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Integrated Bridge Load Rating Allowing Rational Assessment of Foundation Reuse Sayed M. Sayed, PhD, PE, DBIA | GCI INC Hisham N. Sunna, PhD, PE | Ayres Associates Inc Pamela R. Moore, MSCE, PE | GCI INC April 9 - 10, 2019 GCI INC
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Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Jul 12, 2020

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Page 1: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Integrated Bridge Load Rating Allowing Rational Assessment of Foundation Reuse

Sayed M. Sayed, PhD, PE, DBIA | GCI INCHisham N. Sunna, PhD, PE | Ayres Associates Inc

Pamela R. Moore, MSCE, PE | GCI INC

April 9-10, 2019

GCI INC

Page 2: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Mr. BridgesSafe Weight Lifting Load

Page 3: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Mr. BridgesLeg (Substructure) Collapse

Page 4: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Mr. BridgesSafe Lifting via Weight Bench (Crutch Bent)

Page 5: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Background

Sayed, Sunna, and Moore (2013) proposed the first known method to address the substructure load rating of bridges

Integrated Bridge Load Rating (IBLR): a combined load rating of the superstructure-substructure system whereby the smaller of the superstructure load rating and the substructure load rating is adopted as the IBLR

Foundation Reuse: Universal Definition– Any situation where the conditions dictating the performance

of an existing foundation are different from those of the original design.

Paper on IBLR and Foundation Re-use, ASCE Practice Periodical on Structural Design and Construction (2018)

Page 6: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Load Rating MethodologySuperstructure

Page 7: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

ASR and LFR

Rating Factor (RF) (AASHTO 2010)

RFsup = (C – A1D) ∕ A2L(1+I)

Nominal capacity of the element being ratedDead and live load factors, respectivelyDead load effect on the memberLive load effect on the member; andImpact factor to be used

CA1 & A2

DLI

Where:

Page 8: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Rating Factor (RF) (AASHTO 2010)RFsup =[C-(λDC)(DC)-(λDW)(DW) ± (λP)P] / (λL)(LL+IM )

LRFR

Nominal capacity of the element being ratedLFRD load factor for structural components and attachmentsDead load effect due to structural components and attachmentsLFRD load factor for wearing surface and utilitiesDead load effect due to wearing surface and utilitiesLFRD load factor for permanent loadsPermanent loads other than dead loadsEvaluation live-load factorLive-load effect; andDynamic load allowance (LFRD method)

CλDC

DCλDW

DWλP

PλL

LLIM

Where:

Page 9: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

RTsup = ( RFsup ) W

Where:

W Weight of the nominal truck

Superstructure Load Rating ( RTsup )

Page 10: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Load Rating MethodologySubstructure

Page 11: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

ASD/ASR

R = ηg Σ Qo / FS

RFSηg Qo

Where…Allowable load per pile bent or pile groupFactor of SafetyPile group efficiency (Sayed and Bakeer 1992); andNominal (ultimate or Davisson) pile capacity of single pile

Page 12: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

LFD/LFR

γn Σ βi R i = ηg Σ ϕ Qo

γnβiϕ

Where…Group factorLoad factor for load component Ri ; andPerformance (resistance) factor

Page 13: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

LRFD/LRFR

Σ γi Ri = ηg Σ ϕ Qo

Where…

γi Load factor for load component Ri

Page 14: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

RTsub = (RFsub) W

Where…

RFsub is the substructure rating factor and equals

% LL for any predetermined settlement

Substructure Load Rating ( RTsub )

(Note: % LL = ratio of applied live load per pile to the live load per pile corresponding to the nominal truck)

Page 15: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

History of Design Criteria for Bridges

ASD Before 1973 LFD 1973 – 2002 LRFD After 1994

Page 16: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

IBLR and ReuseKF Bridges

Page 17: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 720366

Page 18: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Geo-Structural Data for Bridge No. 720366

Page 19: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Substructure LFR for Bridge No. 720366

IR OR

Page 20: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge Superstructure Tolerance to Total and Differential Foundation Movements NCHRP Web-Only Document 245 (2018)

Continuous Multi-Girder Bridges– PS Beams:

Service III ∆ = 0.0005L +0.17 (in.)

Strength I ∆ = 0.13 L/S-0.17 (in.)

– Steel Beams: Service II and Strength I

∆ = 0.55L/S – 2.6 (in.)

