Alternatives to RokDoc

Compare RokDoc alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to RokDoc in 2024. Compare features, ratings, user reviews, pricing, and more from RokDoc competitors and alternatives in order to make an informed decision for your business.

  • 1
    Aspen Echos

    Aspen Echos

    AspenTech

    Advanced seismic processing and imaging to condition data for depth imaging, seismic characterization and interpretation, and pore pressure prediction projects. A modular design, open architecture and adherence to standards enable companies to configure the system to their business objectives and user requirements. State-of-the-art seismic processing and imaging solutions, including SRMA, 5D interpolation, and Aspen Echos RTM. A comprehensive library of nearly 350 modules enabling the construction of data- dependent processing workflows to solve modern geophysical challenges. A highly efficient parallel framework and infrastructure for the cluster (HPC) optimization, and the industry's best interactive link between seismic applications, parameters, and data. Aspen Echos is the oil and gas industry’s benchmark seismic processing system for generating 2D and 3D seismic images of the subsurface.
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    Petrel E&P Software Platform
    The Petrel platform is available on-premise and in the DELFI cognitive E&P environment, for geoscientists and engineers to analyze subsurface data from exploration to production, enabling them to create a shared vision of the reservoir. This shared earth approach empowers companies to standardize workflows across E&P and make more informed decisions with a clear understanding of both opportunities and risks. Integration at the data level is the foundation for enabling multi-discipline integration. This integration allows the capture and preservation of knowledge, from exploration to production—from the petroleum systems modeler to the reservoir engineer and beyond, all contributing to a shared vision of the subsurface. Whether you are working on your first deepwater exploration well or delivering a comprehensive drilling program in a shale play, the Petrel platform enhances multidisciplinary workflows.
  • 3
    Aspen GeoDepth
    Advanced velocity determination and 3D/2D velocity model building create accurate, high-quality, interpretable seismic images in time and depth. A complete suite of interactive and batch velocity analysis tools for anisotropic models easily handles the full range of seismic imaging problems. Integration with interpretation and modeling solutions streamlines the workflow while preventing data loss and honoring geologic constraints. Easy construction of accurate 3D and 2D models, regardless of the structural geology’s complexity. Highly parallelized for running efficiently on very large 3D datasets and multi-line 2D datasets, on-premise or in the cloud. Accurate seismic images and depth models are essential in hydrocarbon exploration and production. The Aspen GeoDepth velocity determination and modeling system offers a solution for improved seismic imaging in time or depth through the integration of interpretation, velocity analysis, model building, time-to-depth conversion, etc.
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    GeoStreamer
    Multisensor GeoStreamer is the ideal platform for broadband imaging. Deep towing reduces weather impact and improves acquisition efficiency. Recorded signal is insensitive to variations in towing depth or local sea-surface variations, significantly reducing non-repeatable noise on reservoir monitoring projects. Pre-stack amplitude and phase are consistent in an angle-dependent and frequency-dependent manner. Rich low-frequency signal enhances Full Waveform Inversion (FWI) and improves the accuracy of subsurface property prediction. Multisensor wavefield separation enables better shallow illumination. Near-surface images unaffected by acquisition footprint effects can be used for standalone interpretation. Enhanced broadband resolution of stratigraphy assists the recovery of small time shifts related to changes in reservoir saturation and pressure during reservoir monitoring projects. GeoStreamer uses both hydrophones and velocity sensors to remove all free-surface ghost reflections.
  • 5
    GeoProbe

    GeoProbe

    E&P Software

    GeoProbe® software is the industry-leading 3D multi-volume interpretation and visualization solution. The software is designed to accelerate interpretation workflows from the basin scale through detailed prospect and reservoir analysis. GeoProbe software delivers breakthrough speed whether evaluating a reservoir-scale data volume on your desktop or analyzing basin-scale volumes with an asset team in the largest immersive visualization environment. GeoProbe software features GeoShell technologies, which provide geoscientists the ability to quickly interpret salt body geometries and boundaries with unprecedented flexibility and accuracy. The ability to leverage all relevant information into a dynamically updateable multi-Z subsurface model helps ensure that in areas of complex structure, the delineation of reservoir makeup can be mapped with better precision.
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    OMNI 3D
    OMNI 3D seismic survey design software helps you create optimal 2D and 3D designs for land, marine, ocean-bottom cable (OBC), transition zone, vertical seismic profile (VSP), and multicomponent surveys. Advanced analysis modules in the software enable you to examine geometry effects, analyze geometry artifacts, generate synthetics, and build and ray trace 2D and 3D geological models. With its sophisticated tools, an easy-to-use interface, and versatile multiproject handling, OMNI 3D software helps bridge the gap between E&P asset and acquisition teams. These features make OMNI 3D software the industry standard for geoscientists involved in survey planning, design, QC, and modeling worldwide. Provides advanced analysis modules, including 3D geometry assessments, synthetics, trace quality estimates using 5D interpretation, AVO response, illumination on a subsurface horizon using any survey geometry, and poststack time migration illumination using Fresnel zone binning.
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    Galaxy 4D

