Small scale testing options Collecting material and analysis from J. van Nugteren and G. Kirby.

Slides:



Advertisements
Similar presentations
HL-LHC Corrector Magnet 3D design status Giovanni Volpini on behalf of the LASA team CERN, February 25, 2014.
Advertisements

Three Edited Slides By Jeremy Donalson. Removed myself from the side of the picture and moved me over to the right Brought in the Seinfeld group Added.
Magnetic design of a superconducting magnet for the FFAG accelerator T.Obana, T.Ogitsu A,T.Nakamoto A,K.Sasaki A A.Yamamoto A, M.Yoshimoto A, Y.Mori A,T.Origasa.
Structural design of EuCARD2 magnets
© T Madas
Team Hot Stuff Mrs. Shaw.
CERN/CEA Collaboration agreement No. KE2275/TE WP5 – HTS insert Kick-off meeting 07/07/2014.
EuCARD2 Magnet Status and action plan
Define… Electrons- a tiny, negative charge that moves around the space outside the nucleus of an atom Current-the flow of a charge through a material.
LQ status and plans – G. Ambrosio 1 LARP Collaboration Meeting - LBNL, April , 2006 BNL - FNAL - LBNL - SLAC OUTLINE: Goals, Input and Output Sub-tasks.
Bnl - fnal- lbnl - slac US LHC Accelerator Research Program A Quadrupole Design for Crab Cavity Optics Ramesh Gupta Brookhaven National Laboratory Upton,
Concepts for 20 T dipoles SnowMass Preparation J. Van Nugteren.
Magnetic Design S. Prestemon, D. Arbelaez, S. Myers, R. Oort, M. Morsch, E. Rochepault, H. Pan, T. Ki, R. Schlueter (LBNL) Superconducting Undulator Integrated.
Subscale quadrupole (SQ) series Paolo Ferracin LARP DoE Review FNAL June 12-14, 2006.
Adding SubtractingMultiplyingDividingMiscellaneous.
Magnet design, final parameters Paolo Ferracin and Attilio Milanese EuCARD ESAC review for the FRESCA2 dipole CERN March, 2012.
New options for the new D1 magnet Qingjin Xu
16 T Dipole Design Options: Input Parameters and Evaluation Criteria F. Toral - CIEMAT CIEMAT-VC, Sept. 4th, 2015.
D2 CONFIGURATIONS P.Fabbricatore & S.Farinon INFN Genova  Starting from previous studies done at CERN, BNL and BLNL, possile cross sections of D2 dipole.
Reading Vernier Scales MS&T Physics 1135 and 2135 Labs.
ECC Clément Lorin – Maria Durante Acknowledgements: Fresca2 team.
CEA DSM Irfu - J-M Rey - EUCARD WP 7 Meeting - GRENOBLE 22/03/ HTS insert preliminary design and solenoid prototypes Mélanie Bruchon, Sandrine Cazaux,
CEA DSM Irfu WP 7.4 : Insert design and construction M. Devaux J-M Rey, M. Durante, P. Tixador, C. Pes 18/09/2012HFM collaboration meeting WP 7 - Milano.
LIUWG Davide Tommasini ALTERNATIVES FOR D1s Requirements Normal conducting (resistive) Superferric iron dominated Superconducting costheta Side.
4th Joint HiLumi LHC-LARP Annual Meeting D2 Design, Status, Plan P.Fabbricatore & S.Farinon INFN Genova Presented by E.Todesco (CERN)  INFN Genova is.
Report from Session 2 Main Dipoles. P. McIntyre 2005 – 24T ss Tripler, a lot of Bi-2212, Je = 800 A/mm2 E. Todesco T, 80% ss 30% NbTi 55 %NbSn.
Measuring Angles. Vocabulary An angle has two sides and a vertex. The sides of the angles are rays. The rays share a common endpoint (the vertex) Angles.
The reading is 7.38 mm. The reading is 7.72 mm.
Preliminary analysis of a 16 T sc dipole with cos-theta lay-out INFN team October 2015.
Nb3Sn wiggler development
Yingshun Zhu Accelerator Center, Magnet Group
One plane dipole corrector for the CLIC MBQ TYPE 1
Massimo Sorbi on behalf of INFN team:
Hervé Allain, R. van Weelderen (CERN)
A Presentation on DC Generator.
6th BINP-FAIR-GSI Workshop,
16 T Cosq DIPOLE Mechanical Analysis
Winding Diagrams: (i) DC Winding diagrams (ii) AC Winding Diagrams
Preliminary Magnetic Analysis of the CCT Magnet for HL-LHC
Development of the Canted Cosine Theta Superconducting Magnet
Plan for Today (AP Physics I)
Hervé Allain, R. van Weelderen (CERN)
Electricity and Magnetism.
Mechanical stability and QXF coil winding
FCC-hh 16 T, 1.9 K INFN Team October 2015.
Main magnets for PERLE Test Facility
D2 and Q4 orbit corrector status
Block design status EuroCirCol
Number 14 how do you find the interior angles of any polygon?
MQXF coil cross-section status
Magnetic Substances & Magnetic Fields
P.Fabbricatore & S.Farinon
Angles Lesson 15-2.
Angles Lesson 8-2.
Electricity and Magnetism.
Design of Nb3Sn IR quadrupoles with apertures larger than 120 mm
Electricity Test Review
We measure angles with a protractor.
Turn to Page S.89 Challenging Question
Adding with 9’s.
Adding with 10’s.
5th Grade Electricity Vocabulary
Design of Nb3Sn IR quadrupoles with apertures larger than 120 mm
What are the ratios between side lengths?
Adding ____ + 10.
Similar triangles: Missing sides
Similar triangles: Missing sides with other triangles
Cross-section of the 150 mm aperture case
Pole Position Student Points Time
A B C D.
Presentation transcript:

Small scale testing options Collecting material and analysis from J. van Nugteren and G. Kirby

Use Feather-0 as is 0.3 mm conductor, 0.1 mm insulation (both sides) 18 turns J E ≈ 400 A/mm 2 Approximately 1 T bore field

Feather-0 Peak field 9.2 T in the ends

Feather-0 Field angle approximately 6 degrees at 8 T background field

Double-decker Feather-0 (F0E1) 0.3 mm conductor, 0.1 mm insulation (both sides) 2x20 turns J E ≈ 400 A/mm 2 Approximately 1.6 T bore field

Double-decker Feather-0 Peak field 3 T in the ends

Double-decker Feather-0 This was the initial design of Feather-0 (two decks, layer jump)

Double-decker Feather-0-mod Peak field 4 T in the ends Additional field gain adding an iron pole (1 T ?)