Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and...

77
1 of 85 Arun Bhimani, S.E. President Liftech Consultants Inc. Crane Loads & Wharf Structure Design: Putting the Two Together AAPA Facilities Engineering Seminar January 2006 – Jacksonville, Florida Erik Soderberg, S.E. Principal Liftech Consultants Inc. www.liftech.net

Transcript of Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and...

Page 1: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

1 of 85

Arun Bhimani, S.E.PresidentLiftech Consultants Inc.

Crane Loads & Wharf Structure Design:Putting the Two TogetherAAPA Facilities Engineering SeminarJanuary 2006 – Jacksonville, Florida

Erik Soderberg, S.E.PrincipalLiftech Consultants Inc.www.liftech.net

Page 2: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

2 of 85

Crane Size Growth:1st Container Crane & Jumbo Crane

Page 3: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

3 of 85

Crane Service Wheel LoadsWaterside Operating Wheel Loads

Year Manufactured

Whe

el L

oad

(t)

0102030405060708090

100

1960 1970 1980 1990 2000

Page 4: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

4 of 85

Crane LoadsCrane loads increasingCodes becoming more complexConsequences of misapplication more severeChance of engineering errors increasing

Page 5: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

5 of 85

Presentation OutlineThe Problem – Overview Wharf Designer’s PerspectiveCrane Designer’s PerspectivePutting the Two TogetherQ&A and Feedback

Page 6: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

6 of 85

The Problem – Overview

Crane Purchaser

WharfDesigner

CraneSupplier

PortConsultant

Page 7: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

7 of 85

Crane Purchaser DifficultiesPurchaser specified

“Allowable wheel load: 200 kips/wheel”

Suppliers submitSupplier A 180 k/wheelSupplier B 200 k/wheelSupplier C 220 k/wheel

Which suppliers are compliant?

Page 8: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

8 of 85

Crane Supplier DifficultyPurchaser specified

Allowable wheel load: 200 kips/wheel

In some cases, linear load (kips/ft)

Not definedOperating or out-of-service?

Unfactored or factored?

Wind profile?

Increase for storm condition?

Page 9: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

9 of 85

Wharf Designer DifficultyClient provides limited crane load data

No loading pattern

No basis given – Unfactored or factored?

Same loads given for landside and waterside

No details of wind or seismic criteria

Page 10: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

10 of 85

Wharf Designer Perspective

Page 11: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

11 of 85

Wharf Designer PerspectiveCodes and Design Principle

Crane Girder Design

Design for Tie-down Loads

Crane Stop Design

Seismic Design Considerations

Page 12: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

12 of 85

Codes and Design Principle

Page 13: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

13 of 85

Design Codes & Standards Crane

FEM, DIN, BS, AISC …, Liftech

Wharf StructuresACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and

Other StructuresAISC Steel Construction

Manual

Page 14: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

14 of 85

Design Principle - Wharf Structure Design

Required Strength ≤ Design Strength

Required Strength = ∑ Service Loads * Load Factors

Design Strength = Material Strength * Strength Reduction Factor Ф

Load Resistance Factored Design (LRFD)

Page 15: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

15 of 85

ACI 318

Load Factors Concrete Ф FactorsTen0.900.90

Comp Shear0.75/.7

00.70/.65

0.850.75

D L Wto 2002 1.4 1.7 1.32002+ 1.2 1.6 1.6*

* 1.3 if directionality factor is not included

Load Factors & Ф Factors

Page 16: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

16 of 85

Generally use service loads

Factor of safety typically 2.0 for operating

1/3 increase for storm wind or overload

Design Principle – Soil CapacityAllowable Stress Design

Page 17: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

17 of 85

Crane Girder Design

Page 18: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

18 of 85

Required Crane Geometry DataSill BeamTie-downs

Stowage pin

Bumper

(n-1) S

C craneLn = number of wheels per cornerS = average wheel spacing

Page 19: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

19 of 85

Typical Wheel Loading Geometry

Typical Wheel Spacing

7 at 5’

9’ 7 at 5’

