CFS challenges for a linear collider J.Osborne CERN ILC-GDE Dubna - 4 June 2008 OUTLINE : Introduction Civil Engineering -Geology (water, stability issues.

Slides:



Advertisements
Similar presentations
Global Design Effort - CFS 13 December 2012 PAC Review - KEK 1 PAC Review CONVENTIONAL FACILITIES AND SITING A. Enomoto, V. Kuchler, J. Osborne.
Advertisements

ENVIRONMENTAL ASPECTS EDR - CFS Europe – Kick-Off Meetings Kick-Off Meetings, CERN, 3, 4, 5 September ILC PROJECT ENGINEERING DESIGN REPORT CFS Europe.
CERN TS Department / Civil Engineering Group 8 February 2008 Civil Engineering Layouts & Tunnel Cross Section 1 CLIC/ILC Collaboration Meeting 8 Feb 2008.
Plasma Wakefield (AWAKE) Project Meeting 18 October 2012 Civil Engineering Feasibility Issues for the West Area EDMS : John Osborne GS-SE.
CFS near term & Required ADI input CFS near term & Required ADI input 6-12 month activities, required ADI information 10. AUG 2014CFS-ADI Joint Meeting1.
3/2011 CFS BTR Global Design Effort 1 Americas Region Civil Design Tom Lackowski.
John Osborne GS/SE March 2013
Global Design Effort - CFS TILC09 and GDE AAP Review Meeting - Tsukuba, Japan 1 GDE ACCELERATOR ADVISORY PANEL REVIEW CONVENTIONAL FACILITIES.
Conventional Facilities and Siting Global Design Effort Safety Requirements for IR Conventional Facilities and Siting Group Safety Requirements for IR.
Construction and Installation of the CLIC Experimental Area
First Results of Geological Investigations of Dubna Siting of Dubna Siting G.Shirkov.
Global Design Effort - CFS CLIC 09 Workshop - WG 5 Technical Systems 1 CLIC 09 WORKSHOP Working Group 5 - Technical Systems ILC REBASELINE ILC.
ILC CFS / CLIC CES Studies for the Interaction Region : - An action was given at the Geneva Linear Collider Meeting for CFS to develop a more in-depth.
Global Design Effort - CFS ILC Global Systems Meeting 1 ILC GLOBAL SYSTEMS MEETING CONVENTIONAL FACILITIES AND SITING GROUP Status and Overview.
Laughton 7/04 Long Baseline Neutrino Program Tunneling Chris Laughton, Fermilab.
LCC Linear Collider Collaboratio ILC - CFS 12 November 2013 LCWS13 Tokyo University 1 Site-specific CF design from TDR LCWS13, 12 November 2013 Atsushi.
Geotechnical & Civil Engineering Studies Future Circular Colliders (FCC)
CES Status J.Osborne 6 November 2009 Status Report from Civil Engineering and Services Working Group J.Osborne GS/SEM for CES Working Group.
1 Alternative assembly option of ILD Y.Sugimoto 2010/10/18 ILD Integration
1. Civil Engineering works for Linear Colliders* : -Brief introduction on the overall machine layout (just for CLIC at this stage) -Experimental Area.
Underground Stations Typical Station Site Plan. Underground Stations Ground Conditions: Key Issues.
Global Design Effort - CFS SiD Collaboration Meeting - SLAC 1 VERTICAL ACCESS ILC IR LAYOUT for SiD and ILD CONVENTIONAL FACILITIES AND SITING.
LCWS14 - Belgrade October 6-10, 2014 Conventional Facilities & Siting Working Group Summary V Kuchler, M Miyahara, J Osborne.
ILC experimental area - How to ‘develop’ CFS details for TDP (cavern size, number of shafts, HVAC, EL spec etc) ? - KEK site specific issues CFS V.Kuchler.
November 17, st XFEL / ILC Meeting 1 ILC GLOBAL Design Effort The Current ILC Twin Tunnel Design Wilhelm Bialowons and Nicholas Walker · MPY.
Global Design Effort - CFS TILC09 and GDE AAP Review Meeting - Tsukuba, Japan 1 GDE ACCELERATOR ADVISORY PANEL REVIEW CONVENTIONAL FACILITIES.
1 CLIC / ILC Collaboration for CES issues JOHN OSBORNE – CES 8 April 2009.
CLIC Implementation Studies Ph. Lebrun & J. Osborne CERN CLIC Collaboration Meeting addressing the Work Packages CERN, 3-4 November 2011.
