| Step | Rocscience Tool | Action | |------|----------------|--------| | 1 | (RS2/Phase2) | Define fracture density, orientation, size distribution. | | 2 | Linkage Settings (Pre‑processor) | Set Δa, θₘₐₓ, Lₗᵢₙₖ. | | 3 | Generate Network | Click Generate – the software automatically tags intersecting cracks. | | 4 | Link Identification | The Link Detector runs a nearest‑neighbour search (k‑d tree) and creates bridge elements where criteria are satisfied. | | 5 | Visualization | Turn on Crack‑Link Layer – colour‑code by link length or by calculated K. | | 6 | Analysis | Run a static or dynamic analysis; the model updates stresses on each bridge element at every increment. | | 7 | Post‑Processing | Export link geometry to CSV for GIS overlay or to a .txt file for probabilistic scripts. |

Rocscience Slide3 Crack Link Link Jun 2026

| Step | Rocscience Tool | Action | |------|----------------|--------| | 1 | (RS2/Phase2) | Define fracture density, orientation, size distribution. | | 2 | Linkage Settings (Pre‑processor) | Set Δa, θₘₐₓ, Lₗᵢₙₖ. | | 3 | Generate Network | Click Generate – the software automatically tags intersecting cracks. | | 4 | Link Identification | The Link Detector runs a nearest‑neighbour search (k‑d tree) and creates bridge elements where criteria are satisfied. | | 5 | Visualization | Turn on Crack‑Link Layer – colour‑code by link length or by calculated K. | | 6 | Analysis | Run a static or dynamic analysis; the model updates stresses on each bridge element at every increment. | | 7 | Post‑Processing | Export link geometry to CSV for GIS overlay or to a .txt file for probabilistic scripts. |

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