    Galaxy 4D

    Plano Research Corp

    Galaxy4D provides geologists and reservoir engineers with a highly versatile and easy to use 2D/3D stratigraphic and reservoir modeling tool. It significantly decreases the time involved in building, updating and managing reservoir models while also increasing knowledge and understanding of the reservoir. As a result, optimal field development programs can be designed faster and with reduced risks. Galaxy4D’s strengths lie in its logical and straight forward workflow. Its modules and displays are intuitive, interactive, and time saving. Galaxy4D has the unique ability to estimate saturation distribution based on logs (RSTs). Create unified catalogs for reservoir descriptions and geological, petrophysical, seismic, and engineering data. Analyze histograms of reservoir properties for single or multiple wells, for 2D and 3D data sets, on a zone by zone or defined area basis.
  • 8
    VISAGE Finite-Element Geomechanics
    The Petrel E&P software platform combines transparent data flows with an easy-to-learn graphical user interface—Petrel Reservoir Geomechanics—that supports the VISAGE simulator configuration and results visualization. This enables the powerful functionality of the VISAGE simulator to be combined seamlessly with other interpretation, modeling, and engineering workflows within the Petrel platform. With the Petrel platform-enabled workflow, you can include multiple data types to create new 3D geomechanics property and stress models, or add geomechanics data to augment existing reservoir subsurface models. This seamless combination within the Petrel platform ensures that the geomechanics model is consistent and integrated with geophysics, geology, petrophysics, and reservoir data.
  • 9
    g-Space

    g-Space

    Geomage

    Geomage g-Space™ is a complete structural, geological and geophysical interpretation software that allows thorough analysis of existing seismic and well data. This software allows: - Horizon and Fault picking - Geological modeling - Map creation with faults - Well-tie and dynamic update - Well correlation - Mis-tie workflow - Velocity model based on checkshots and horizons - Simultaneous time/depth picking - Static modeling - Volumetric calculation - etc, etc, etc and more…
    Starting Price: $1,200/year/user
  • 10
    Leapfrog Works
    Change how you look at and work with data using streamlined workflows. Generate cross sections rapidly and use tools that integrate your models with engineering designs. Increase the productivity of your 3D subsurface modelling with rapid creation and updating of geological models. As new data is input, your models and outputs (such as cross sections) dynamically update without needing to recreate them, saving both time and money. 3D subsurface modelling offers an unrivalled level of accuracy and efficiency in understanding ground conditions. Better identify and assess risks at every stage of the project lifecycle and spot challenges early on. Seeing subsurface insights in 3D brings clarity to even complex data, giving you a higher level of understanding. Highly visual 3D subsurface models help you better interpret ground conditions.
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    RockWorks

    RockWorks

    RockWare

    RockWorks is a comprehensive software program for creating 2D and 3D maps, logs and cross sections, geological models, volume reports, and general geology diagrams for the environmental, geotechnical, mining, and petroleum industries. RockWorks is the standard in the environmental, geotechnical, petroleum, and mining industries for surface and subsurface data visualization, with popular tools such as maps, logs, cross sections, fence diagrams, solid models and volume calculations. RockWorks offers numerous options for analyzing your surface and subsurface data, and accepts many different data types, such as stratigraphy, lithology, downhole geochemistry/geophysics / geotechnical measurements, color intervals, fractures, and aquifer data. Display RockWorks graphic output in its built-in 2D and 3D viewing/editing windows, or export to CAD, Google Earth, and other GIS programs. Use the ReportWorks module to create page layouts for reports and posters.
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    StarSteer
    Simultaneously compare different vendors tool response against your specific reservoir geology to identify the most suitable tool and resistivity curves. Incorporate all memory data to create high-accuracy final inversions. Deploy the inversion module on High Performance Computing (HPC) devices for fast results. Calculate the distance to bed boundary in real-time to prevent exiting the target zone and staying in the reservoir. Set up phase shift and attenuation curves from non-azimuthal tools, interval length and parameters for conducting 2-layer boundary mapping in real-time, To predict a tool's log response in advance, build the earth model of the formations you are drilling and easily model resistivity effects: shoulder effects, polarization horns and anisotropy.
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    UBDPRO

