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Use case · powered by Roof Truss Analyzer

Roof Truss Analyzer for a treehouse platform

Simulate a treehouse platform live in your browser. This runs the real Roof Truss Analyzer solver — adjust the inputs, watch it respond instantly, and export the result. No install, no account.

FEA — 2D Truss StudioLive

Controls

A finite-element truss under a tip load. Members are colored by axial force; the shape shows the (scaled) deformation.

Presets

▶ Run in Python

Data Inspector

Nodes7
Members11
Solvesingular
Max displacement0.000
Max axial force0.0

Governing equation

Reading this result: A 20-unit tip load drives a peak member force of 0.0. Linear FEA is linear: double the load and both the deflection and every member force double exactly. The 20x slider only magnifies the true (tiny) displacement so you can see it.

Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.

2

Column Buckling

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Column Buckling (Euler)Live

Controls

Presets

A slender column fails not by crushing but by buckling sideways at the Euler critical load Pcr = π²EI/(KL)². The effective-length factor K depends on the end restraints — fixing both ends quadruples the capacity versus pinned. Educational tool, not a substitute for code-based design.

▶ Run in Python

Data Inspector

Critical load Pcr2193 kN
Effective length3.00 m
Slenderness KL/r52
Critical stress731 MPa

Governing equation

Reading this result: Intermediate slenderness (KL/r = 52): buckling and yielding compete, so design codes blend the two rather than trusting Euler alone.

Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.

3

Beam Deflection

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Beam Deflection & BendingLive

Controls

Presets

Euler-Bernoulli theory relates a beam's deflection and internal moment to its load, span, and flexural rigidity EI. Deflection grows with the cube or fourth power of span, which is why doubling a span is far worse than doubling the load. Educational tool — not a substitute for a stamped structural design.

▶ Run in Python

Data Inspector

Max deflection1.30 mm
Max moment12.5 kN·m
Span/deflectionL/3840

Governing equation

Reading this result: At L/3840 this beam clears the usual L/360 serviceability limit, so strength (not deflection) is likely to govern the design.

Runs locally in your browser — free forever. Scale to the cloud when reality gets heavy.

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About this simulation

The full Roof Truss Analyzer tool models a treehouse platform with the same numerics engineers and scientists use — running entirely client-side. Change any parameter and the result updates in real time, so you can build intuition, check a design, or teach the concept without spreadsheets or installs.

More you can do with Roof Truss Analyzer

Other ways to simulate a treehouse platform

Frequently asked questions

How do I simulate a treehouse platform?
Open this page and use the live Roof Truss Analyzer tool below — set your inputs and the simulation runs instantly in your browser using real numerics. No install, no account needed.
Is it free?
Yes. The simulation runs free in your browser. A one-time unlock or a Pro plan adds advanced parameters, saved presets, data import, and clean exports.
Can I use my own numbers?
Absolutely — every input is adjustable, and with data import you can drive a treehouse platform from your own measurements.