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NED and post-NED WUT involvement NED S.C. meeting 30.10.2007 Maciej Chorowski
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The NED cryostat, construction phase at WUT Copper thermal shields Recuperative heat exchanger
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Schemat kriostatu wykonanego w I-20 dla NED (Next European Dipole) w ramach VI PR
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Optimization of thermal insulation of the NED cryostat
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Thermal shields location optimization
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Simplified geometry of the magnet FEM model and boundary conditions of the collar fin for the heat transfer simulations Input data: 1. Geometry of fin 2. Material properties of stainless steel and polyimide (density, specific heat and thermal conductivity) 3. Evolution of the coil temperature 4. Boundary conditions from two-volume model 5. Heat transfer coefficients
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Example of numerical calculation a). Pictorial view of simplified geometry of numerical calculations with the selected points of the collar b) Evolution of the temperature in the fin Animation of evolution of temperature in the fin
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Stability tests of QRL bellows, commissioning of the LHC
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Reception tests of cryogenic systems Reception test of the LHC Cryogenic Distribution Line in sector 7-8 (sub-sectors A and B) Reception test of the LHC Cryogenic Distribution Line in sector 8-1 - WUT-CERN collaboration - performed in 2005-2006 - aims: ● to verify overal behaviour of the line at cryogenic temperatures; ● to measure heat inleaks to the circuts 4.5-20K and 50-80K
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Reception tests of cryogenic systems Temperature evolutions of the Cryogenic Distribution Line main headers during the reception test in sector 8-1 Heat inleak 11-Dec8818 W 12-Dec9007 W 13-Dec8920 W Heat inleak with JR without JR 11-Dec633.3 W603.9 W 12-Dec632.9 W582.3 W 13-Dec635.1 W572.5 W Measured heat inleaks to circuit 50-80 K Measured heat inleaks to circuit 4.5-20 K
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Reception tests of cryogenic systems The LHC Cryogenic Distribution Line during the reception tests in sector 8-1 Some members of WUT cryogenic grup in the LHC tunnel
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Development of Ag alloys for BSCCO tape sheaths
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Mechanical properties of designed alloys Ambient temperature – state after annealing at 830°C/10h
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Mechanical properties of designed alloys 77K – state after annealing at 830°C/10h
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Analysis of oxygen diffusion and internal oxidation in BSCCO tape sheath
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Thermal conductivity of sheath material – state after oxidation at 830°C/30h
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Sheath manufacturing 75 mm
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BSCCO/Ag/Ag BSCCO/Ag/Ag-Mg BSCCO/Ag/Ag-Sn BSCCO/Ag/Ag-Cu-Zr BSCCO/Ag/Ag-Cu-Ni BSCCO tapes manufacturing (IFW Dresden) 20 mm
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WUT proposed involvement in WP WP1 mat. 20 keuro, personnel 12 keuro WP2 mat. 150 keuro, personnel 380 keuro WP3 mat. 20 keuro, personnel 48 keuro WP4 mat. 20 keuro, personnel 48 keuro WP5 mat 20 keuro, personnel 24 keuro
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WUT proposed involvement 850 keuro 230 keuro mat 620 keuro personnel
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