Status of the Design Study Richard Catherall EN-STI-RBS.

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Presentation transcript:

Status of the Design Study Richard Catherall EN-STI-RBS

Outline Introduction Project Breakdown Structure Target Area Upgrade: a change in the PBS ITN Call3 (Marie Curie Fellowship) Progress on drawings Fluka simulations : a step forward Timeline

Project Breakdown Structure  Three tier structure used for PBS and drawings  L – Layout  T- target area  X - experimental area  J - Class A lab  S - Shielding  G - Geodesy and Survey  B - Beam Instrumentation  E - Electrical Power  C - Control  F – Fluids  T – Targets and Front ends  I - Injection and transfer lines  K - Civil engineering  H - Handling, mechanics, supports  M - Magnetic elements  P - Personnel safety and radiation protection  U - Ventilation and air conditioning  V - Vacuum equipments  A - Access system  Z - Electrostatic systems  D - Management  W - Waste disposal  Examples of PBS  LTS  Layout, target area, shielding  LTG  Layout, target area, survey…etc, etc.  Examples of drawing codes  I S L _ _ _ _ _  I S L L T  I S L ISOLDE  L Layout  T target area  V Vacuum systems  X Exhaust  T Tanks  0001 number 1  Target Code example  I S L T F V _ _

Project Breakdown Structure 5.0 Target Study 5.1 Target design Target Material Target Design Target handling and storage 5.2 Front ends HV and high current systems Extraction optics FE design 5.3 Beam diagnostics 6.0 target Area and Class-A lab Integration 6.1 Layout upgrade 6.2 Cooling and Ventilation 6.3 Electrical systems 6.4 Vacuum 6.5 Survey 6.6 Civil engineering 6.7LL controls 7.0 Injection and beam preparation 7.1 Beam line magnets 7.2 Off line separator 7.3 Separator areas HRS magnet RFQ cooler Pre Separator 7.4 Experiment Hall 7.5 Beam lines 8.0 Safety 8.1 Radioprotection Linac Design study 8.2 Safety 8.3 Access system 8.4 Fire detector Target area Upgrade Project 3.5 MCHF accorded by CERN management Starting in 2010 Identified the urgent need to upgrade the target area. Will have an impact on the current PBS

ITN Call3 (Marie Curie Fellowship) 5.0 Target Design (EN/STI)WP HolderFellows – Target Material T. Stora1 – Target DesignT. Stora/V. Vlachoudis2 5.2 Front ends (TE/ABT & EN/STI) – HV and high current systemsT. Fowler1 – Extraction optics & – FE designS. Marzari1 6.0 target Area and Class-A lab Integration (EN/CV & TE/VSC & EN/STI) – 6.2 & 3.2 Cooling and VentilationS. Deleval1 – 6.4 VacuumG. Vandoni1 – 6.7 LL controlsA. Masi1 7.0 Injection and beam preparation (EN/STI & BE/ABP) – 7.2 Off line separator & – HRS magnetT. Giles1 – RFQ cooler & – Pre SeparatorT. Giles1 – 7.5 Beam Lines (REX-EBIS studies)F. Wenander1 8.0 Safety RP (DG/SCR) – Linac – Design studyT. Otto2 Total13 / year for 3 years

Drawings A tremendous effort has been spent on improving the drawings of the ISOLDE facility throughout 2009 Starting point for all future developments Catia models- CERN standards

Drawings Derived from laser scan and photography – limited access Improved up-to-date detail Used for future projections with the HIE-Energy sub- project Improved geometries for Fluka by A. Leyko

Fluka – a quick reminder 2007 D. Hovarth looked mainly at the air activation due to secondary particles The need for a better geometry was identified. – Especially for the experiment hall A simple model of the target shielding was initiated.

Fluka Simulations: a step forward Improved geometry for Fluka simulations Different colours represent different materials First steps in defining shielding requirements for HIE-Intensity ISOLDE GPS Neutron Fluence at target height 1 pulse at 1E+13 protons Need to run further simulations Tools are available Special thanks to Agnieszka Leyko: Report: Radiation Study for the ISOLDE Experimental Hall

Timeline: from a Design Study approach Design Study Target Area Upgrade Allocation of Resources 2011? Design Study Target Area Upgrade