Overview
LAVA provides integrated design and analysis of continuous tie-down rod systems used with wood shear walls. During analysis, LAVA automatically selects and verifies the complete tie-down assembly, including the rod, take-up device, bearing plate, and coupler, while also evaluating the effect of the anchorage system on overall shear wall drift.
The tie-down system is designed to satisfy both strength and stiffness requirements. Material selection is performed automatically using the selected manufacturer database while considering wall geometry, constructability requirements, and user-defined deformation limits.
LAVA currently supports tie-down systems from:
Simpson Strong-Tie
Earthbound
MiTek
AutoTight
Design Process
When a model is analyzed, LAVA designs the tie-down system in the following sequence.
Select the required shear wall sheathing.
Select an appropriate tie-down rod.
Select a compatible take-up device (TUD).
Select a compatible bearing plate.
Select a compatible coupler between rod segments.
Verify system deformation and wall drift.
Each component is selected using the manufacturer's published capacities and compatibility requirements while considering the demands from the structural analysis.
Sheathing Selection
The required shear wall sheathing is selected first.
Selection considers:
Seismic Design Category
Wall location
Selected shear wall material
Constructability requirements
Required shear capacity
If no acceptable wall assembly is available, the wall is reported as “Wall Failed!” and it will report vmax > vallow →NG
Rod Selection
After the wall sheathing has been selected, LAVA determines the required rod.
Rod selection considers:
Required overturning tension
Selected rod grouping (fully threaded, high strength, etc.)
Wall size (2×4, 2×6 or 2×8)
Practical bore size through the framing
Coupler compatibility between levels
If an acceptable rod cannot be found, LAVA reports one of the following:
Rod Overstressed
Rod / Cavity Size Conflict
Take-Up Device Selection
The take-up device (TUD) is selected after the rod has been determined.
Selection considers:
Rod diameter
Required tensile capacity
Available travel
User-defined shrinkage allowance
User-defined fit-up allowance
Bearing Plate Selection
Bearing plates are selected based on:
Rod diameter
Take-up device size
Wall thickness
Bridge distance between posts
Bearing capacity
Coupler Selection
Couplers are selected automatically to connect rod segments between floors.
Selection considers:
Rod size above
Rod size below
Rod steel grade
Manufacturer compatibility
Stiffness Analysis
After the strength design is complete, LAVA evaluates the contribution of the tie-down system to overall wall deformation.
The following deformation components are included:
Shear deformation
Flexural deformation
Rod elongation
Take-up device deformation
Take-up device seating
Bearing plate crushing
Top plate crushing
Sill plate crushing
These components are combined to determine the total anchorage deformation, which is then included in the overall shear wall drift calculation.
If the calculated drift exceeds the allowable limit, LAVA automatically attempts to increase system stiffness by selecting stiffer wall assemblies, larger rods, or stiffer take-up devices while maintaining compatibility with the selected manufacturer database.
If no acceptable solution is found, Drift Limit Exceeded is reported.
Rod Run Summary
LAVA provides a rod run summary showing the selected components for every level of the structure. This can be found in the Calculation Log, Summary tab. This tab is available when it is enabled in the Log tab prior to running the analysis.
The report includes:
Shear Wall Name
Size (SW Mark)
Z0 Rod (Start end)
Z0 Lvl Cumulative Tension by level (lbs)
Z0 Lvl Cumulative Compression by level (lbs)
Z1 Rod (Finish end)
Z1 Lvl Cumulative Tension by level (lbs)
Z1 Lvl Cumulative Compression by level (lbs)
This summary allows the engineer to verify the complete load path from the roof to the foundation. This allow allows the engineer to share this information with the tie-down manufacturer.