    UBDPRO

    Pegasus Vertex

    Managed Pressure Drilling (MPD), including Underbalanced Drilling (UBD) technology, precisely controls the annular fluid pressure profile within a wellbore, which allows drilling of what might otherwise be economically unattainable prospects. Managed pressure drilling is often performed with the primary motivation of reducing formation damage. Therefore, increasing production and aerated fluid is commonly employed in the drilling process. In hard rock applications, managed pressure drilling is often performed with the primary motivation of increasing ROP (rate of penetration). Here air/mist drilling fluids are commonly employed. UBDPRO models the complex hydraulics for compressible fluids including air, mist, foam and 2-phase fluids. The advanced software model can be used to optimize gas and liquid injection rates in order to control bottomhole pressure.
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    ZetaWare Trinity
    We most likely do not know the thickness (and other properties) of the source rock in the kitchen area, nor do we know the heat flow in the kitchen, or secondary migration losses. The only way to rank prospects is to run different scenarios of these parameters. The prospects that are charged in most scenarios will have the lowest risk, and vise versa. Other parameters that can be risked are top seal capacity, unconformity, source rock facies, even different interpretations of the seismic and the list goes on. Invoking multi-component kinetics while we do not even know the thickness, TOC and HI of the source rock is ridiculous. Drag and drop your interpreted surfaces into Trinity and interactively draw cross sections through them. The cross section can be moved with the mouse to movie through the data and in 3D the cross sections look like fence diagrams, except the fences can be moved! This will reveal much more geology than looking at static maps.
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    EarthVision

    EarthVision

    Dynamic Graphics

    EarthVision developed by Dynamic Graphics, offers software for 3D model building, analysis, and visualization, with precise 3D models that can be quickly created and updated. Accurate maps and cross-sections, reservoir characterization, and volumetric analysis are made easy. EarthVision’s advanced 3D⁄4D viewer enables model examination and interrogation in the context of datasets from throughout the asset development team, which serves to improve and simplify quality control, well planning, and communication with management, investors, partners, and other team members. Using EarthVision’s workflow manager, the model-building process is streamlined allowing complex models to be built quickly and easily through a guided, geologically oriented process. Using one-time data entry, the workflow manager’s interface provides an intuitive environment, guiding users through modeling fluid contacts, salt domes, diapirs, and complexly faulted structures, and performing time-to-depth conversions.
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    MiVu

    MiVu

    GeoTomo

    MiVu™ is a software package designed to perform microseismic monitoring during hydraulic fracturing for both downhole geophone arrays and surface geophone arrays. MiVu™ offers capabilities for building simple and complex geologic models interactively, designing optimal microseismic monitoring geometry, processing data with user-defined workflows, imaging event locations with multiple techniques, visualizing and interpreting microseismic events in 3D. Multiple event location techniques are offered such as 3D grid search, 3D migration, and cross double difference to provide insight on how different geophysical methodologies effect the location of the microseismic event. Understanding the strength and weakness of each methodology will provide a better understanding of the accuracy of the event.
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    Seequent GM-SYS
    Constrain your earth models with GM-SYS. Integrate seismic, well, and geology data with observed gravity and magnetics. GM-SYS extensions are trusted by international government surveys and the exploration programs of the world's most successful energy companies. Rapidly create new interpretations based on the latest survey data – and see when the calculated response of the model matches the observed data using interactive tools. Minimise risks when planning expensive surveys or drilling targets by bringing all your data together. GM-SYS extensions are directly integrated within Oasis montaj allowing you to view gravity and magnetic data directly alongside your other earth models. Import and incorporate grids, slices, and numeric data from other teams in a seamless workflow. Run efficient QA/QC controls in Oasis montaj and instantly extract your clean data into GM-SYS to ensure your model is based on the most accurate data.
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    CPillar

