PPolySim OS
For Engineers · Slope Stability Kit

Slope Stability Kit for a canopy

Built for engineers using it for real design work. Go from concept to a running model in the browser, then scale to the cloud when needed. Simulate a canopy live below — adjust the inputs and watch it respond, right in your browser.

Soil Bearing Capacity (Terzaghi)Live
Allowable bearing pressure
400kPa
Allowable load ≈ 801 kN per metre of footing

Controls

Presets

Terzaghi's equation predicts the ultimate bearing capacity of a shallow footing as the sum of cohesion, surcharge, and self-weight terms, each with a bearing-capacity factor that grows sharply with the soil friction angle. Dividing by a factor of safety gives the allowable pressure. Educational tool, not a geotechnical design.

▶ Run in Python

Data Inspector

Nc30.1
Nq18.4
22.4
Ultimate qult1201 kPa

Governing equation

Reading this result: Mixed c-φ soil: all three terms contribute — deeper embedment and a wider footing both push the ultimate capacity higher.

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

Earthquake Magnitude & ShakingLive

Controls

Presets

Magnitude is logarithmic in amplitude but each unit releases about 32× more energy (E ∝ 10^1.5M). Shaking at a site falls off with distance through attenuation. Peak ground acceleration maps to the Modified Mercalli intensity people actually feel — a planning estimate, not a site-specific hazard analysis.

▶ Run in Python

Data Inspector

Energy6.31e+13 J
TNT equivalent15.1 kt
Peak accel.0.3 %g
IntensityIII-IV Light

Governing equation

Reading this result: 30 km out, an M6 quake attenuates to only ~0.3%g — intensity III-IV Light, felt but rarely damaging. Distance and the log falloff tame most of the 6.3e+13 J released.

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

Groundwater Well DrawdownLive

Controls

Presets

Pumping a well lowers the water table into a cone of depression. Under the Thiem steady-state solution the drawdown is s(r) = Q/(2πT)·ln(R/r): more pumping deepens the cone, higher transmissivity flattens it. Fundamental to well design, water supply, and contaminant capture.

▶ Run in Python

Data Inspector

Drawdown at well4.7 m
Drawdown at 50 m1.47 m
Radius of influence500 m

Governing equation

Reading this result: Drawdown is Q/(2πT)·ln(R/r): here it is about 4.7 m at the well and falls off logarithmically, so most of the depression sits in the first tens of metres.

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

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More with Slope Stability Kit

Frequently asked questions

Is this good for engineers?
Yes — this version of "Slope Stability Kit for a canopy" is framed for engineers using it for real design work. Go from concept to a running model in the browser, then scale to the cloud when needed.
Do I need to install anything?
No. It runs in any modern browser, free, with no account required.