Features enhanced automated non-circular search methods to identify the critical failure surface. 4. Rocscience UnWedge 3.0: Underground Excavation Stability
Integrates geotextiles, soil nails, tiebacks, rock bolts, and micro-piles into the stability equations.
Rocscience Geotechnical Suite Overview Geotechnical engineers globally rely on these specialized applications to analyze rock and soil behavior, evaluate structural risks, and design safe civil and mining infrastructures. 1. Dips: Advanced Stereonet Analysis
Engineers rely on Settle3D v2.0 when designing mat foundations, large bridge piers, highway embankments, and earth dams where differential settlement could compromise structural integrity. This public link is valid for 7 days
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Designs pattern bolting, shotcrete layers, and end-anchored cables to stabilize hazardous wedges.
Processes oriented core data, correcting for borehole deviation and trend. Engineering Application Simulates the effects of pattern bolting
State the problem: Many projects involve both soil and rock, requiring simultaneous analysis of foundation settlement and slope/tunnel stability. Primary Function Key Feature (in version listed) Dips Stereonet Analysis
The program calculates the factor of safety for each potential wedge and allows for the design of bolt support systems to stabilize them.
Simulates the effects of pattern bolting, shotcrete, and concrete linings to stabilize failing wedges. Processes oriented core data
Understanding what these specific versions offer helps professionals and students leverage their analytical power for real-world applications.
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