40’ 4’ 40’Recommended Wheel Design Load Geometry

Page 20: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

20 of 85

Dead Loads and Live LoadsWharf LoadsD – Wharf structure self weightL – Wharf live load, includes containers and yard equipment (does not control)

Crane Loads (ASCE 7-05)D – Weight of crane excluding lifted loadL – Lifted load or rated capacity

Page 21: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

21 of 85

ACI Load Factors – Crane Loading

ACI 318 Load FactorsYear D L Compositeto 2002 1.4 1.7 1.452002+ 1.2 1.6 1.30

Some designers treat crane dead load as live load and use the 1.6 factor. This results in 23% overdesign; 1.6 / 1.3 = 1.23.

Page 22: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

22 of 85

Example Combination Table: Service Wheel LoadsMode Operating Stowed

WOP1 WOP2 WOP3 WOP4 WS1 Dead Load DL 1.0 1.0 1.0 1.0 1.0 Trolley Load TL 1.0 1.0 1.0 1.0 1.0 Lift System LS 1.0 1.0 1.0 1.0 Lifted Load LL 1.0 1.0 1.0 Impact IMP 0.5 Gantry Lateral LATG 1.0 Op. Wind Load WLO 1.0 1.0 Stall Torque Load STL 1.0 Collision Load COLL 1.0 Storm Wind Load WLS 1.0 Earthquake Load EQ

50 x S 70 x S Allowable Wheel Loads (tons/wheel)

LS WS 65 x S 90 x S

S = Average spacing, in meters, between the wheels at each corner.Example: S = 1.5 m, Allowable LS Operating = 50 t/m * 1.5 m = 75 t/wheel

Page 23: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

23 of 85

Example Combination Table: Factored Wheel LoadsMode Operating Stowed

WOP1 WOP2 WOP3 WOP4 WS1 Dead Load DL 1.2 1.2 1.0 1.0 1.2 Trolley Load TL 1.2 1.2 1.0 1.0 1.2 Lift System LS 1.2 1.2 1.0 1.2 Lifted Load LL 1.6 1.6 1.0 Impact IMP 0.8 Gantry Lateral LATG 0.8 Stall Torque Load STL 1.0 Collision Load COLL 1.0 Storm Wind Load WLS 1.6 Earthquake Load EQ

60 x S 80 x S Allowable Wheel Loads (tons/wheel)

LS WS 75 x S 100 x S

S = Average spacing, in meters, between the wheels at each corner.Example: S = 1.5 m, Allowable WS Storm = 100 t/m * 1.5 m = 150 t/wheel

Page 24: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

24 of 85

Tie-down Design

Page 25: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

25 of 85

Multiple Tie-downs at a Corner

Uneven tie-down forces

Page 26: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

26 of 85

Causes of Uneven Distribution Some reasons why forces are not evenly distributed:

Crane deflection

Contruction tolerances

Wharf pins not centered

Links not perfectly straight due to friction

Undeflected Shape

Deflected Shape

Page 27: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

27 of 85

Tie-down LoadsManufacturers typically provide the service corner uplift force

Needed data:

Factored corner uplift force

Distribution between tie-downs

Direction of force (allow for slight angle)

Page 28: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

28 of 85

Crane Stop Design

Page 29: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

29 of 85

Bumper Load Provided by Manufacturer

Rated Bumper ReactionBumpers sized for collision at maximum gantry speed

Does not address runaway crane

H

0

5

1 0

1 5

2 0

2 5

3 0

3 5

4 0

-1 4 9 1 4 1 9 2 4

Displacement

HV slow

V gantryV runaway

crane

Displacementmetering pin

gas

oil

Page 30: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

30 of 85

H= maximum load that can develop, i.e. the load at which the crane tips.

