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Pacific Team 2001
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TEAM INTRODUCTION Pacific 2001 Crystal LangARCHITECT Robert WrightENGINEER Edgar LeenenCONSTRUCTION MANAGER Will Clift APPRENTICE Robert AlvaradoOWNER
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GENERAL INFORMATION Pacific 2001 Site: Univ. of the Pacific, Forest Grove, Oregon Year: 2015 Surroundings: Atop a cliff looking out on Pacific Ocean Small pond on inland side
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GENERAL INFORMATION Pacific 2001 Geologic Information: The site lies on top of bedrock. Precipitation: 65-90 annually Flooding occurs occasionally Wind: Strong winds up to 85 mph can exist
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 BUDGET
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ARCHITECTENGINEERCONSTRUCTIONMANAGER ROCK Light Functional space
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ARCHITECTENGINEERCONSTRUCTIONMANAGER
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Pacific 2001 LOADING Live Loads Atrium, Terrace, Storage100 psf Corridors80 psf Lobby, Auditorium60 psf Classrooms, Offices50 psf Roof20 psf Seismic Requirements Zone III Seismic Activity Occupancy Category, I = 1.0 Wind Requirements Design Wind Speed85 mph
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 M.E.P CONSIDERATIONS Cooling capacity 70 tons Boiler room & chilled water 450 ft 2 Space for cooling towers 80 ft 2 Cooling air volume27000 CFM Main supply or return ducts area16 ft 2 Branch supply or return ducts27 ft 2 Area of fan rooms750 ft 2 Area of fresh air louvers65 ft 2 Area of exhaust air louvers50 ft 2 Central mechanical room area1200 ft 2
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 ROCK Structural Solution I Lateral System Gravity System Lateral System Steel Moment Resistant Frames (N – S) Reinforced Concrete Shearwalls (E – W) Gravity System Composite Steel/Concrete Deck
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 ROCK First Floor E E + A TYPICAL SIZES Gravity Beams W18X55 Columns W12X45 Second Floor Slab t = 4.5 Lateral Beams W18X40 Columns W18X35 Shearwall h = 10 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 STEEL CONNECTIONS Steel Beam-Shearwall Connection Moment Connection Beam-Girder Connection Girder-Column Connection
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 ROCK Structural Solution II Lateral System Gravity System Lateral System Post-Tensioned Moment Resistant Frames (N – S) Reinforced Concrete Shearwalls (E – W) Gravity System Two-Way Post-Tensioned Slab Reinforced Concrete Columns and Beams
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 ROCK First Floor E E + A TYPICAL SIZES Gravity Beams 7X10 Columns 12X12 Second Floor Slab h = 9 Lateral Shearwall h = 10 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONCRETE POST-TENSIONED DETAILS Tendon Support Post-Tensioned Slab Moment Connection
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ARCHITECTENGINEERCONSTRUCTIONMANAGER EQUIPMENT
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 SITE PLAN ROCK & EARTH
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SCHEDULE ROCK 1
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SCHEDULE ROCK ROCK 1 (steel) ROCK 2 (reinforced concrete/post-tensioned concrete)
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ARCHITECTENGINEERCONSTRUCTIONMANAGER CONSTRUCTION SEQUENCE ROCK Pacific 2001
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE ROCK
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ARCHITECTENGINEERCONSTRUCTIONMANAGER WAVE Dynamic Explore
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1 2 3
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ARCHITECTENGINEERCONSTRUCTIONMANAGER
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Pacific 2001 WAVE Structural Solution I Lateral System Gravity System Lateral System ShearWalls Concrete Moment Frames Two Separate Buildings Gravity System Two-Way Slabs Reinforced Concrete Columns and Beams
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 WAVE First Floor E E + A TYPICAL SIZES Gravity Beams 10X12 Columns 12X12 Second Floor Slab h = 10 Lateral Beams 18X18 Columns 16X14 Shearwall h = 10 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 REINFORCED CONCRETE CONNECTIONS Column Reinforcement Beam Reinforcement Beam-Column Shear Reinforcement
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 WAVE Structural Solution II Lateral System Gravity System Lateral System ShearWalls Steel Moment Resistant Frames Gravity System Composite Steel/Concrete Deck Steel Beams and Columns with Simple Shear Connections
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 WAVE First Floor E E + A TYPICAL SIZES Gravity Beams W16X36 Columns W12X40 Second Floor Slab h = 4.5 Lateral Beams W16X40 Columns W16X31 Shearwall h = 8 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 SHEARWALL DETAILS Shearwall Reinforcement Wall-Footing Elevation Shearwall Corner Reinforcement
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 SITE PLAN WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SCHEDULE WAVE WAVE 1 (reinforced concrete) WAVE 2 (steel)
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE WAVE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER EARTH Functional Flexible
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ARCHITECTENGINEERCONSTRUCTIONMANAGER
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Pacific 2001 EARTH Structural Solution I Lateral System Gravity System Lateral System ShearWalls (N – S) ShearWalls (E – W) Gravity System Post-Tensioned Two-Way Slabs Reinforced Concrete Beams and Columns
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ARCHITECTENGINEERCONSTRUCTIONMANAGER b Pacific 2001 EARTH First Floor E E + A TYPICAL SIZES Gravity Beams 7X12 Columns 12X12 Second Floor Slab h = 9 Lateral Shearwall N h = 10 Shearwall E h = 8 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 EARTH Structural Solution II Lateral System Gravity System Lateral System ShearWalls (N – S) ShearWalls (E – W) Gravity System Composite Steel/Concrete Deck Steel Beams and Columns with Simple Shear Connections
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ARCHITECTENGINEERCONSTRUCTIONMANAGER b Pacific 2001 EARTH First Floor E E + A TYPICAL SIZES Gravity Beams W18X55 Columns W12X45 Second Floor Slab h = 9 Lateral Shearwall N h = 10 Shearwall E h = 8 Third Floor
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 FOUNDATION SYSTEM Spread for interior columns Typical Size 4 X 4 X 2 Strip for perimeter columns and shearwalls Typical Size 4 X 2 Typical Steel Column-FootingTypical Concrete Column-Footing
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SCHEDULE EARTH EARTH 1 (reinforced concrete/post-tensioned concrete) EARTH 2 (steel)
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 CONSTRUCTION SEQUENCE
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 COST COMPARISON BUDGET
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ARCHITECTENGINEERCONSTRUCTIONMANAGER Pacific 2001 COST COMPARISON BUDGET Structural system $ 296.000 Total$ 3.620.000 COSTS Structural system $ 178.000 Total$ 3.700.000 WAVE 2 Beams Steel ColumnsSteel Moment framesSteel SlabComposite RoofSteel
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TEAM INTERACTIONS 1 A A+E+CA+E+C A+E E+C E+C SAMPLE DESIGN ITERATION Time C
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DECISION MATRIX
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PACIFIC 2001 CHOICE WAVE!
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LESSONS LEARNED AND GOALS Pacific 2001 Utilize available technology more effectively Improve communication Coordinate media we work in More interactions: Between team members With mentors With owner
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QUESTIONS Pacific 2001 ?
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