1Managed by UT-Battelle for the U.S. Department of Energy NF Splash Mitigation 12 July 2011 Neutrino Factory Mercury Pool Splash Mitigation V.B. Graves.

Slides:



Advertisements
Similar presentations
Final(?) Design of G0 Upstream Shielding Larry Bartoszek BARTOSZEK ENGINEERING 10/22/05.
Advertisements

WP2: Targets Proposed Outline Work Programme Chris Densham.
Ottone Caretta & Chris Densham Technology Business Unit Rutherford Appleton Laboratory A new idea for NuFact targets and beam dumps BENE Nov 06 – Frascati,
Mercury Chamber Update V. Graves NF-IDS Meeting October 4, 2011.
© Uni-flow river unit. © a uni-flow unit has only one downstream by-pass channel upstream downstream uni-flow.
River Studies. Outline of Events During your river field work you will be visiting two different sites in the lower course of the river. At each site.
Landforms of an Upland River R. TEES Source R USK Source.
Managed by UT-Battelle for the Department of Energy Neutrino Factory Mercury Containment Concepts V.B. Graves 2 nd Oxford-Princeton High- Powered Target.
Neutrino Factory Target Cryostat Review Van Graves Cale Caldwell IDS-NF Phone Meeting August 10, 2010.
Neutrino Factory Mercury Flow Loop V. Graves C. Caldwell IDS-NF Videoconference March 9, 2010.
K.T. McDonald March 18, 2010 LArTPC BNL 1 Magnetizing a Large Liquid Argon Detector Kirk T. McDonald Princeton University (March 18, 2010)
Target & Capture for PRISM Koji Yoshimura On behalf of PRISM Target Group Institute of Particle and Nuclear Science High Energy Accelerator Research Organization.
1Managed by UT-Battelle for the U.S. Department of Energy MERIT Videoconference 11 Mar 2009 Neutrino Factory Cryostat 1 Concept V.B. Graves MERIT Videoconference.
1Managed by UT-Battelle for the U.S. Department of Energy NF/IDS Hg Vessel Layout 30 Jun 09 Cryostat 2 Front Drain Mercury Vessel Concept Matthew F. Glisson.
MERIT Equipment Disposal Van Graves MERIT Video Conference September 1, 2010.
Harold G. Kirk Brookhaven National Laboratory High-Power Targets H.G. Kirk Applications of High-Intensity Proton Accelerators FNAL October 20, 2009.
MERIT Primary Containment Inspection Van Graves MERIT Video Conference October 13, 2010.
MCTF Harold G. Kirk MUTAC 5-Year Plan Review 22 August Targetry R&D in the 5-Year Plan Harold G. Kirk Brookhaven National Lab.
KT McDonald Muon Collider 2011 June 28, The Target System Baseline K. McDonald Princeton U. (June 28, 2011) Muon Collider 2011 Telluride, CO More.
Above: Energy deposition in the superconducting magnet and the tungsten-carbide shield inside them. Approximately 2.4 MW must be dissipated in the shield.
1Managed by UT-Battelle for the U.S. Department of Energy NF-IDS Videoconference 2 Jun 2009 Neutrino Factory Magnet Layout Comparison V.B. Graves NF-IDS.
1Managed by UT-Battelle for the U.S. Department of Energy MERIT Optics Cleaning Status 31 August 2011 MERIT Optics Cleaning Status V.B. Graves August 31,
Mercury Catcher Status V.B. Graves Hg Jet Design Meeting Princeton University Nov 15, 2004.
Harold G. Kirk Brookhaven National Laboratory Target System Update IDS-NF Plenary Meeting Arlington, VA October 18, 2011.
KT McDonald Target Studies Meeting June 14, Mechanical Issues for the Target System K. McDonald Princeton U. (June 14, 2011) Target Studies Meeting.
Harold G. Kirk Brookhaven National Laboratory Target Baseline IDS-NF Plenary CERN March 23-24, 2009.
1Managed by UT-Battelle for the U.S. Department of Energy NMFCC Friday Meeting 10 Apr 2009 Neutrino Factory Nozzle Layouts V.B. Graves NFMCC Friday Meeting.
IDS-NF Target Studies H. Kirk (BNL) July 8, 2009.
K. McDonald Muon Collaboration Meeting 19 Mar 2008 Future Target System R&D Analysis (and simulation) of MERIT data is ongoing, but the success of the.
MERIT Primary Containment Inspection – HandySurf Review Van Graves MERIT Video Conference November 24, 2010.
Above: Power deposition in the superconducting magnets and the tungsten-carbide + water shield inside them, according to a FLUKA simulation Approximately.
Harold G. Kirk Brookhaven National Laboratory Recent Results from MERIT NUFACT09 Illinois Institute of Technology July 22, 2009.
Above: On-axis field profiles of resistive, superconducting and all magnets, and bore-tube radius r = 7.5 (B/20T) −½ cm. Above: Hoop strain ε θ in resistive.
Operated by Brookhaven Science Associates for the U.S. Department of Energy Optimized Parameters for a Mercury Jet Target X. Ding, D. Cline, UCLA, Los.
Managed by UT-Battelle for the Department of Energy Review of NFMCC Studies 1 and 2: Target Support Facilities V.B. Graves Meeting on High Power Targets.
Mercury Chamber Considerations V. Graves IDS-NF Target Studies July 2011.