1 Global Design Effort TILC08 - WG1 Summary WG-1: Cost Reduction Studies J. Carwardine, T. Shidara, N. Walker (For WG-1 participants)
TILC08 - WG1 Summary Global Design Effort 1 TILC08 仙台 GDE 会議 WG-1 活動報告 GDE 活動報告会 3月11日10:00- 3号館7階会議室 設楽
DESY_ILCW07 Global Design Effort-CF&S 1 Beam Delivery System & Interaction Region Fred Asiri CF&S Point of Contact.
Agenda : CLIC Civil Engineering and Services (CES) WG.
John Osborne : GS-SEM Civil Engineering 19 May 2009 Report on behalf of CLIC Civil Engineering and Services (CES) WG CTC 19 May 2009 Tunnel Cross Section.
10/2010 IWLC2010 Global Design Effort 1 Brief Overview of Interaction Region Conventional Facilities in RDR Times Presenter Tom Lackowski.
Civil Engineering and Services - drawings for CDR - CDR chapter J.Osborne and M.Gastal for CES WG 1.
Global Design Effort - CFS ILC10 Beijing, March, Single-Tunnel Accelerator Configuration Of Asian Region Atsushi Enomoto (KEK)
1 J.Osborne (CERN)
Global Design Effort - CFS TILC08 Working Group 1 - March 5, CFS Cost Reductions Conventional Facilities and Siting Group A. Enomoto, V.
1 Target Station Design for Neutrino Superbeams Dan Wilcox High Power Targets Group, Rutherford Appleton Laboratory NBI 2012, CERN.
John Osborne : GS-SEM Civil Engineering 18 May 2009 CES 9 June News from ILC Japan CFS review 1-3 June 2010 :
3/20/11 ALCPG11 Global Design Effort 1 CFS Detector Hall Considerations Tom Lackowski.
ILC D RAFT P ROJECT S CHEDULE K LYCLUSTER 500GeV K Foraz & M Gastal ILC Mechanical & Electrical Review and CFS Baseline Technical Review Many thanks to.
CENF CIVIL ENGINEERING : - DESIGN TENDER AND ESTIMATED COSTS John Osborne GS/SE 19 July 2013.
General Infrastructures Services Department Civil Engineering planning for LSS4 Option, presented at review workshop 30/7/ months Planning and Resources:
Europe / CERN studies for SB2009 ILC Re-Baseling J.Osborne CERN (CFS & CES) 2009 Linear Collider Workshop of the Americas 28 September - 4 October 2009.
MDI 9 th Meeting - 22 nd January 2016 FCC Experimental Caverns - Feasibility and Excavation C. Cook (GS), J. Osborne (GS),
Survey Meeting John Osborne, CERN 8 February 2016
ILC J.Osborne / A.Kosmicki / B.List – March 22 th 2012 CFS update for Europe.
Review of FCC tunnel footprint & implementation Introduction & scope Philippe Lebrun Review of FCC tunnel footprint & implementation CERN, 11 June 2015.
CENF CIVIL ENGINEERING UPDATE : - SITE INVESTIGATION - CALL FOR TENDER FOR DESIGN & CONTRACT ADMINISTRATION SERVICES - 3D VISUALS FOR SURFACE STRUCTURES.
CENF CIVIL ENGINEERING UPDATE : - SITE INVESTIGATION - CALL FOR TENDER FOR DESIGN & CONTRACT ADMINISTRATION SERVICES John Osborne GS/SE 16 May 2013.
CES Studies at CERN for the Interaction Region : -Summary of Linear Collider IR meeting at CERN held on 16 February Design Brief for external design.
DIAPHRAGM WALLS.
Experimental Hall in Mountain Regions
FCC Underground Infrastructure
Civil Engineering for FCC-eh and LHeC
CLIC Civil Engineering Update
CLIC Civil Engineering Update
FCC Civil Engineering John Osborne, Jo Stanyard, Matt Stuart(SMB - Site Engineering - FAS Section) Cost & schedule Phase 3 - specification 10th May 2017.
CLIC Civil Engineering & Infrastructure
Acknowledgements to all FCC study teams
$150K Chicago/ANL seed funding for Braidwood site investigation
Tunnel Cross Section Studies
CLIC / ILC Collaboration for CFS works
Interaction Region Alternative Layouts
5th FCC Infrastructure & Operation meeting
Civil Engineering for FCC-eh IR
CLIC Civil Engineering Update
RDR Baseline Layouts for Interaction Region
FCC Week 2019 Civil Engineering Summary
Presentation transcript:

