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Retaining Wall Anchoring Solutions

Design Considerations for Anchored Walls

Factors that affect the performance of an anchored wall include the wall itself, the anchor tendon, the bond to the ground, structural connections between the elements, installation sequence, and groundwater conditions. Typical design challenges include:

  • Steeply sloping high lateral earth pressure
  • Hydrostatic groundwater pressure behind the wall
  • Traffic, building or equipment surcharge loads
  • Unacceptable wall deflection
  • Settlement behind the wall
  • Excavation-related ground loss during drilling
  • Varied soil or rock bond conditions along embedment
  • Collapsing boreholes
  • Water-bearing granular soils
  • Weak or creep-sensitive cohesive soils
  • Minimal clearance for anchor installation
  • Property-lines or other boundary restrictions
  • Buried utilities and conflict with existing foundations
  • Anchor group interaction effects
  • Insufficient free length
  • Insufficient anchor bond length
  • Insufficient grout placed
  • Loss of prestress
  • Creep
  • Loss of anchor head seating
  • Corrosion of prestressing steel
  • Sheathing damage or loss of encapsulation
  • Transfer of load into walers or wall panels
  • Movement of the wall during construction stages
  • Testing and lock-off procedures
  • Long-term inspection and maintenance considerations

The installed capacity of a ground anchor is NOT solely determined by the tensile strength of the steel tendon.

 

A Ground Anchor Is a Complete System

A retaining-wall ground anchor generally includes more than a steel bar or strand.

Anchor component Typical function
Tendon Carries tensile load
Bond length Transfers load through grout to the surrounding ground
Free length Allows tendon elongation during stressing
Primary grout Transfers load and provides part of the protection system
Sheathing or encapsulation Separates and protects specified tendon zones
Centralizers and spacers Maintain tendon position and grout cover
Anchor head Transfers tendon force to the wall or waler
Bearing plate Distributes force at the structural connection
Nut or wedge assembly Secures and locks off the tendon
Trumpet or transition protection Protects the tendon near the anchor head
Secondary grout or head protection Completes project-specified protection
Waler or structural connection Distributes anchor loads into the retaining wall

Only describe a product as a “complete ground-anchor system” when all required components, interfaces and testing documentation have been verified.

 

Wanfeng’s Retaining Wall Anchoring System

Wanfeng provides threaded steel tendons and anchoring hardware that can be used in a ground-anchor retaining wall system.

The threaded bar is designed to resist the required tensile load. The bonded length develops that load into good soil/rock behind the failure plane. The free length allows for movement when testing and stressing the tendon. The anchor head, bearing plate and waler distribute the locked-off load into the retaining wall structure.

Depending on the design, this system can integrate with many different types of walls including:

  • Soldier-pile and lagging walls
  • Sheet-pile walls
  • Secant-pile walls
  • Contiguous-pile walls
  • Diaphragm walls
  • Concrete retaining walls
  • Rock retaining walls
  • Walers and anchor beams
  • Shotcrete facings
  • Drainage structures
  • Underpinning systems
  • Instrumentation and monitoring

Functions of the System

A ground-anchor wall system can be designed to:

  • Resist lateral soil and hydrostatic pressure
  • Limit movement of the retaining wall
  • Move the applied load load beyond the active failure zone
  • Minimize internal bracing requirements
  • Maintain excavation access space
  • Support phased excavation
  • Attach the anchor tendon to the retaining wall structure
  • Provide predictable prestress levels
  • Allow for load testing and load lock-off
  • Allow for traceable material documentation

Engineering Disclaimer

Final determination of wall type, anchor angle, spacing, overall length, free length, bond length, test load, lock-off load, grout, corrosion protection and structural connection should be designed by or reviewed by professional geotechnical and structural engineers. The engineering design should include, but not be limited to:

  • Wall stability
  • Wall structural capacity
  • Ground-anchor pullout resistance
  • Tendon tensile capacity
  • Bond-zone
  • Overall stability
  • Wall/Ground deformation
  • Anchor group interaction
  • Creep
  • Hydrology / Groundwater
  • Seismic loading
  • Surrounding structures
  • Construction phasing
  • Durability

Wanfeng only supplies parts to meet specified drawings and does not set site specific anchor capacities, allowable lock-off load values or safe excavation criteria.

