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Rocscience

Rspile

Energy & Environment | Mining Software
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Product Overview

Rspile

Lateral & Axial Pile Analysis

Carry out lateral & axial analyses of various piles with the flexibility to design piles with multiple sections and model complex soil strata using boreholes.

Capacity Pile Analysis

Analyze Load and Bearing Capacity of both Driven and Bored piles. Driven pile analysis methods are based on Federal Highway software “Driven.” Bored pile analysis with several methods available for cohesionless soils, cohesive soils, and weak rock.

Grouped Pile Analysis

Analyze a group of piles connected by a cap. Design complex models of pile groups where each pile can be a different pile type, consisting of multiple sections.

Specifications

Axial Capacity of Driven Piles :

Adhesion types ; 

Adhesion for cohesive soils

Piles driven through soft clay

Piles driven through overlying

Sands or sandy gravel

Piles without different strata

User-defined adhesion

Calculated capacities ;

Restrike, driving, ultimate

Design considerations ;

Long and short-term scour

Soft compressible soils

Negative skin friction

Non-tapered pile types ;

Pipe—open and closed end

Concrete

H-Pile

Soil materials ;

Cohesive / cohesionless

Tapered pile types ;

Timber

Raymond uniform taper

Monotube

Axially Loaded Piles :

Axial resistance analysis ;

Max allowable axial displacement

Ultimate axial resistance

Pile top loading ;

Axial

Pile Types ;

Cylindrical

Rectangular

Pipe

Common sections

Tapered or non-tapered

Reinforced concrete

Prestressed concrete

Elastic or plastic

Soil materials ;

Elastic

API sand

API clay

User-defined

Drilled clay

Drilled sand

Coyle Reese Clay (driven)

Mosher Sand

Laterally Loaded Piles :

Additional loading ;

Loading by lateral soil movement

Transition zone for sliding soil in lateral resistance function

Lateral resistance function (multiple soil movement cases)

Advanced computation options ;

Stiffness matrix calculator

Pushover analysis

Pile length vs top deflection

Group analysis ;

Cap designer

Radial, rectangular, custom patterns

Pile toe loading ;

Shear resistance

Lateral resistance analysis

Max allowable lateral displacement

Ultimate lateral resistance

Pile top loading ;

Moment in X and Y

Shear in X and Y

Slope in X and Y

Rotational stiffness in X and Y

Deflection in X and Y

Axial load

Define any combination of loading

LRFD combinations

Pile types ;

Cylindrical

Rectangular

Pipe

Typical sections

Elastic and plastic

Reinforced concrete

Prestressed concrete

Pile with casing/core

Tapered or non-tapered

Soil materials ;

Elastic

Soft clay soil

Submerged stiff clay

Dry stiff clay

Sand

Weak rock

User-defined

API method for sand

Loess

Liquefied sand

Piedmont residual soils

Strong rock (vuggy limestone)

Modified stiff clay without free water

Silt (cemented C-Phi soil)

Soft clay with user defined J

Hybrid liquefied sand

Massive rock

Output ;

Displacement X and Y

Rotation X and Y

Beam shear force X and Y

Beam moment XY and YZ

Soil reaction force X and Y

Soil stiffness X and Y

P-Y curves with depth

Use any input parameters as random variables

Model Definition :

Boreholes to define stratigraphy

Definition of multiple and pattern piles

Additional Features :

Full 3D FEM pile engine

P-Y modification factors

T-Z modification factors

Q-Z modification factors

Static and cyclic loading options

Integration with Slide2

Export to Slide2

Export to Excel

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