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Rocscience Dips v6.008 Software
 
Rocscience Dips v6.008 portable

Rocscience Dips v6.008

Dips version 6.0 has finally arrived, a major new upgrade to our popular stereonet analysis program. New features in Dips 6.0 include a comprehensive kinematic analysis toolkit for planar, wedge and toppling analysis; significant improvements to the user interface and graphical interactivity; dip vector and intersection plotting; fuzzy cluster analysis and much more.


Dips is designed for the interactive analysis of orientation based geological data. The program is capable of many applications and is designed for the novice or occasional user, and for the accomplished user of stereographic projection who wishes to utilize more advanced tools in the analysis of geological data.


Dips allows the user to analyze and visualize structural data following the same techniques used in manual stereonets. In addition, it has many computational features, such as statistical contouring of orientation clustering, mean orientation and confidence calculation, cluster variability, and qualitative and quantitative feature attribute analysis.


Dips is designed for the analysis of features related to the engineering analysis of rock structures, however, the free format of the Dips data file permits the analysis of any orientation-based data.

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Rocscience Settle 3D v2.016 Software
 

Rocscience Settle 3D v2.016

Rocscience Settle 3D v2.016

Rocscience Settle 3D is a 3-dimensional program for the analysis of settlement and consolidation under foundations, embankments and surface excavations. Rocscience Settle 3D combines the simplicity of one-dimensional analysis with the power and isualization capabilities of more sophisticated three-dimensional programs.

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Rocscience Unwedge v3.009 portable Software
 

Rocscience Unwedge v3.009 portable

Rocscience Unwedge v3.009 portable

Unwedge is a 3D stability analysis and visualization program for underground excavations in rock containing intersecting structural discontinuities. Safety factors are calculated for potentially unstable wedges and support requirements can be modeled using various types of pattern and spot bolting and shotcrete. Use Unwedge to quickly create a model, perform a safety factor analysis, place reinforcement and interpret the results.

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Rocscience Slide v6.020 Software
 

Rocscience Slide v6.020

Rocscience Slide v6.020

Slide is the most comprehensive slope stability analysis software available, complete with finite element groundwater seepage analysis, rapid drawdown, sensitivity and probabilistic analysis and support design. All types of soil and rock slopes, embankments, earth dams and retaining walls can be analyzed. State of the art CAD capabilities allow you to create and edit complex models very easily.

Slide is the only slope stability software with built-in finite element groundwater seepage analysis for steady state or transient conditions. Flows, pressures and gradients are calculated based on user defined hydraulic boundary conditions. Seepage analysis is fully integrated with the slope stability analysis or can be used as a standalone module.

Slide has extensive probabilistic analysis capabilities - you may assign statistical distributions to almost any input parameters, including material properties, support properties, loads, and water table location. The probability of failure/reliability index is calculated, and provides an objective measure of the risk of failure associated with a slope design. Sensitivity analysis allows you to determine the effect of individual variables on the safety factor of the slope.

Slide offers no less than 17 different material strength models for rock and soil including Mohr-Coulomb, Anisotropic and Generalized Hoek-Brown. Support types include tieback, end anchored, soil nail, micro pile and geotextile. Back analysis allows you to determine the required support force for a given safety factor. Advanced search algorithms simplify the task of finding the critical slip surface with the lowest safety factor.

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Rocscience Settle 3D v2.014 Software
 

Rocscience Settle 3D v2.014

Rocscience Settle 3D v2.014

Rocscience Settle 3D is a 3-dimensional program for the analysis of settlement and consolidation under foundations, embankments and surface excavations. Rocscience Settle 3D combines the simplicity of one-dimensional analysis with the power and isualization capabilities of more sophisticated three-dimensional programs.

   Читать статью дальше  (комментариев - 3)


Rocscience Slide v6.014 Software
 

Rocscience Slide v6.014

Rocscience Slide v6.014

Slide is the most comprehensive slope stability analysis software available, complete with finite element groundwater seepage analysis, rapid drawdown, sensitivity and probabilistic analysis and support design. All types of soil and rock slopes, embankments, earth dams and retaining walls can be analyzed. State of the art CAD capabilities allow you to create and edit complex models very easily.

Slide is the only slope stability software with built-in finite element groundwater seepage analysis for steady state or transient conditions. Flows, pressures and gradients are calculated based on user defined hydraulic boundary conditions. Seepage analysis is fully integrated with the slope stability analysis or can be used as a standalone module.