D = crane weight

H = approximately 0.25 x D per stop

Recommended Crane Stop Design Load

H

D

DH

Tipping Force

Stability Stool

Page 31: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

31 of 85

Wharf Seismic Design – Crane LoadingThe mass of typical jumbo A-frame cranes can be ignored

For certain wharves and cranes, a time-history analysis may be necessary

Large, short duration wheel loads can be ignored

Localized rail damage may occur

The crane may derail

Page 32: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

32 of 85

Crane Designer Perspective

Page 33: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

33 of 85

Crane Designer Perspective

Basic LoadsStorm Wind LoadLoad Combinations and FactorsTie-down Loads

Page 34: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

34 of 85

Basic Loads

Page 35: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

35 of 85

Dead and Live Loads

DL: Crane structure weightTL: Trolley structure weightLS: Lift System Weight

LL: Rated container load

Dead Loads Live Loads

Crane

Rated Load

Lift System

Trolley

Page 36: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

36 of 85

Inertial LoadsIMP: Vertical impact due to hoist

acceleration

LATT: Lateral due to trolley acceleration

LATG: Lateral due to gantry acceleration

Page 37: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

37 of 85

Overload

COLL: Collision

SNAG: Snagging headblock

STALL: Stalling hoist motors

Normally do not control

Page 38: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

38 of 85

Environmental Loads

WLO: Wind load operating (In-Service)

WLS* : Wind load storm (Out-of-Service)

EQ: Earthquake load

*Often a major source of discrepancies

Page 39: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

39 of 85

Wind Load, Out-of-Service

Page 40: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

40 of 85

WLS: Out-of-Service WindWind Force = ∑A x Cf x qz

A = Area of crane elementCf = Shape coefficient (including shielding)

qz = Dynamic pressure, function of:

Mean recurrence interval (MRI)

Gust duration

, where Vref is a location-specific, code-specified reference wind speed

Exposure (surface roughness)

2refV Need to

clearly specify

From wind tunnel testing

Page 41: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

41 of 85

Shape Coefficient, Cf

Empirical values: FEM, BSI, etc.

Wind tunnel tests are more accurate

Boundary layer

Angled wind effects

Shielding effects

Page 42: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

42 of 85

Angled Wind

0 45 90 135 180Rea

ctio

n

Wind Direction, Degrees

Wind Tunnel Test Liftech Equations

Fx Fz

FxFz

Page 43: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

43 of 85

WLS: Mean recurrence interval (MRI)Wind Force = ∑A x Cf x qz

A = Area of elementCf = Shape coefficient (including shielding)

qz = Dynamic pressure, function of:

Mean recurrence interval (MRI)

Gust duration

, where Vref is a location-specific, code-specified reference wind speed

Exposure (surface roughness)

2refV Need to

clearly specify

From wind tunnel testing

Page 44: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

44 of 85

Mean Recurrence Interval

Years in OperationMRI 1 10 25 50

.10 .99

.87

.64

.39

.04

.02

10010 yrs

.01

.64

.34

.18

.10

.93 .99997

25 yrs .64 .9850 yrs .40 .87100 yrs .22 .64

Probability of Speed Being Exceeded

Example:Chance of 50-yr wind being exceeded in 25 years: 40%

Page 45: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

45 of 85

WLS: Gust durationWind Force = ∑A x Cf x qz

A = Area of crane elementCf = Shape coefficient (including shielding)

qz = Dynamic pressure, function of:

Mean recurrence interval (MRI)

Gust duration

, where Vref is a location-specific, code-specified reference wind speed

Exposure (surface roughness)

2refV Need to

clearly specify

From wind tunnel testing

Page 46: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

46 of 85

Gust Duration

Page 47: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

47 of 85

Wind Speed vs. Gust DurationV t

/ Vho

ur

Gust Duration (seconds)Ratio of probable maximum speed averaged over “t” seconds to hourly mean speed. Reference, ASCE 7-05.