CFS challenges for a linear collider J.Osborne CERN ILC-GDE Dubna - 4 June 2008 OUTLINE : Introduction Civil Engineering -Geology (water, stability issues etc) -Costs -Risk -Planning Other CFS cost drivers : Cooling and Ventilation Safety and Environmental Considerations Conclusions

Introduction Why are CFS being considered at such as early stage : –Approximately 40% of budget for linear collider –CFS can make or break projects What are the key challenges ? –90% of CFS costs are for Civil Engineering, HVAC and Electricity –Safety, Environmental…. CFS issues to a certain degree generic for CLIC & ILC Linear colliders –Further discussion on the CLIC/ILC CFS collaboration planned for this week Key CFS areas will be subject of Focus Groups this week

Similar World Projects: eg Channel Tunnel 7.6mØ 4.8m Ø 50Km

Channel Tunnel Construction (2) 7 years from first excavation to operation At peak 15,000 workers 6 TBM’s used for tunnelling Very approximate cost = $9.1billion (1985 prices) Difficulties : Financing Political Water ingress Safety (10 workers died), fire.. Cost overruns…. Feasibility studies started 200years ago with in Napoleonic times !!!

ILC – General Layout Phase 1 (500GeV)

Main civil engineering risks (1) A full risk assessment must be carried out for both the pre-construction phase and execution phase of the works. The Pre-construction phase must assess risks such as : Delay during the planning permission approval process Objections raised from the public on environmental grounds Problems with the project management team Project financing uncertainties Tenders submissions not reaching minimum bidding standards Non appropriate sharing of risk in tender documents

The execution phase of the works must assess risks such as : Uncertainties with geological, hydrological and climate conditions, including: –Unstable tunnel excavation face –Fault zones –Large amounts of water inflow –Unexpected ground movements (especially in large caverns) Anomalies in contract documents (e.g. large quantity inaccuracies) Interference from outside sources Delayed submission of approved execution drawings Design changes from the consultants and/or owner Lack of thorough safety and/or environmental control Labour relations etc Main civil engineering risks (2)

Civil Engineering : Geology & Site Investigation Thorough site investigation is essential in order to avoid surprises during tendering/construction For LHC studies, all LEP geotechnical investigative reports were collated and new specific borings executed 3-4 years before the start of the worksite. As an example, for the CMS worksite, 11 new boreholes were drilled and tested. Information collated included : –Detailed cross sections of ground geology –Any known faults in the underlying rock identified –Ground permeability –Existence of underground water tables –Rock strengths etc etc Separate contracts were awarded for these site investigations prior to Tender design studies starting. Even with all this very detailed knowledge of the local geology some unforeseen ground conditions were encountered during the works

