← 🔌 Engineering

🔌 Hydraulic Fracturing (2D)

Net driving pressure: —
Fracture network extent: —
Flow rate: —
Adjust the sliders · Rebuild to reseed the fracture network

🔌 Hydraulic Fracturing Mechanics (2D)

A 2D cross-section companion to the 3D fracking lab: the same threshold-and-branching fracture model, drawn as a flat side view so the pressure-vs-resistance relationship is easy to read at a glance.

🔬 What It Demonstrates

Injected fluid pressure must exceed the rock's resistance threshold (set by rock type) before any fracture growth occurs at all. Above that threshold, a branching fracture network fans out from each perforation cluster, its reach and branch density scaling with net pressure and rock brittleness — and proppant concentration determines how much of that network stays conductive.

🎮 How to Use

Pick a rock type, then raise injection pressure past its resistance threshold to trigger propagation. Watch the branching network grow from each perforation, adjust proppant concentration to see the fractures glow brighter as conductivity rises, and use pump rate to speed up or slow down the fluid particles travelling from the wellbore into the network.

💡 Did You Know?

Because fracture orientation is governed by the direction of the minimum principal stress in the rock, engineers can often predict which way underground fractures will grow before drilling even begins, just by mapping the regional stress field.