Virginia Approach Spans



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Virginia Concrete Conference 2009 Woodrow Virginia Approach Spans David Tackoor, HNTB Formerly of URS Corp for Potomac Crossing Consultants Woodrow 1

Second Severn Crossing 2

Medway Crossing (Channel Tunnel Rail Link) Flared segments Tapered pier legs 3

4 Virginia approach Spans Contractor: Granite/Corman joint venture Construction Budget: $135M Completed: August 2008

Construction stages Woodrow March 2003 5 February 2003 Demolition of Hunting Towers October 2004

Virginia Approach Spans

Challenges Segment shape - multi directional curvature Schedule - Finite bridge opening dates. Fixed Construction cycle Confinement - restricted site space and access, water bound two sides, two public trails across site Access - difficult access to arches for grouting, stressing repair and finishing operations Inspection - effective client/contractor team integration, common goals. Apply principles of trust and money, partnering Mass concrete operations - Pier knuckle and pile caps Coordination - with adjacent contractors for approach highway and bascule bridge 7 Continuous improvement Flexible working methods, concrete

Foundation and pedestal construction 8

Detailed view of pedestal 9

Construction 10

V-pier structure Tie Beam Bearing Pad Arch Rib Knuckle Pedestal and Foundation 11

Pier knuckle 12

Pier knuckle/tie beam assembly 13

Epoxy resin adhesive 14 Normal and slow-set epoxies Multiple temperature range formulations required Specific requirements for Consistency Gel Time Contact Time Compressive Yield Strength Bond Strength Heat Deflection Special requirements for low temperature (20-40ºF) applications

Placing upper knuckle and tie beams 15

Upper knuckle construction 16

Segmental Precast Pier Overview 4 V-Piers at 6 Pier Locations >> 24 V-Piers >> 48 Arches Two Separate but Similar Pier Geometries One casting bed for 14 Arches converted to cast 18 Arches 20 Arches 14 Typical Width V7 OL, V6, V5 4 Arches 18 Typical Width V7 IL One casting bed for 16 Arches 24 Arches 16 Typical Width V4, V3, V2 Five Segment Types Starter (length varies) highest # Typical (10 long at top) - #5 to #9 Flared (inconsistent width) - #4 to #1 Knuckle (bearings) - #0 Tie Beams (span arch to arch) 17

Segment placing Temperature curing closure pour Placing segment 18 Knuckle core Knuckle wing placed

Temporary stay system 19

Post-tensioning 20

Grouting operations 21

Pre-casting operations 22

Concrete placing sequence Pour Window Web 5 Flare Wall 4 3 3 Pour 3 3 Window 1 2 1 23

Outline two improvements Overview of Precast Segmental Piers Long Line vs. Short Line Casting Innovations & Best Practices Segment Casting Sequence (time & cost savings) Precast Segment PT Bar Joint Interface (quality) 24

Linear Casting Sequence Casting Order Knuckle Plan Segment ID Elevation 25

Skip Casting Sequence Casting Order Knuckle Plan Segment ID Elevation 26

Post-Tensioning Bar Interface at Segment Joints 27

Post-Tensioning Bar Interface at Segment Joints Hole in PT Plate Washer is 1-7/8 for 1-3/8 PT Bar Duct is I.D. is 3-5/8 A blockout almost doubles the size of the mandrel allowed to keep ducts straight Blockout is 2-1/4 deep Rebar cover is only 1-1/2 28

Original plate washer blockout 29

Problems with original P/T plate washer blockout 30

Modified Plate Washer Blockout SEGMENT JOINT 5"x9"x1-3/4" PLATE WASHER PT PLATE WASHER BLOCKOUT CL 1-3 8" PT Bar 3" PE Duct 4" PE Duct 3" PE Duct WETCAST SEGMENT MATCHCAST SEGMENT 31

Results of Modified Blockout 32

Continual improvements 33

Demolition of old bridge Transparent noise wall 34 Transparent Soundwall April 2008

Steel superstructure Lead core elastomeric bearing 35

Deck construction 36

Median and fascia barrier walls 37

Value engineering Sequence of pre-casting segments from linear to skip casting. This change resulted in significantly improving productivity Decision to locate the precast yard on the job site Separating the precast knuckle segment into three pieces to accommodate handling and placing P/T duct connectors at segment bulkheads for improved alignment across joints. This cut a four-hour procedure down to 30 minutes Mandrill use in pre-cast ducts reduced coring or open concrete repairs Casting knuckle nose at ground level as opposed to in the air Combining an inflatable bladder with the mandrill use in pre-cast ducts reduced coring or open concrete repairs Needle beam formwork system for the large bridge deck overhangs to mitigate girder torsion issues A slip-exit off the Capital Beltway was created to ease material deliveries and relieve in town congestion. 38 Daily improvements via RFC s and RFI s

Thank you! Woodrow David Tackoor, HNTB (dtackoor@hntb.com) My gratitude to Mr. Bret Barton P.E. of Granite Construction. Bret provided several slides and made a significant contribution to building the team and partnering the project through to successful completion. 39