 

Ground Anchors, Soil Nails and Tie Rods

These terms should not be used interchangeably.

Characteristic Prestressed ground anchor Soil nail Tie rod
Typical behavior Active, prestressed reinforcement Generally passive reinforcement Structural tension member between defined connections
Load application Tested, stressed and locked off Resistance develops with ground deformation Loaded through structural movement or assembly
Grouting Defined free and bond lengths Commonly grouted along the installed length May not be ground-grouted
Typical wall connection Anchor head and waler or structural wall Nail head and reinforced facing Nuts, pins, clevises or structural plates
Typical spacing Project-specific, often wider than soil nails Usually closely spaced Determined by structural system
Field testing Verification, performance, proof and creep tests as specified Verification and proof tests as specified Structural testing where required
Primary design discipline Geotechnical and structural Geotechnical and structural Primarily structural, depending on application

Project drawings should clearly identify the intended component behavior.

 

Recommended Products

Threaded Ground-Anchor Bars

High strength threaded steel bars that can be used as the tendon of a project designed ground anchor.

Specifications

  • Required
  • Bar diameter
  • Total Length
  • Yield and Ultimate Load
  • Steel Grade

Optional

  • Free Length / Bond Length
  • Thread profile
  • Coupler compatibility
  • Corrosion protection detail

Coupled Anchor Bars

Sectional bars which are connected using compatible couplers where long anchor lengths, transport limits or installation access prevent the use of one-piece ground anchor tendons.

Specifications

  • Required
  • Bar diameter
  • Section Length
  • Coupler Dimensions
  • Connection Load

Optional

  • Thread Engagement
  • Location on Free / Bond Length
  • Steel Grade
  • Corrosion protection or coating details

Notes: Coupler strength and placement must be designed as part of the complete tendon assembly. The placement of a coupler should not occur automatically within a critical length without approval from the engineering team.

Anchor Bearing Plates

Steel plates which are used to transfer the force from a tendon into an approved anchor head, concrete waler or retaining-wall connection.

Specifications

  • Required
  • Dimensions
  • Plate Thickness
  • Hole Dia.
  • Steel Grade

Optional

  • Plate profile (corner radius, edges, etc.)
  • Bearing surface detail
  • Weld details
  • Surface treatment

Notes: Anchor plate size and thickness must be evaluated for bending/stresses and bearing pressure. Just because a plate fits in a wall anchor or onto a waler doesn’t mean it is adequate based on capacity or attachment details. A standard rock-bolt plate is not necessarily appropriate for use as a retaining wall anchor plate.

Anchor Nuts and Washers

Components that are thread-compatible with anchor bars to stress, secure, or lock-off installed anchors.

Specifications

  • Required
  • Thread Type and Size
  • Nut Dimensions
  • Steel Grade
  • Proof or Ultimate Load

Optional

  • Washer configuration
  • Bearing Surface
  • Locking Details
  • Coating

Centralizers and Spacers

Steel components used to maintain tendon position within the borehole and provide the minimum required grout cover.

Specifications

  • Required
  • Compatible Tendon Dia.
  • Compatible Borehole Dia.
  • Outside Dimensions
  • Material

Optional

  • Required Center-to-Center spacing
  • Method of Attachment
  • Minimum Grout-flow Clearance
  • Exposure requirement

Strand Tendons and Wedge Anchorages

Multi-strand prestressing strand may be specified if project loads, stressing lengths, or installation requirements dictate the use of a stranded tendon.

Specifications

  • Required
  • Strand Diameter
  • Number of Strands
  • Tendon Capacity
  • Wedge / Anchorage configuration

Optional

  • Detailing for Free Length Protection
  • Bond-Length Detailing
  • Trumpet configuration
  • Head Protection Details

Notes: Strand tendons, wedge assemblies, and multi-strand anchor heads should not be listed until Wanfeng’s manufacturing capability, system testing, and reference testing have been completed and verified.

Rock Anchors

Bars or cable reinforcement that can be tensioned to retain structures against competent rock.