Importance of detailed site investigation : EG LHC ATLAS and CMS Experimental Areas 8km

Unforseen problems during constrution : Eg Ground Freezing for CMS shaft excavation

Civil Engineering Challenges : Eg ILC – Long Profile for CERN sample site

CLIC – Long Profile CLIC tunnel lowered as risk mitigation measure, due to geological concerns

A.Samoshkin 3D Clic module A.Kosmicki 3D Clic CE Turnaround area Integration of machine & services needed to define underground volumes Integration issues to be studied this week in FG D

ILC Typical Cross Section Integration Issues to be studied in Focus Group D….

9 TBM’s with 5 transported and re-used TBM  finished =4.5m MS TBM  =4.5m Cavern finishing Shaft/cavern excavation TBM setup TBM transport TBM removal Finishing work Service Tunnel TBM Extract from Valencia Presentation Nov 06 by M.Gastal Talk from CERN LHC Experience this week on Friday Planning Challenges

CFS Challenges for Interaction Region 10% of civil costs for IR Region Layout for Interaction Region ILC RDR

Possible layout for ILC Interaction Region for Deep Tunnel Solution using CMS concept Produced by A.Herve CMS for IRENG07

400t 400 ton gantry crane is the cost driver large steel columns down to floor level would be needed Lot of lost space RDR Baseline for IR cavern

Proposed new cross section for ILC Interaction Region

The ILC linear accelerator is proposed to be placed in the drift clay at the depth of 20 m (at the mark of m) with the idea that below the tunnel there should be impermeable soil preventing from the underlying groundwater inrush. It is possible to construct tunnels of the accelerating complex using tunnel shields with a simultaneous wall timbering by tubing or falsework concreting. Proposed Dubna siting

Vertical shaft Communication tunnel vertical communication shaft accelerator tunnel -20,0 Proposed Dubna typical cross section Beam tunnel 20m below surface

Possible layout for interaction region for a Shallow Site Near Surface Solution represents approx 5% saving on total CFS costs for experimental hall + much less risk

Diaphragm walling : excavation is supported via bentonite slurry, wall concreted in ‘panels’ down to required depth from surface

Shaft or hall excavation within concreted wall

Shaft or hall excavation within concreted wall, often temporary internal struts are needed prior to permanent propping.

Central Ventilation building feeding both areas Control room for each detector Concrete slab needed to support diaphragm walls This discussion to be continued in FG A …………

Possible Ventilation Safety Systems for road tunnels Extracted courtesy of ‘French Tunnelling Association : AFTES : Tunnels routiers : resistance au feu Jan 2008’ = safe

CLIC – Typical Cross Section The challenge is to fit all the services in the smallest underground volume, whilst respecting the relevant safety legislation

Other ILC infrastructure Challenges Processed Cooling Water -FNAL did RDR design -Lots of useful dialogue with KEK and DESY on-going Power Distribution Ventilation…. These key issues will be discussed in FOCUS GROUP B

Main Contents :  Scientific Basis of the Project  Project Description (Machine & Detectors)  Civil Engineering  Works Management  Impact on the Environment  Measures in place to mitigate Impact Formalities with Outside World - Environmental Impact Study Study Example: Cooling Towers : In Europe, regulations with regard to Legionnaires are becoming stricter and stricter…….

Conclusions Approx. 40% of linear collider budget is for CFS works (with CE, HVAC and EL making up 90% of that), so it’s imperative that they are well defined from early stages. Extremely difficult for engineers to examine in sufficient detail until site is known, maybe a ‘generic’ site is the way forward. Issues such as safety and environmental considerations must be studied from conceptual stage. A lot of CFS subjects are generic to CLIC & ILC. Common Working Groups are established. Looking forward to fruitful discussions this week on CFS challenges……….