The Front End MAP Review Fermi National Accelerator Lab August 24-26, 2010 Harold G. Kirk Brookhaven National Laboratory.
1Managed by UT-Battelle for the U.S. Department of Energy MERIT Videoconference 5 Aug 2009 Cryostat Front End Design Update Matthew Glisson Van Graves.
Front End Technologies Harold Kirk Brookhaven National Laboratory February 19, 2014.
IDS-NF Mercury System Overview Van Graves IDS-NF 5 th Plenary Meeting April 9, 2010.
Target and Absorbers L2 Manager: K McDonald, Princeton U March xx, 2013 Presenter’s Name | DOE Mini-Review of MAP (FNAL, March 4-6, 2013)1 Mission Target:
A powder jet target for a Neutrino Factory Ottone Caretta, Chris Densham (RAL), Tom Davies (Exeter University), Richard Woods (Gericke Ltd)
Neutrino Factory Mercury Vessel: Initial Cooling Calculations V. Graves Target Studies Nov 15, 2012.
Next generation of ν beams Challenges Ahead I. Efthymiopoulos - CERN LAGUNA Workshp Aussois, France, September 8,2010 what it takes to design and construct.
Thermomechanical characterization of candidate materials for solid high power targets Goran Skoro, R. Bennett, R. Edgecock 6 November 2012 UKNF Target.
KT McDonald MAP Winter Meeting (SLAC) December 5, Solid Target Options for an Intense Muon Source K. McDonald Princeton U. (December 5, 2014) MAP.
Review of Recent IDS120 Target Concepts Van Graves October 31, 2013.
20to2T5m100cm Images Van Graves February 13, 2014.
K. McDonald Target Studies Meeting June 29, Materials for the Target System Internal Shield K. McDonald Princeton U. (June 27, 2010) Iron Plug Proton.
KT McDonald MAP Tech Board Meeting Oct 20, The MAP Targetry Program in FY11 and FY12 K. McDonald Princeton U. (Oct 20, 2011) MAP Technical Board.
Muon Acceleration Program Technology Development A. Bross NFMCC CM January 15, A. Bross NFMCC CM January 15, 2009 It is not a Project!
Overview of Wave Energy Conversion Technologies
J. Pasternak First Ideas on the Design of the Beam Transport and the Final Focus for the NF Target J. Pasternak, Imperial College London / RAL STFC ,
Gallium as a Possible Target Material for a Muon Collider or Neutrino Factory X. Ding, D. Cline, UCLA, Los Angeles, CA 90095, USA J.S. Berg, H.G. Kirk,
Shield Module Design Considerations Adam Carroll Van Graves July 3, 2014.
A Presentation By Noah Brown Waterfalls. Main Features Hard Resistant Cap Rock Overhang Plunge Pool Curved (Undercut) or Straight Back Wall Knick Points.
K. McDonald MAP Technical Board Meeting Nov 1, FY11 Target System Budget Proposal K. McDonald Princeton U. (November 1, 2010)
Neutrino Factory Target Vessel Concept Update V. Graves Target Studies EVO June 12, 2012.
ICHEP Conference Amsterdam 31st International Conference on High Energy Physics 24  31 July 2002 Gail G. Hanson University of California, Riverside For.
Neutrino Factory Target Cryostat Review (Update Aug 12) Van Graves Cale Caldwell IDS-NF Phone Meeting August 10, 2010.
LBNE Remote Handling Layout Options Adam Carroll Van Graves Tom Burgess FNAL/ORNL Videoconference March 11, 2010.
Ids120h_side. ids120h_top ids120h_iso ids120h_end.
Target On axis field [scale /20 T] Target Magnets Decay-Channel Triplets Taper magnets.
Harold G. Kirk Brookhaven National Laboratory Muon Production and Capture for a Neutrino Factory European Strategy for Future Neutrino Physics CERN October.
ENERGY FLOW AND DEPOSITION IN A 4-MW MUON-COLLIDER TARGET SYSTEM
Tungsten Powder Test at HiRadMat Scientific Motivation
Neutrino Factory Mercury Catcher Concept
V.B. Graves Hg Jet Design Meeting Princeton University Nov 15, 2004
Mercury Catcher Status
The Detector System of the MICE Experiment
Presentation transcript:

1Managed by UT-Battelle for the U.S. Department of Energy NF Splash Mitigation 12 July 2011 Neutrino Factory Mercury Pool Splash Mitigation V.B. Graves IDS Videoconference July 12, 2011

2Managed by UT-Battelle for the U.S. Department of Energy NF Splash Mitigation 12 July 2011 Splash Mitigation Study 2 assumed a particle bed of tungsten balls to minimize effects of jet entering pool Many other feasible concepts to accomplish this function Simulation/analytical studies may be useful to limit options Pool circulation and drainage locations also need to be studied Prototypic testing needed for comparison & final determination

3Managed by UT-Battelle for the U.S. Department of Energy NF Splash Mitigation 12 July 2011 Issues & Questions Do jet & beam drill hole into mercury pool? Narrow or wide channel? Deep or shallow? How & where to incorporate drainage? Upstream or downstream? How to protect downstream beam window from waves and splashes? Is the steady-state condition calmer than start-up? Can these mitigation options be easily simulated? What about doing water tests?