Specifications

  • Required
  • Bar/Cable Dia.
  • Total Length
  • Yield/Breaking Load
  • Steel Configuration

Optional

  • Bond Length
  • Free Length
  • Bonded /Free Length Grout Details
  • Corrosion Protection

Notes: Rock anchorage does not negate the need to identify joints, assess fractures or faults, identify weakness due to weathering, or identify likely location of potential failure surface(s).

Waler and Connection Components

Custom connection components fabricated from steel to help distribute anchor forces into concrete retaining walls.

Possibilities

  • Waler connection plates
  • Anchor chairs
  • Bearing brackets
  • Stiffener plates
  • Head plates
  • Welded connection assemblies

Specifications

  • Component Dimensions
  • Steel Grade
  • Allowable Design Load
  • Welding details, if applicable

Notes: Fabricated wall anchor connections should not be proposed until approved connection drawings have been reviewed and manufacturing as well as welding/inspection capability is confirmed. Upload Connection Drawings

 

Retaining Wall Anchoring Selection Matrix

Typical wall or site condition Typical requirement System or products that may be relevant
Soldier-pile wall with available external anchor zone Staged lateral restraint Prestressed ground anchors with walers
Secant or diaphragm wall High-capacity wall connection Bar or strand anchors with engineered head details
Sheet-pile wall Distributed tieback support Anchors connected through walers or approved structural details
Existing concrete retaining wall Control of movement or increased loading Retrofit anchors only after wall and foundation assessment
Retaining wall founded against rock Anchorage into suitable rock mass Threaded rock anchors or strand tendons where designed
Deep excavation with open internal workspace External support without internal struts Ground-anchored wall where property rights allow
Anchor zone outside project boundary Legal and access constraint Easement, revised anchor layout or internal bracing
Loose water-bearing soil Borehole and grout control Specialist drilling, casing and grouting system
Cohesive soil with creep potential Time-dependent movement control Project-specific testing and creep acceptance criteria
Aggressive soil or groundwater Long-term corrosion resistance Verified multi-layer or encapsulated protection
Temporary retaining wall Defined construction-stage support Anchor components suited to the actual exposure period
Permanent retaining wall Long-term strength and durability Permanent anchor system with documented corrosion protection
High seismic or surcharge loading Increased structural and geotechnical demand Project-specific anchor and wall analysis
Inadequate external bond zone Alternative load path Internal struts, rakers or redesigned retaining system

Selection Note:

  • This matrix should be used as an initial guide only.
  • Ground anchors may not be appropriate or may require special consideration where:
  • There is no adequate bond zone behind potential failure surface
  • Property boundaries would be crossed by the anchors unless permission is obtained
  • Utilities or other foundations conflict with proposed alignment
  • Ground is not capable of supporting the borehole
  • Groundwater cannot be controlled during drilling and grouting operations
  • Creep of the anchor exceeds allowable limits
  • Retaining wall is not capable of distributing the anchor load
  • There is no adequate stressing access

 

Temporary and Permanent Ground Anchors

Design consideration Temporary anchor Permanent anchor
Service period Defined construction duration Full structure design life
Corrosion protection Based on actual exposure and specification Long-term verified protection system
Free-length protection Project-specific Durable and continuous protection
Bond-length protection Grout and additional protection as specified Designed for long-term ground exposure
Anchor-head protection Temporary or removable protection Durable, sealed and inspectable detail
Testing Project-specified verification and production testing Complete testing and permanent records
Monitoring Construction-stage requirements Long-term monitoring where specified
Replacement May be abandoned or destressed under an approved plan Replacement may be difficult or impractical

A construction delay may extend the actual exposure of a temporary anchor. Temporary status should not be used to justify unspecified materials or uncontrolled corrosion risk.

 

Corrosion Protection

Ground-anchors are vulnerable to corrosion as they are members under sustained tensile stress.

Corrosion protection may need to consider:

  • Steel
  • Surface of bar or strand
  • Lengths of tendon exposed (free length)
  • Lengths of tendon embedded (bond length)
  • Couplers
  • Sheathing joints
  • Centralizers
  • Anchor head details
  • Anchor head to trumpet details
  • Bearing plate thickness
  • Trumpet
  • Threads exposed
  • Grout zone
  • Drainage
  • Damage susceptibility during installation
  • Required design life

Protection methods can consist of:

  • Cement grout
  • Sheathing
  • Encapsulation
  • Epoxy coating
  • Hot dip galvanizing where applicable
  • Grease or corrosion-inhibiting compound
  • Sealed anchor- head protection
  • Redundant systems

Important Limitation

Note that coating the bar alone does not define a complete permanent-anchor corrosion protection system.

