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SPD Mechanics and Cooling Status of the activity in Padova Rosario Turrisi

SPD Mechanics and Cooling Status of the activity in Padova Rosario Turrisi. SPD Mechanics and Cooling Status of the activity in Padova Rosario Turrisi. Contents: News about mechanics components Report on first test of cooling plant. Mechanics: components production. CFSS

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SPD Mechanics and Cooling Status of the activity in Padova Rosario Turrisi

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  1. SPD Mechanics and CoolingStatus of the activity in PadovaRosario Turrisi SPD Mechanics and CoolingStatus of the activity in PadovaRosario Turrisi • Contents: • News about mechanics components • Report on first test of cooling plant

  2. Mechanics: components production • CFSS • 16 components produced. • One CFSS has been geometrically qualified. • Parilene evaporation done. • CFSS holders • Tooling completed • Four samples machined • HS springs • Design completed • Tooling production started • Half Cylinder • Tooling completed • Prototype ready for Dec ‘04 • Half Cone • Design in progress

  3. Status of cooling components • Received from Medelec: • Phynox tubes • CuNi capillaries • Processing started: • Squeezing • Ni+Cu layer on tubes ends • Fittings procurement

  4. Recent actions • Realization with M. Pimenta dos Santos (TS-CV-DC CERN) accomplished • First test performed in October • Foreseen installation (temporary) in bld. 23 for qualification

  5. First test of cooling plant Two-days hands-on course c/o TS-CV-DC • Manual setting of parameters (no automatization) • Use of a two-sectors-like setup • A few sets of parameters have been exploited • different power dissipations • variation of liquid/vapor pressure A first contact: some impressions, extensive test in order…

  6. Test setup • Final compontens of freon circuitry • Dummy staves: resistors mounted on kapton • Mount on carbon fiber • Thermal contact is the main issue

  7. Cooling plant Control panel Control software includes some emergency procedures

  8. Cooling circuit scheme compressor (in final setup)

  9. 40 W/stave – T vs. flow 1 40 W/stave – T vs. flow 1 Flow (l/min) 0.51 P inp(bar) 2.7 Flow (l/min) 0.54 P inp(bar) 2.9 Flow (l/min) 0.58 P inp(bar) 3.0 Flow (l/min) 0.6 P inp(bar) 3.1 Flow (l/min) 0.81 P inp(bar) 3.8 Flow (l/min) 0.65 P inp(bar) 3.2

  10. 40 W/stave – T vs. flow 2 40 W/stave – T vs. flow 2 Flow (l/min) 0.51 P inp(bar) 2.7 Flow (l/min) 0.54 P inp(bar) 2.9 Flow (l/min) 0.58 P inp(bar) 3.0 Flow (l/min) 0.6 P inp(bar) 3.1 Flow (l/min) 0.81 P inp(bar) 3.8 Flow (l/min) 0.65 P inp(bar) 3.2

  11. 20 and 50 W IR shots

  12. Summary plots Temperature (measured with IR camera) vs. power 20 W (nominal) Flow variation w/ input pressure 40 W Good sensitivity, wider range of pressure/flow feasible: ready for extensive test!

  13. Integration • A mock-up of half detector has been installed in Padova • It is being upgraded as needed • First tests: • near-detector cables integration • beam pipe support positioning both on RB26 side

  14. Cables layout • MCM- and bus-extenders have to go around input (output) capillars being twisted ~90o • Protection of capillars under study

  15. Beam pipe support

  16. Summary and plans • Cooling plant up and working • First test has been encouraging: • ease of startup • seamless power absorption (in test setup) • wide range of parameters tuning • emergency procedures implemented • Mock-up of SPD implemented • Effective for debugging of integration issues • RB26 side started • NEXT • Planning of extensive test of cooling plant for tuning on real conditions • Mock-up upgrade up to first patch panels and RB24 side

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