    CPillar

    Rocscience

    Get quick and easy stability analysis of surface or underground crown pillars and laminated roof beds using three different limit equilibrium analysis methods: rigid plate, elastic plate, and Voussoir (no tension) plate analysis. Perform probabilistic analysis to determine the probability of failure. Model variability in geometry, point of force application, joint and bedding strength, water pressure, external loads and more by assigning statistical distributions to variables. Perform sensitivity analysis using a range of values to evaluate the effects of changing model parameters on factor of safety. Originally developed for steeply dipping ore body geometries, by estimating crown geometry and assessing the stope geometry as steep or shallow, you can apply the most appropriate empirical relationships to your model.
    Starting Price: $495 per year
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    AttributeStudio

    AttributeStudio

    geomodeling

    AttributeStudio is a multi-attribute seismic interpretation and reservoir property prediction software package. A true integrated software system for seismic and well data interpretation and integration. Easy to use. The system is designed by geoscientists for geoscientists. All industrial standard data formats are supported in data I/O. Comprehensive: including both basic interpretation workflows and advanced modules to predict reservoir properties via the latest machine learning algorithms. Latest innovations. Frequent updates including the latest innovation in seismic interpretation, visualization, and machine learning. Robust. AttributeStudio is built on a solid software architecture that has been fine-tuned for 20 years. Affordable. You only need to license the modules that are required in your work. Corporate team licenses are available at a discount rate. Fault surface tracking is constrained by multiple attributes. Interactive attribute classification on 2D and 3D cross plots.
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    GravitasEDGE

    GravitasEDGE

    HRH Geology

    The advent of digital transformation using the cloud has created a unique opportunity to build a new generation of operations geology software for the rig of the future, improving collaboration and productivity. GravitasEDGE has been designed using the latest technology, with users accessing a rich operations geology toolset to manage the geological workflow which seamlessly integrates with other disciplines such as drilling and asset geoscience. World leading applications Winlog, EZ-Correlate, PoreView and Reporter are provided for log visualization and analysis, well correlation, pore pressure monitoring and daily and end of well reporting. The GravitasEDGE Mobile App has been engineered for phones and tablets, allowing users to view charts and reports on any device, anytime, anywhere.
  • 21
    GPT GES
    Block H125 mainly develops Qingshankou oil layer. The top structure of the Qing 1st sublayer is a broken nose structure blocked by reverse normal faults. The reservoir type is a layered lithological structure reservoir. The current injection-production scale is an encryption five-point well pattern, including 27 injection wells and 38 production wells. The main target layers in the north of Block H125 are delta front deposits. The main microfacies types of each sublayer are bars. Reservoir geological modeling technology is mainly divided into two major workflows structural modeling and property modeling. The property modeling includes sedimentary facies modeling, porosity modeling, permeability modeling, oil saturation modeling, and NTG modeling. In geological modeling, the first step is to use the well header and well picks to establish a structural model and to set the increment in I and J direction to control the grid quality and well pattern.
  • 22
    Geophysics by SeisWare
    Geophysics by SeisWare is a seismic interpretation solution with all the tools needed to interpret conventional and unconventional plays in one comprehensive package. Fully scalable, large projects can be shared between asset team members. Better yet, the straightforward interface makes it easy to learn, so time can be spent on achieving results, not fighting your software. Geophysics by SeisWare is now featured in our comprehensive geoscience package. Are you looking for a complete geoscience solution that does seismic interpretation, synthetic generation, and petrophysical calculations and launch a cross section in multiple windows at one time? SeisWare Geoscience is a 64 bit, high-performance solution, meaning you can double your data without doubling time spent. SeisWare Geoscience is a true multitasking, multi-user tool that will wrap your geologic and seismic interpretation into one seamless package.
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    Aspen SeisEarth

    Aspen SeisEarth

    Aspen Technology

    Fast, multi-survey structural and stratigraphic interpretation and visualization, enabling multiple users to collaborate in a single shared environment. Reliable prediction of facies identified from well data through integrated analysis of multi-scale geological, geophysical and seismic information. A comprehensive, integrated solution for seismic interpretation, including industry-leading facies classification and volume visualization workflows. Regional-to-prospect scale interpretation and visual integration. Easily share projects and data with other team members, with no duplication. Interactivity and consistency between views accelerate the interpretation process, taking full advantage of high-speed graphics, large memory and fast connectivity of modern workstations. A simple, intuitive user interface and a highly ergonomic design make workflows more efficient with fewer clicks.
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    Aspen Epos