Avoid using statements such as “double corrosion protection” unless:

  • Complete assembly is defined
  • All transitions and joints are specified
  • Method is compatible with stressing and grouting
  • Design life and category of exposure are specified
  • Supporting documentation and test reports are available.

Replacement of a more protective system with a less protective system should be subjected to engineering approval.

 

Typical Installation and Test Sequence

The following is an example of a typical bar or strand anchor sequence:

  • Verify approved anchor location and angle.
  • Clear utilities, foundations and boundary restrictions.
  • Drill specified hole.
  • Insert tendon and approved protective materials.
  • Apply primary grout to required zone.
  • Allow grout to reach specified condition.
  • Complete necessary verification, performance or proof testing.
  • Assess creep and load–displacement response.
  • Load up and lock off accepted anchor.
  • Complete secondary grouting and anchor-head protection.
  • Log installed lengths and lock-off data.
  • Proceed with excavation or wall construction per approved sequence.

Actual construction procedures shall comply with the project specifications, installation Method Statement and acceptance criteria.

 

Ground-Anchor Testing

Ground anchors must be tested on site to verify installed performance as it is dependent on the ground, drilling and grouting conditions.

Verification Test

Verification testing is typically conducted prior to or during production work to evaluate:

  • Proposed drilling method
  • Grouting procedure
  • Bond-zone pullout resistance
  • Load–displacement behavior
  • Creep behavior
  • Design assumptions

Performance Test

Performance testing is typically conducted with incremental loading and unloading to evaluate:

  • Anchor capacity
  • Elastic movement
  • Apparent free length
  • Residual movement
  • Creep behavior

Suitability of the production installation method

Proof Test

Proof testing is typically conducted by loading a production anchor with a project defined loading cycle to evaluate:

  • Ability to sustain the specified test load
  • Movement under load
  • Creep behavior
  • Acceptance criteria prior to lock- off

Lock-Off

Successful proof tests will then be stressed to the project specified lock- off load and secured.

Wanfeng will not define field test loads, acceptance limits, test frequency or lock-off loads.

 

Fabrication & Quality Assurance Program

Raw Materials Verification Inspection

  • Review of material certificate
  • Steel grade check
  • Heat-number check
  • Chemical-analysis check, if required
  • Incoming dimension check
  • Incoming surface-defect check

Tendon and Thread Verification Inspection

  • Bar or strand diameter
  • Total length and/or section lengths
  • Straightness
  • Thread form
  • Thread spacing
  • Threaded length
  • Thread gage verification
  • Nut or coupler fit-up

Mechanical and Connection Tests

As required and specified in the contract documents:

  • Yield-test
  • Ultimate tensile-test
  • Elongation-test
  • Full-bar tensile-test
  • Strand-break-load-test
  • Coupler tensile-test
  • Nut proof-load-test
  • Bearing-plate-load test
  • Fabricated connection-test
  • Weld check

Dimensional Inspection

  • Anchor-plate dimension check
  • Plate thickness check
  • Hole diameter check
  • Coupler dimension check
  • Nut and washer dimension check
  • Centralizer dimension check
  • Fabricated connection dimensional check

Surface Preparation and Coating Inspection

  • Surface preparation
  • Coating thickness
  • Coating continuity
  • Fit of threads after coating
  • Sheathing or encapsulation check, if furnished
  • Allowable coating repairs
  • Packaging

Identification and Final Inspection

  • Heat or batch number identification
  • Marking of product
  • Review of inspection records
  • Quantity check
  • Drawing and purchase-order review
  • Packaging inspection
  • Shipping-document check

 

Factory Testing and Site Testing

Test or inspection Typical location Purpose
Bar tensile test Factory or laboratory Verify tendon material properties
Strand breaking-load test Factory or laboratory Verify strand capacity
Coupler tensile test Factory or laboratory Verify connection capacity
Nut proof-load test Factory or laboratory Verify threaded nut performance
Bearing-plate inspection Factory Verify material and dimensions
Coating inspection Factory Verify specified protection
Anchor verification test Site Assess bond resistance and installation method
Performance test Site Assess installed anchor behavior
Proof test Site Verify production-anchor performance
Creep test Site Assess time-dependent movement
Wall monitoring Site Assess retaining-wall movement

Factory tendon strength must not be presented as proof of installed ground-anchor capacity.

