)
Progress to Date PPPL Advisory Board Meeting May 20101NSTX Upgrade – R. L. Strykowsky CD-0 Approved February 2009 The NSTX Upgrade Project organization.
Vacuum Research Solution Discussion. ELL block diagram E ELL Pump A C D F To a “J” shaped hook N2N2 B G ELL Vacuum System Wide pipe narrow pipe.
1 US Cost & Schedule Summary W. R. Edwards US Project Manager CD-2/3a Review January 8, 2008 BNL.
Vacuum, H-C. Hseuh January 4, 2007 RHIC II Project Internal Cost Review Vacuum Systems H.-C. Hseuh January 4, 2007 Vacuum Systems.
CM27 – 8 th July 2010 LH2 System Progress and Future Plans M Hills T Bradshaw M Courthold I Mullacrane P Warburton.
NCSX NCSX CDR May 21-23, 2002 H.W. Kugel Slide 1 Conceptual Design for NCSX Auxiliary Systems Heating, Fueling,Wall Conditioning and Vacuum Systems.
Overview of the Safety and Tritium Applied Research (STAR) Facility Phil Sharpe Fusion Safety Program Idaho National Laboratory, USA HAPL Program Meeting.
SC Project Review of NCSX, April 8-10, 2008 NCSX Cryogenics Systems WBS-62 Steve Raftopoulos NCSX Cryogenic Systems WBS(62) Manager.
September 10, FY 2003 Plans Bob Simmons. September 10, Introduction Overview of Project and Engineering Plans Project Plans Engineering Plans.
Vacuum, H-C. Hseuh January 4, 2007 RHIC II Project Internal Cost Review H.-C. Hseuh Vacuum Systems January 4, 2007 Project Overview.
Cryogenic Viscous Compressor Development and Modeling for the ITER Vacuum System L. R. Baylor, C.N. Barbier, S. K. Combs, R.C. Duckworth, T.D. Edgemon,
Totem Gas Systems ( T1, T2 ) F. Hahn and S. Haider PH / DT1.
LCLS-II Prototype Cryomodule Vacuum Vessel and HGRP Tom Peterson 4 December 2014 Design Review.
ESS Vacuum Systems TAC 6 November 2012 Peter Ladd Senior Vacuum Expert.
Thomas Jefferson National Accelerator Facility Page 1 Dana Arenius Cryogenics Control Account Manager 12 GeV Upgrade Project X Collaboration September.
ESS Vacuum Standardization
WBS2.11 Vacuum systems G.Vandoni …brainstorming presentation… VAT Technical & Scientific7 th July 2008.
A. Perin, TE/CRG, Page 2 CERN-GSI FAIR Project integration/coordination meeting 5 14 th October 2015 A. Perin, H. Derking, L. Stewart, M. Chesi,
Vacuum Related Procedures and Tools of IHEP ILC Test Cryomodule Assembly Jiyuan Zhai (IHEP) TTC Topical Workshop on SRF Cryomodule Clean Room Assembly.
Roadmap for triplet cryostats
IT-4189 Supply and installation of a cryogenic distribution system
Internal review of IR2 LEP cryostats (WP11/WP5) Close out session
10th ITPA on SOL/divertor physics, Jan 2008
Overview of Mechanical Design
2K CB FDR Overview:  Agenda, Charge, Review Process
2K Cold Box Mechanical Design
ISRC and LEBT Vacuum System Design
Specifications What should it cover Goods Services Warranty
Project Management Considerations
CRYOMODULE FINAL ASSEMBLY
Two-beam Test-stand Design and Construction Status
Challenges and Deadlines for Production
Overview of the TARGET Monolith Rough Vacuum
SNS PPU Cryomodule Design Overview
Presentation transcript:

WBS 1.3.2 Tokamak Exhaust Process Donald J. Green / Bernice C. Rogers WBS Manager / Program Manager November 15, 2006

AGENDA TEP Scope Schedule Flow Outline Key Requirements Part of 1/10th scale TEP

Scope

US ITER-Tokamak Exhaust Process Project The ITER TEP project provides a technically mature, robust, and cost-effective solution for the separation of hydrogen isotopes from the Tokamak exhaust stream – a critical element in the ITER Project.

Overall Project Objective: Scope of Work Overall Project Objective: Design, Procure, Assemble, Test, & Ship The Tokamak Exhaust Process Gloveboxes - Shell and Internals Deliver Tokamak Exhaust Processing System Flowsheet Refinement (ITER-International Team/SRNL/LANL) Catalyst Testing/Computer Modeling (LANL/SRNL) Design (LANL/SRNL/IT) Fabricate/Procure/Assemble (SRNL) System Test (LANL/SRNL) Ship System to Cadarache, France (SRNL)

TEP Process Outline

Key TEP Requirements Current High Level Specs: Tritium compatible Process gas from 450 and 3000 second pulses at a flowrate of 75-150 SLPM Send < 1 Ci/day to the Atmosphere (Vent) Detritiation System Overall TEP decontamination factor (DF) of 108 Delivery to ITER by 3/2014 Exclude: Installation, assembly, testing at ITER site Interface systems, such as control system and gas analysis Working toward a new baseline in 2007

Planned Procurements Instruments -Moisture Meters -Pressure Indicators Gloveboxes Vessels Vacuum Pumps -Metal Bellows -Scroll -Turbomolecular Specialty Vessels -Catalyst 1 -Catalyst 2 -Catalyst 3 Instruments -Moisture Meters -Pressure Indicators -Ion Chamber Valves Piping Tooling

TEP Overview Schedule