Terrastation II
Provides data import and export capabilities, including LIS, DLIS, LAS, ASCII formats. Interactive data editing, depth shifting, curve splicing, along with many useful curve manipulation options. Full deterministic analysis including most Vshale, Porosity, and water saturation equations. A set of statistical analysis options including cluster analysis, Fourier analysis, multiple linear regression and more. Speed corrections, button correlation, pad/flap correlation, swing-arm, dead/faulty button, and more. Quality control plots of magnetometers and acceleration information. Build templates that are unique for each well in the section, allowing all down hole data including borehole image data to be displayed in section.
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TabLogs
TabLogs is a cloud-based, field-ready boring-log and geotechnical-data software solution designed to streamline the collection, management, and reporting of subsurface investigation information. It enables you to log boreholes on-site to internationally recognized standards, generating finished graphical logs, site plans, and sample registers in seconds, eliminating time-consuming back-office data entry. It supports adaptable boring-log data formats, allows you to query and manage your entire subsurface dataset in one central database, and incorporates features such as direct photo insertion, professional branding, workflow tracking, and self-service dashboards. It is built for both engineers and drillers, enabling large consultancies or government departments to consistently record high-quality data across sites and then provide clients with timely, report-ready deliverables ahead of competitors.
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GHE Analysis
GHE Analysis is a software package for the easy, intuitive and interactive design of ground-source heat pump systems. Use it to size irregular ground heat exchangers, optimize the heat transfer of geothermal boreholes and assess the seasonal performance coefficients of geothermal heat pumps. Based on over two decades of academic research, GHE Analysis incorporates a robust simulation engine designed to quickly simulate the hourly response of a GSHP system. This allows you to easily visualize the energy consumption and power demand of selected equipment and design a cost-effective system.
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Slide3
Locate critical failure surfaces and compute the correct factor of safety using a combination of global metaheuristic search methods and local surface-altering technology. With parallel processing added for both failure searching and FS computations, results can now be generated within minutes. Streamline your workflow and get more detailed insights by integrating 3D wireframes (representing surveyed topography, geological surfaces, modeled faults, etc.) directly into your 3D models. Constructing slope stability models is easier and faster than ever before. Import surfaces from geological modeling or mine planning software or use built-in surface construction methods using coordinates or borehole data. Choose to build surfaces from point cloud data or import block models from applications such as Leapfrog, Deswik, Datamine, and Vulcan.
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