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Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

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Page 1: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

Review of Recent IDS120 Target Concepts

Van Graves

October 31, 2013

Page 2: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

2 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

NF Target Concept Evolution (Abridged Version)

• Historical (Study 2) baseline: 20T (15+5) field

• MERIT Experiment: 15T solenoid but was proof-of-concept for 20T system

• MAP: re-started concept development using Study 2 as baseline– Early mercury vessel concept had upstream jet

with downstream drain; later switched to upstream drain

• Subsequent efforts focused on realistic coil sizes, coil shielding, coil configurations

• Mercury vessel refinement revealed geometric complexities needed to integrate with resistive coils

Page 3: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

3 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Concept Evolution (cont’d)• Started considering utility & facility requirements

– He cooling, splash mitigation, double Hg containment, RH, etc.

• Coil sizes continued to increased due to shielding issues until IDS120– Field profile work continued, which led to several coil

configurations

– IDS-NF continued with 20T baseline, MAP began seriously considering 15T

• Early 2013– Latest concept models developed for 15T- and 20T-cases in

support of IPAC’13 papers

• Field tapers to 1.5T over 7m rather than 15m

• Cryostat breaks considered length of mercury module

• IDS120_15-1.5T7m3+4 (MAP)

• IDS120_20-1.5T7m2+5 (IDS-NF)

Page 4: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

4 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120 Coil Comparison - Sections

IDS120H

IDS120K

IDS12020-1.5T7m2+5

IDS12015-1.5T7m3+4

Page 5: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

5 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Latest 20T CAD Concept(IDS120_20-1.5T7m2+5)

Page 6: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

6 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120_20-1.5T7m2+5 Front Section

Page 7: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

7 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Superconducting coilsMercury Module: mercury jet, collection pool + resistive coils

Shielding Module:Tungsten beads,He-gas cooled

Cryostat

IDS120_20-1.5T7m2+5 Cryo 1 Iso

Page 8: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

8 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120_20-1.5T7m2+5 Cryo 1 CloseUp

Incorporates concept for double wall mercury containment

Page 9: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

9 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Latest 15T CAD Concept(IDS120_15-1.5T7m3+4)

Page 10: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

10 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120_15-1.5T7m3+4 Front Section

Page 11: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

11 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Superconducting coilsMercury Module: collection pool,mercury jet

Shielding Module:Tungsten beads,He-gas cooled

Cryostat

IDS120_15-1.5T7m3+4 Cryo1

Page 12: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

12 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120_15-1.5T7m3+4 Target Module Section

Page 13: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

13 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120_15-1.5T7m3+4 Utility Connections

ShieldingHelium

RemoteHandlingFeatures

NozzleSupply

BeamEntrance

Vent

MercuryDrains

MercuryVesselHelium

Page 14: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

14 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

20T-15T Comparisons

Page 15: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

15 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Field Taper Comparison

Page 16: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

16 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Vessel Comparison

IDS120K

IDS120_20-1.5T7m2+5

IDS120_15-1.5T7m3+4

Approx.Magnetic

Axes

Z=0

Page 17: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

17 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

System Comparison

Page 18: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

18 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Mercury Module

Page 19: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

19 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

IDS120J Mercury Module is Still Current

Magnetic Axis

View from downstream

Upstream beam port

Page 20: Review of Recent IDS120 Target Concepts Van Graves October 31, 2013

20 Managed by UT-Battellefor the U.S. Department of Energy IDS120 Concept Review 31 Oct 2013

Current Mercury Module Description• Modular design for remote

handling

• Provisions for beam entry, Hg entry/exit, Hg draining, He entry/exit, chamber venting

• Double wall Hg containment

• Double wall Be window

• Horizontal top, sloped bottom (for draining)

• Interstitial space radially sectioned for He down-and-back cooling path