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Soil-Pile-Structure Results

ARG2 – Pile Diameter

ARG3 – Pile Thickness

ARG4 – Pile Length

In the analysis settings change the Solver Controls, Weak Springs to Off.

16.4. Soil-Pile-Structure Results

Soil-Pile-Structure interaction analysis results can also be obtained using a plugin to Excel. See Accessing Results using Excel in the Mechanical BEAMST User's Manual for installation requirements and how to obtain element and equation based results using the plugin.

Equation Results

Available equation results types are:

DISPLACEMENT

REACTION

Valid associated result components are numbers 1 to 6, being X, Y, Z, RX, RY, and RZ respectively.

Element results

The available element results are listed below. Each “surface” is the subsection, and when the results originate from a Splinter analysis initialized using the PILEGEN command, the element number is always 1 and the Structure used in forming the model name is the pile name entered via the StruPile argument. Components marked * are stored as character strings:

Type: PILE DISPLACEMENT

PILE REACTION

RESULTS COMDESCRIPTION

PONENT

SEC.POSN

Position down pile

X

X value

Y

Y value

Z

Z value

RX

RX value

RY

RY value

RZ

RZ value

Type:

PILE FORCE/MOMENT

RESULTS COMDESCRIPTION

PONENT

 

SEC.POSN

X

FXX

X force (axial)

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RESULTS COMDESCRIPTION

PONENT

 

FQY

Y shear force

FQZ

Z shear force

TXX

Torsional moment

MYY

Y bending moment

MZZ

Z bending moment

Type:

PILE STRESS

RESULTS COM-

DESCRIPTION

 

PONENT

 

 

 

SEC.POSN

 

Position down pile

SAX

 

Axial stress

 

SB

 

Bending stress

 

SXX.MAX

 

Maximum axial stress on section

Type:

API

WSD PILEED20

UC

 

API

LRFDPILEED1

UC

 

ISO

PILEED1 UC

 

RESULTS COM-

DESCRIPTION

 

PONENT

 

 

 

SEC.POSN

 

Position down pile

UC.AX+BN

 

Combined axial + bending UC

16.5. References

The following references are cited in this chapter:

1.Lymon C. Reese, William R. Cox and Francis D. Koop, “Analysis of Laterally Loaded Piles in Sand,” Paper No 2080, Offshore Technology Conference, 1974.

2.Hudson Mattock, “Correlations for Design of Laterally Loaded Piles in Soft Clay,” Paper No 1024 Offshore Technology Conference, 1970.

3.American Petroleum Institute, “Recommended Practice for Planning, Designing and Constructing Fixed Offshore Platforms,” 15th Edition ,1984.

4.V. N. Vijayvergiya, Load-Movement Characteristics of Piles, PORTS 77.

 

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