    Aspen Epos

    AspenTech

    An innovative, scalable data management infrastructure that enhances collaboration, security, and efficiency. The advanced, architecturally light data management infrastructure is scalable to multiple users and projects. A centralized repository meets the highest security standards and can be customized based on role-defined permissions. Real-time data workflows and shared access enable seismic, petrophysics, and geologic modeling teams to collaborate on projects and interact in a common visualization environment. Import/export tools with a wide choice of data formats allow exchange with the OSDU Data Platform and with third-party repositories. Real-time data workflows and shared access for seismic, petrophysics, and geologic modeling teams in a single environment. Common data models, interfaces, services, and visualization platforms. Easy scalability for changing performance and storage needs as datasets continue to grow.
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    VISTA

    VISTA

    VISTA

    Comprehensive seismic processing and QC software for data acquired on land, offshore, or vertical seismic profile. VISTA desktop seismic data processing software provides data processing from early-stage acquisition QC to final processing and interpretation of 2D and 3D seismic data acquired on land or offshore or as a vertical seismic profile (VSP), in all industry and manufacturer data formats. With VISTA software, you can easily navigate workflows and seamlessly evaluate datasets using the interactive and interlinked displays. You can also add in your own algorithms through a C++ or MATLAB SDK interface. The software supports advanced processing capabilities including AVO and angle of incidence (AVA) analysis, multicomponent processing, and 2D and 3D VSP processing. Advanced field package, including full-geometry QC and poststack migration. The complete solution, from QC to prestack migration and time-depth image analysis.
  • 26
    DecisionSpace 365
    DecisionSpace® 365 Essentials is the industry’s leading exploration and production (E&P) software that provides the best performance at the right price to run your business. You can use this software as little or as much as you need and only pay for what you use. Develop an accurate and insightful understanding of the subsurface with advanced seismic processing technology and QC workflows. Optimize your well operations for higher productivity. Get started with no data entry or report configuration. Jump start your economics evaluations with on-demand access, when and where you need it. Self-service well construction software to reduce your well preparation time, increase reliability, and maximize well productivity.
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    Vulcan

    Vulcan

    Maptek

    Maptek Vulcan GeologyCore streamlines your geology workflow from data validation to model generation. Gain access to cutting-edge modelling techniques using cloud-based machine learning algorithms alongside conventional modelling approaches. Vulcan GeologyCore provides a smart workflow to help automate daily geology tasks, allowing geologists more time to focus on higher value work. Tasks are intuitively grouped for importing and validating drillhole data, defining geological domains, and then generating and publishing geological models. Repeatable steps mean geologists can easily experiment with changes to domains and see the immediate effect on the model. Vulcan GeologyCore is suitable for a wide range of projects and users can choose from cloud-based machine learning, or conventional modelling methods such as vein and implicit modelling. An intuitive ribbon automates the geology workflow from importing and validating drillhole data, through defining geological domains.
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    CoreLog

    CoreLog

    Plano Research Corp

    CoreLog is a log analysis and petrophysical modeling application, based on industry-standard models, used for calculating the petrophysical properties of wells. It calculates several properties, such as porosity, permeability, volume of shale, and others, by zone or well. CoreLog gives users a straightforward and efficient way to import and transform data, view and plot information, calculate petrophysical properties, and export data for use in other applications. It is a robust application with innovative data display capabilities that allow for easy interpretation and manipulation. CoreLog allows users to easily create markers and zones, customize plots, and export or print data. Data is presented in a user-friendly structured format, with tabbed views, tables, and tree views, which help improve user productivity.
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    Malcom
    Geochemistry can be applied to all phases of a field life cycle: exploration, appraisal, development, production, and abandonment. Malcom interactive fluid characterization software offers geochemical engineering solutions by processing gas chromatography data (GC-FID, GC-MS, GC-MS-MS, GC-2D, etc.) from different vendors. The comparison of oil GC fingerprints provides information on biomarkers, reservoir connectivity, estimation of the size of reservoirs, and production allocation calculation. With Malcom software, a comprehensive suite of tools are embedded within a single application to process chromatography data and to perform statistical calculation, delivering fast data interpretation. Achieve better reproducibility and repeatability of gas chromatography data processing, with harmonization of the baselines and peak area.
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    WellArchitect

