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ΒΡΑΔΙΕΣ ΚΟΙΝΟΥ – ΑΣΤΡΟΝΟΜΙΑ ΓΙΑ ΟΛΟΥΣ 2007-08 Ε.Γ. Ανασοντζής – Ε.Κ.Π.Α. Τίτλος WP5, Paris, Feb.09.

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Presentation on theme: "ΒΡΑΔΙΕΣ ΚΟΙΝΟΥ – ΑΣΤΡΟΝΟΜΙΑ ΓΙΑ ΟΛΟΥΣ 2007-08 Ε.Γ. Ανασοντζής – Ε.Κ.Π.Α. Τίτλος WP5, Paris, Feb.09."— Presentation transcript:

1 ΒΡΑΔΙΕΣ ΚΟΙΝΟΥ – ΑΣΤΡΟΝΟΜΙΑ ΓΙΑ ΟΛΟΥΣ 2007-08 Ε.Γ. Ανασοντζής – Ε.Κ.Π.Α. Τίτλος WP5, Paris, Feb.09

2 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA To splice electro-optical cables (either for repair or extension) To terminate electro-optical cables (in order to connect deep- sea instrumentation) To do the above with any type of electro-optical cables The scope Bereike

3 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The electro-optical cable Fibres Thixotropic filling compound Copper tube High Density Polyethylene Reinforcement) Steel wires Polypropylene yarn NSW's LA Minisub CA el/opt cable Polyethylene sheath Optical Fibres Copper tube Steel wire vault Copper conductor Yarn NSW’s MINISUB R SA cable, switable for depths down to 7000m. ALCATEL has a similar design: the URC2 Single Armoured cable (SA) Steel wires Thixotropic Filing The electro-optical group  The fibres  The metallic tube and conductor  The Plastic sheath The Reinforcement and handling group  The reinforcing steel wires (one or more layers)  The external handling layer

4 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The electro-optical cable splice 1. Preparing and restoring of the two cable ends that we plan to join. This includes the removable of cable layers lengths as required. 2. Splicing the fibres using the required fibre splicer. 3. Restoring the steel tube and protecting the fibre splices within it. 4. Restoring the conductor layer (tape) and the electrical continuity. 5. Restoring the insulation layer. 6. Restoring the steel wire cage. 7. Restoring the external handling layer. Similar procedure if we want to “terminate” the electro-optical cable

5 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The electro-optical cable splice  Splices produced for specific elopt cables  The “Universal Joint” of the UJ Consortium (to join elopt cables that conform the UJ Consortium specifications  The “home made” elopt splice box The most complicating requirements: The elopt cable works under: High pressure High voltage The most crucial repair step: Restoring the insulation layer The Universal Joint Common Component (picture of UJ Consortium) The Km3NeT- NESTOR-UoA elopt CJB

6 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The Km3Net-NESTOR-UoA elopt CBJ (electro-optical cable junction box) Major requirements  Protect the fibres from water  Protect the high voltage from shorting (to sea)  Maintain the cable tensile force The Cable Junction Box components: B the connections housing and T and T’ the endcaps B T’ T

7 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The Cable Junction Box connection housing

8 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The Cable terminating end-cap A B C A.the anchoring unit B.the waterproofing unit C.Fibres protection and fibres splice box base

9 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Baikal The Cable terminating end-cap Details of the waterproofing unit and the in side of the end-cap flange

10 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA We have designed, construct and tested a Cable Junction Box with one cable terminating end-cap at one end and a dummy end-cap at the other end at full pressure test (480 atm, one week). More-over we tested its tensile strength and it was found in excess of cable tensile test. We believe that we can built any Cable Junction Box that we will need in KM3NeT.

11 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA Thank you for your patience

12 WP5, Paris, Feb.09 E.G. ANASSONTZIS, N.K.UoA ΤΕΛΟΣ


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