( )

( )46.1

52.104.11

min103

min103

sec3

min10min103

VV

VV

VV

VV

VVhourly

hourly

=

⎟⎠⎞

⎜⎝⎛=

⎟⎟⎠

⎞⎜⎜⎝

⎛⎟⎟⎠

⎞⎜⎜⎝

⎛=

Example: converting 10-min speed to 3-sec speed

1.04

1.52

Page 48: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

48 of 85

Code Gust DurationsCode definitions of basic wind speed

Code Gust Duration MRI

EN 1991-1-4

10 min 50 yrs

FEM 1.004 10 min 50 yrs

ASCE 7-02 3 sec 50 yrs

HK 2004 3 sec 50 yrs

Page 49: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

49 of 85

Typical Pressure Profiles

Shape of profile depends on surrounding surface roughness

0

25

50

75

100

125

150

175

200

500 1000 1500 2000Wind pressure, Pa

Hei

ght,

m

Smooth gradient

Stepped profile

Page 50: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

50 of 85

Variation in WLS

Variable Variation Effect on V Effect on F *7.5% 15.6%

113%

10-20%

46%

5-10%

MRI 25 to 50 yrsGust duration

3 sec to 10 min

Profile Open terrain to ocean exposure

*See later slides for effect on calculated tie-down load!

Page 51: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

51 of 85

Recommendations for Specifying WLS

Return Period Use 50-yr MRIBasic wind speedGust duration Use local civil codeProfileOther factorsShape coefficients Wind tunnel tests

Do not mix and match between codes for pressure and load factors !

Page 52: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

52 of 85

Corner Reactions – Angled Wind

Do not use spreadsheet !

Use frame analysis program

Frame stiffness is significant to reactions

Page 53: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

53 of 85

Load CombinationsCrane Design

Page 54: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

54 of 85

Load Combinations

Load combinationsOperatingOverloadStorm wind (out-of-service)

Design approaches Generally Allowable Stress Design (ASD)

Page 55: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

55 of 85

Operating Condition Loads

DL: Crane weight*

LL: Rated container load

IMP & LAT: Inertial loads

WLO: Wind load, in service

*Excluding Rated Load

Page 56: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

56 of 85

Out-of-Service & Overload

DL: Crane weight*

WLS: Wind load storm (out-of-service)

Overload Conditions (in and out-of-service)

*Including trolley and lift system

Page 57: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

57 of 85

RecommendationsRequesting crane wheel load data

Specify wind criteriaAsk for basic loadsCombine per ACI load factors

Requesting crane bidsProvide factored load tablesAsk to fill in tablesSpecify allowable factored loads

Page 58: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

58 of 85

Tie-down Loads

Page 59: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

59 of 85

Tie-Down Failures

Page 60: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

60 of 85

Wind Load & Crane Reactions

FD

wind

Fstow pin

F tie-down

Fgantry

AB

Page 61: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

61 of 85

Error in Calculated Tie-down Force

MomentRightingMomentgOverturnin

BD

hFwind ==

2

γ

( ) ( )1

11

21

211

,

,

−−+

=

⎥⎦⎤

⎢⎣⎡ −

⎥⎦⎤

⎢⎣⎡ −+

γeBDhF

A

BDhFeA

FF

Wind

Wind

CalculatedTiedown

ActualTiedown

Error in calculated tie-down force:if “e” = error in wind force,

DFwind

Fstow pin

Ftie-down

Fgantry

AB

Ratio of moments:

Page 62: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

62 of 85

Error in Tie-down ForceTi

edow

n Fo

rce

Rat

io(A

ctua

l/Cal

cula

ted)

, Overturning Moment / Righting Momentγ

0

1

2

3

4

5

1 2 3

20% error in V

10% error in V

5% error in V

No error in V

Page 63: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

63 of 85

Example:

Error in calculated tie-down force = 74% !

Tied

own

Forc

e R

atio

(Act

ual/C

alcu

late

d)

, Overturning Moment / Righting Momentγ

0

1

2

3

4

5

1 2 3

20% error in V

10% error in V

5% error in V

No error in V

Error in wind speed = 10%; γ = 1.4Error in wind pressure = 21%

Page 64: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

64 of 85

Stability Load Factors

Load FactorACI

0.90.91.3*

BSI FEMDead Load 1.0 1.0TL + LS 1.0 1.0Wind Load, 50-year MRI

1.2 1.2

* 1.6 with ASCE 7-02 “directionality factor”