Steel and PS Simple Span Bridges– Rideability controls

– Angular Distortion ≤ 1/250L

S

Page 21: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

IBLR for Bridge No. 720366

Page 22: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Rating Factors for Bridge No. 720366

Page 23: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

IBLR and ReuseUF Bridges

Page 24: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042

Page 25: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge 124042

Page 26: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge 124042

Page 27: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Issues Impacting UF Bridges

Embedment

Geotechnical Design Criteria

Structural Design Criteria

Page 28: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Embedment of Deep Foundations

S/B-C FHWA/FDOT RE NDT

For selected pile size:

Deterministic Pile GroupAt any Mudline Realistic for any Soil

Conditions Unique Solution

Guesstimate Single PileAt Construction Mudline for RE Unrealistic/Risky if Softer Layers

Exist Below “Calculated” Tip Lack Uniqueness

= Embedment= Load < Ultimate Pile Capacity (Satisfying Stability)= Deformation < Specified Requirements (Satisfying Functionality)

L

P∆

Page 29: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

S/B-C Schematic Representation

Page 30: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Effect of Embedment

Page 31: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042 Embedment Determination via S/B-C

Page 32: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042 Embedment at Existing Mudline

NDT (PIT) S/B-C with SF=1.5 S/B-C with SF=2.0

Page 33: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042 Embedment at 100 Year Scoured Mudline

NDT (PIT)(Bridge is gone)

S/B-C with SF=1.5 S/B-C with SF=2.0

Page 34: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042 Allowable Stress Rating (ASR)

IR OR

Page 35: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042Load Factor Rating (LFR)

IR OR

Page 36: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042Load Factor Rating (LFR)

IR

OR

Page 37: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Effect of Geotechnical Design Criteria

Page 38: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042Load Factor Rating (LFR)

IR

OR

Page 39: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Effect of StructuralDesign Criteria

Page 40: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Bridge No. 124042 Substructure ASR vs. LFR

IR

OR

Page 41: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

IBLR and Reuse – UF Bridges

RatingTypea

Inventory

SuperstructureLoad Rating

(tons)

Superstructure Load Ratingd

Tip Elevation

(ft)Embedment

(ft)

LFR w/UltimateCapacity

(tons)

LFR w/DavissonCapacity

(tons)

ASR w/UltimateCapacity

(tons)

34b

46b

58c

97c

-36.3

-42.3

-36.3

-42.3

16.5

22.5

16.5

22.5

29

50

40

70

NA

14

1

22

2

20

13

35Operating

HS-20 (36 tons)

Based on FDOT database (FDOT 2006) for opensteel grating span no. 38

Based on CONSPAN (2009) for prestressed girder spans

Based on S/B-C @ existing mudline

a

b

c

d

Allowable Stress Rating

Load Factor Rating

Not available due to excessive displacement or non-convergence (i.e., instability)

ASR

LFR

N/A

Page 42: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Relevance of IBLR to LTBP

Scour-prone bridges

Groundwater fluctuations

Reuse of existing foundations

Bridge widening and rehabilitation

Increase in loads (i.e., dead load due to resurfacing or live load due to heavier truck loadings)

Load rating methodology not matching original design

Physical deterioration (e.g., corrosion, decay, settlement)

Changes in specifications or policies

Truck Platooning

Waterway

Land

Waterway/Land

Bridge Crossing Condition Requiring IBLR

Page 43: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Benefits of IBLR

Performance

Maintenance

Capital Expenditures

Better evaluation; prevention of functional and catastrophic failures

Proactive and preventive maintenance; more robust bridge posting if implemented

Reduction in expenditures over the useful life of the bridge; optimized planning of need for bridge replacement

Area Benefits

Page 44: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

CONCLUSIONS

Page 45: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Conclusions

Current practice usually assigns load ratings based on evaluation of the superstructure

Load carrying capacity of the substructure rarely consideredA bridge load rating based on the superstructure alone could

cause either catastrophic or functional failureA methodology for assigning substructure and integrated

bridge load rating (IBLR) is developed Inventory substructure load rating should be based on

tolerable displacement (1” to 1.25”)Operating substructure load rating should be based on

settlement that would not cause structural damage or soil-foundation failure (2” to 2.25”)

Page 46: Integrated Bridge Load Rating Allowing Rational Assessment ... · Original (Geo and Structural) design methodology must be considered in performing IBLR analysis Reliable determination

Conclusions continued

The basic settlement criteria can be adjusted as necessary to accommodate special soil-foundation systems, foundation reuse, widening, construction sequence, etc.

Original (Geo and Structural) design methodology must be considered in performing IBLR analysis

Reliable determination of the embedment of pile foundation is a must for IBLR of UF bridges

For UF bridges, due diligence is needed to locate or establish basic data regarding the design and construction at the time the bridge was originally built