 

  • Custom Manufacturing
  • Feasibility for manufacturing approved anchor schedules and connection drawings can be reviewed by Wanfeng. Some items that may be customized are:
  • Threaded bar diameter
  • Total and cut length
  • Free- and bond-length configuration
  • Thread profile and pitch
  • Steel specification
  • Yield and tensile strength
  • Coupler size
  • Anchor-plate size and thickness
  • Nut and washer configuration
  • Centralizer size
  • Waler connection plates
  • Anchor chairs and brackets
  • Hot dip galvanizing
  • Epoxy coating or specified paint coatings
  • Product marking
  • Heat/batch numbers
  • Anchor by anchor packaging
  • Inspection and test documentation

All sizes, loads, material, tolerances, and protection requirements must be confirmed on approved drawings or technical specifications prior to production.

 

Inspection & Monitoring

Items that may be included in the project inspection and monitoring plan are:

  • Conditions of anchor- heads
  • Settlement of nuts or wedges
  • Deformation of bearing-plates
  • Deformation of walers
  • Corrosion or leakage of water
  • Loss of pile cap cushions
  • Movement of wall
  • Settlement of ground
  • Cracking of ground
  • Change in anchor loads
  • Piezometric levels
  • Performance of drains
  • Damage from adjacent construction
  • Movement after rain or earthquake

Warning Indicators

  • Unusual movement of wall
  • Continued or increasing settlement behind wall
  • Movement of anchor- heads
  • Loose nuts
  • Bending of plates
  • Distortion of walers
  • Cracking near anchor heads
  • Water seepage at anchor penetrations
  • Loss of lock- off load
  • Unusual creep
  • Corrosion of tendons
  • Loss of ground during drilling
  • Not meeting site- test requirements

Anchors that fail or are not compliant should be assessed through the project’s approved corrective-action plan.

 

FAQ

Q1: What is an anchored retaining wall?
A: Anchored retaining walls utilize prestressed ground anchors to convey lateral wall loads into a competent soil or rock mass (bond zone) located behind the retaining wall. Anchors installed are designed to function with the wall, walers, drainage and foundations as a system.

Q2: What is the difference between a ground anchor and a soil nail?
A: Generally, ground anchors are actively prestressed, have defined free lengths and bond lengths, and are locked off against the wall. Soil nails are typically passive and are fully grouted, developing resistance as the ground deforms.

Q3: Can a threaded bar by itself be considered a complete ground anchor?
A: No. Additional considerations could include a bond zone, free-length protection, grout, couplers, centralizers, anchor head, bearing plate, trumpet, lock-off component(s), and corrosion protection.

Q4: How do you verify ground- anchor capacity?
A: Installed anchors are tested on site to confirm design through verification testing, performance testing, proof testing or creep testing as required. Ground bond and installed behavior can be assessed through these tests, which cannot be determined from factory testing of steel.

Q5: What is meant by anchor lock- off load?
A: This refers to the load at which a properly accepted anchor is locked off against the retaining structure after stressing has occurred. The engineer of the project must specify this value.

Q6: Can ground anchors go across a property line?
A: No, unless the legal right to do so is acquired through easements and permits. If required to stay within your property line for external anchors, then an internal bracing system or alternative retaining system will need to be designed.

Q7: What types of corrosion protection are available?
A: Corrosion protection can consist of grout, galvanizing, epoxy coatings, sheathing, encapsulation, corrosion inhibiting compounds and protected anchor heads. Many permanent systems utilize multiple types of corrosion protection.

Q8: Can Wanfeng manufacture from anchor drawings?
A: Yes, Wanfeng has the ability to review threaded bars, couplers, nuts, plates, centralizers and fabricated connection drawings to determine if the part(s) can be manufactured. However, the entire anchor and wall design is the responsibility of the engineer of record.

 

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