    WellArchitect

    Dynamic Graphics

    WellArchitect, developed in conjunction with Baker Hughes Company, is an advanced well planning and survey management system for integrated planning and drilling of directional wellpaths with or without earth models. Devised to seamlessly accommodate the needs of sidetracking, multi-lateral wellpaths, and re-entry drilling, WellArchitect is used at both the office and wellsite, by all personnel levels in the industry. Trajectory calculations, target erosion by positional uncertainty, reporting, plotting, and 3D visualization are all included in this package. Wellpaths can be juxtaposed against earth models, reservoir models, and more (above). Data used with permission of the owner. Combines powerful directional drilling software with advanced 3D visualization tools and optional reservoir geo-data, a major step forward for the drilling industry. Handles everything from planning and survey calculations through data management and collision-risk analysis.
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    PLAXIS LE

    PLAXIS LE

    Bentley Systems

    With PLAXIS 2D LE or PLAXIS 3D LE you can model and analyze geoengineering projects with limit equilibrium. These powerful software applications for limit equilibrium slope stability analysis and finite element analysis of groundwater seepage provide rapid, comprehensive analysis for various conditions. Create 2D and 3D limit equilibrium slope stability models of soil and rock slopes. Take advantage of the comprehensive set of search methods and more than 15 analysis methods. Use multiplane analysis (MPA), for enhanced spatial slope stability analysis. Perform analysis on embankments, dams, reservoirs, and cover systems through earth structures and broader hydrogeological settings.
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    Leapfrog Geo
    Intuitive workflows, rapid data processing, and visualization tools bring teams together, and enable the discussions that drive decisions. Build and refine geological models with user-friendly tools. Input large data sets and rapidly generate models directly from the data, bypassing time-consuming wireframing. Quickly see your geological data visualized in 3D and gain visual insights to guide your interpretations. As you add new data to a model, the rules and parameters you already set are automatically applied. Make a change to one model and any dependent models are instantly updated, ensuring models are always up to date. Analyzing data is quick and intuitive with Leapfrog Geo’s features, such as exploratory data analysis, distance function, structural modeling, vein modeling, and indicator interpolation tools. Test new ideas and refine your model, quickly. Duplicate models and apply streamlined workflows so you can iterate interpretations the moment new insights become available.
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    SurvOPT

    SurvOPT

    Engenius Software

    SurvOPT is the ultimate marine seismic project planning, optimizing and costing tool, letting you examine the effect of survey design changes in near real time. As well as finding efficient shooting plans and accurate completion estimates, SurvOPT seismic survey design software can compare vessel configurations side by side, explore different costing models and can analyse the affect of almost any parameter change. On the vessel, SurvOPT provides acquisition plans that optimize acquisition time while minimizing non productive line change time. With support for obstructions, timesharing, currents, tides, priority areas, maintenance, crew changes, circles, port calls and weather downtime there is no scenario that the patented optimization engine can’t handle. SurvOPT even lets you specify feather requirements on individual lines and will optimise line scheduling around them, putting you on the right line at the right time without unnecessary delays.
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    TerraSeis

    TerraSeis

    Terra Management

    View seismic shot lines in a true survey-based, geographically accurate viewer. Incorporate layers such as NTS and DLS grids, culture, and wells. Add lines, text, areas to the view, and print or plot directly from your PC. Show 3D data as an outline or show all source and receiver shot points. Point and click on a line to open the database record. Scanned documents in electronic image form (e.g: TIF or JPG) on disk or CD-ROM may be linked using third-party software for viewing and printing if desired. Most packages provide editing, faxing or e-mail features and these add increased versatility to the TerraSeisTM application. Powerful, flexible searching tools use your seismic line meta-data or SEG-P1 database to locate lines consistently and uniformly. Find and inter-relate your data in creative ways that exploit the true potential of your data resources. Show key data elements in the locate window to aid in the selection of specific data sets for further processing.
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    ArcGIS Geostatistical Analyst
    It is not always possible or practical to predict and model spatial phenomena through real world observations. ArcGIS Geostatistical Analyst lets you generate optimal surfaces from sample data and evaluate predictions for better decision making. These are especially helpful for atmospheric data analysis, petroleum and mining exploration, environmental analysis, precision agriculture, and fish and wildlife studies. ArcGIS Geostatistical Analyst extension offers a suite of interactive tools to visually investigate your data prior to analysis. When data are incomplete or subject to error, ArcGIS Geostatistical Analyst provides a probabilistic framework for quantifying uncertainties. Create multiple versions of a surface to perform risk analyses. Geostatistical simulation produces multiple surfaces that mimic the real phenomenon and provide possible values.
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    DEPRO