Page 65: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

65 of 85

Uplift: Factored vs. Service

Service FactoredLoad Load

Factor

Dead Load -500 x 0.9 =

x 1.3 =

-450

Wind Load +450 +585Calculated Uplift -50 +135

“No Uplift” “Uplift”

Page 66: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

66 of 85

Putting the Two Together

Page 67: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

67 of 85

Problem RecapCrane supplier and wharf designer work with incomplete and inconsistent data

Reasons:

Crane supplier generally uses Service Load approach

Wharf designer generally uses Factored Load approach

Neither knows what basis the other uses

Page 68: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

68 of 85

Solution

Page 69: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

69 of 85

Missing

Link

Crane Purchaser

WharfDesigner

CraneSupplier

Port

Crane purchaser provide or facilitate detailed information

Page 70: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

70 of 85

Obtain From Wharf DesignerAssumed wheel arrangement

Service or factored

Load factors

Load combinations for operating, overload, and out-of-service conditions

Complete wind criteria

Allowable wheel loads, kips/ft** Crane supplier tends to provide kips/wheel

Page 71: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

71 of 85

Example Combination Table: Service Wheel LoadsMode Operating Stowed

WOP1 WOP2 WOP3 WOP4 WS1 Dead Load DL 1.0 1.0 1.0 1.0 1.0 Trolley Load TL 1.0 1.0 1.0 1.0 1.0 Lift System LS 1.0 1.0 1.0 1.0 Lifted Load LL 1.0 1.0 1.0 Impact IMP 0.5 Gantry Lateral LATG 1.0 Op. Wind Load WLO 1.0 1.0 Stall Torque Load STL 1.0 Collision Load COLL 1.0 Storm Wind Load WLS 1.0 Earthquake Load EQ

50 x S 70 x S Allowable Wheel Loads (tons/wheel)

LS WS 65 x S 90 x S

S = Average spacing, in meters, between the wheels at each corner.Example: S = 1.5 m, Allowable LS Operating = 50 t/m * 1.5 m = 75 t/wheel

Page 72: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

72 of 85

Example Combination Table: Factored Wheel LoadsMode Operating Stowed

WOP1 WOP2 WOP3 WOP4 WS1 Dead Load DL 1.2 1.2 1.0 1.0 1.2 Trolley Load TL 1.2 1.2 1.0 1.0 1.2 Lift System LS 1.2 1.2 1.0 1.2 Lifted Load LL 1.6 1.6 1.0 Impact IMP 0.8 Gantry Lateral LATG 0.8 Stall Torque Load STL 1.0 Collision Load COLL 1.0 Storm Wind Load WLS 1.6 Earthquake Load EQ

60 x S 80 x S Allowable Wheel Loads (tons/wheel)

LS WS 75 x S 100 x S

S = Average spacing, in meters, between the wheels at each corner.Example: S = 1.5 m, Allowable WS Storm = 100 t/m * 1.5 m = 150 t/wheel

Page 73: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

73 of 85

Ask Crane Supplier ForWheel arrangement

Wheel loads for individual loads

Combined wheel loads for operating, overload, and out-of-service conditions

Complete wind criteria used and basis for shape factors

Individual and corner factored loads for tie-downs including direction of loading

Page 74: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

74 of 85

Example Design Basic Load Table Wharf Designer needs from Crane

Supplier

Page 75: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

75 of 85

Recap

Obtain detailed crane and wharf design dataStick to one crane design codeStick to one wharf design codeUse consistent design basis

Facilitate communication

Page 76: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

76 of 85

Q & A

Page 77: Crane Loads & Wharf Structure Design: Putting the Two …Wharf Structures ACI 318 Building Code and Commentary ASCE 7-05 Minimum Design Loads for Buildings and Other Structures AISC

77 of 85

Thank you

Crane Loads & Wharf Structure Design:Putting the Two Together

This presentation will be available for download on Liftech’s website:

www.liftech.net

Arun Bhimani, S.E.PresidentLiftech Consultants Inc.www.liftech.net

Erik Soderberg, S.E.PrincipalLiftech Consultants Inc.