Slide has extensive probabilistic analysis capabilities - you may assign statistical distributions to almost any input parameters, including material properties, support properties, loads, and water table location. The probability of failure/reliability index is calculated, and provides an objective measure of the risk of failure associated with a slope design. Sensitivity analysis allows you to determine the effect of individual variables on the safety factor of the slope.

Slide offers no less than 17 different material strength models for rock and soil including Mohr-Coulomb, Anisotropic and Generalized Hoek-Brown. Support types include tieback, end anchored, soil nail, micro pile and geotextile. Back analysis allows you to determine the required support force for a given safety factor. Advanced search algorithms simplify the task of finding the critical slip surface with the lowest safety factor.

   Читать статью дальше  (комментариев - 7)


Rocscience Phase2 v8.005 Software
 

Rocscience Phase2 v8.005

Rocscience Phase2 v8.005

Phase 2 - ПО для стресс-анализа методом конечных элементов мощный над- и подземных разработок. ПО может быть использовано для широкого спектра инженерных задач и включает в себя поддержку проектирования, анализ устойчивости склона, анализа устойчивости и фильтрации подземных вод.

Complex, multi-stage models can be easily created and quickly analyzed, for example: tunnels in weak or jointed rock, underground powerhouse caverns, open pit mines and slopes, embankments, MSE stabilized earth structures, and much more. Progressive failure, support interaction and a variety of other problems can be addressed.

Phase2 offers a wide range of support modeling options. Liner elements can be applied in the modeling of shotcrete, concrete, steel set systems, retaining walls, piles, multi-layer composite liners, geotextiles and more. New liner design tools include support capacity plots which allow you to determine the safety factor of reinforced liners. Bolt types include end anchored, fully bonded, cable bolts, split sets and grouted tiebacks.

One of the major features of Phase2 is finite element slope stability analysis using the shear strength reduction method. This option is fully automated and can be used with either Mohr-Coulomb or Hoek-Brown strength parameters. Slope models can be imported / exported between Slide and Phase2 allowing easy comparison of limit equilibrium and finite element results.

Phase2 includes steady state, finite element groundwater seepage analysis built right into the program. There is no need to use a separate groundwater program. Pore pressure is determined as well as flow and gradient, based on user defined hydraulic boundary conditions and material conductivity. Pore pressure results are automatically incorporated into the stress analysis.

Material models for rock and soil include Mohr-Coulomb, Generalized Hoek-Brown and Cam-Clay. Powerful new analysis features for modeling jointed rock allow you to automatically generate discrete joint or fracture networks according to a variety of statistical models.

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Rocscience Phase 2 v7.017 Software
 

Rocscience Phase 2 v7.017

Rocscience Phase 2 v7.017
Phase 2 - ПО для стресс-анализа методом конечных элементов мощный над- и подземных разработок. ПО может быть использовано для широкого спектра инженерных задач и включает в себя поддержку проектирования, анализ устойчивости склона, анализа устойчивости и фильтрации подземных вод.

Complex, multi-stage models can be easily created and quickly analyzed, for example: tunnels in weak or jointed rock, underground powerhouse caverns, open pit mines and slopes, embankments, MSE stabilized earth structures, and much more. Progressive failure, support interaction and a variety of other problems can be addressed.

Phase2 offers a wide range of support modeling options. Liner elements can be applied in the modeling of shotcrete, concrete, steel set systems, retaining walls, piles, multi-layer composite liners, geotextiles and more. New liner design tools include support capacity plots which allow you to determine the safety factor of reinforced liners. Bolt types include end anchored, fully bonded, cable bolts, split sets and grouted tiebacks.

One of the major features of Phase2 is finite element slope stability analysis using the shear strength reduction method. This option is fully automated and can be used with either Mohr-Coulomb or Hoek-Brown strength parameters. Slope models can be imported / exported between Slide and Phase2 allowing easy comparison of limit equilibrium and finite element results.

Phase2 includes steady state, finite element groundwater seepage analysis built right into the program. There is no need to use a separate groundwater program. Pore pressure is determined as well as flow and gradient, based on user defined hydraulic boundary conditions and material conductivity. Pore pressure results are automatically incorporated into the stress analysis.

Material models for rock and soil include Mohr-Coulomb, Generalized Hoek-Brown and Cam-Clay. Powerful new analysis features for modeling jointed rock allow you to automatically generate discrete joint or fracture networks according to a variety of statistical models.
   Читать статью дальше  (комментариев - 7)


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