    DEPRO

    Pegasus Vertex

    DEPRO is a comprehensive torque, drag, and hydraulics program. Using this software, users can reduce many of the risks encountered in drilling and completion operations. DEPRO predicts the limits in the length of a horizontal well based on specific friction factors, recommends rig specifications, and evaluates the required weight to set a packer. For hydraulics, DEPRO covers downhole circulating pressures, surge and swab, equivalent circulation densities (ECD), bit optimization, hole cleaning, and volumetric displacements. Using DEPRO, downhole drilling hydraulic conditions can be fully examined and any potential problems can be identified prior to field execution. Torque, drag, and stress calculation. Soft and stiff string models. Drilling, back reaming, rotation off the bottom, tripping in and tripping out operations. Sinusoidal and helical buckling prediction. Field data comparison on workload and surface torque. Friction factor sensitivity analysis. Packer setting analysis.
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    Katalyst

    Katalyst

    Katalyst

    Katalyst is a leading provider of geophysical preservation and seismic section scanning services for the oil and gas industry. Our proprietary software, combined with and developed from more than a quarter of a century of experience, enables us to offer our clients a unique and valuable means for restoring aging hard copy paper seismic sections to a digital format. Once digitized and preserved, the data can then be enhanced and used to add value to ongoing and future processing and interpretation activities. Frequently in the exploration industry, historical seismic data is only available in a hard copy format. Often these seismic sections cover exploration areas that lack modern seismic coverage. Conversion of the hardcopy sections to digital SEGY data is a cost-efficient solution to obtaining greater seismic coverage in areas where little other data may exists.
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    OpendTect

    OpendTect

    dGB Earth Sciences

    OpendTect software consists of two parts: a free, open-source part and a commercial, closed-source part that is protected by FlexNet license managing software. The open-source part is OpendTect, a seismic interpretation software system for 2D and 3D seismic data, and for fast-track development of innovative interpretation tools. OpendTect can be extended with free plugins. The closed source part is OpendTect Pro, an extended version with extra functionality for professionals. OpendTect Pro can be further extended with commercial plugins that enable unique seismic interpretation workflows.
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    LEASSV

    LEASSV

    Lynx Information Systems

    Lynx Exploration Archivist Seismic Scanning and Vectorising (LEASSV) software is a comprehensive software solution for re-vectorizing scanned images of seismic sections and outputting the results as industry-standard SEG-Y format trace files. Using the utilities provided in the suite, output files can be made ready for loading to the seismic interpretation workstation or further processing. Applications and utilities contained in the LEASSV software suite are accessed from the Lynx Launcher, a program manager which allows all installed Lynx programs to be accessed from the Lynx desktop icon. Installation can be from CD-ROM, or from downloaded setup files.
    Starting Price: $304 per year
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    g-Platform : Depth
    The g-Platform : Depth imaging covers all processing modules and applications needed in order to build velocity model and create an accurate depth image from any kind of seismic data, both marine and land.
    Starting Price: contact us
  • 41
    Seismic Pro
    Comprehensive software package for near-surface seismic methods. Efficiently process reflection data in one application with multistep redo and undo. Import all records of a survey line at one time. Efficiently assign geometry with layout chart. CMP binning for crooked lines. AGC, trace balance, and time-variant scaling. Frequency filtering, F-K filtering, and Tau-p mapping. Spiking deconvolution and predictive deconvolution. Random noise attenuation. Surgical, top, and bottom trace muting. Gather sorting (CMP, common shot, common receiver, or common offset) Velocity analysis on CMP or common shot gathers. NMO correction and inverse NMO correction. A feature-rich application for processing single-fold seismic reflection or GPR data. Assign geometry in forward or reverse trace order. Support SEG-2, SEG-Y, SEG-D, ASCII, MALA, ImpulseRadar, and other data formats. Elevation correction and first-arrival alignment static correction. AGC, trace balance, and time-variant scaling.
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    LEAMAP

    LEAMAP

    Lynx Information Systems

    Using the utilities provided in the suite, output files can be made ready for loading to seismic interpretation workstation or further processing. LEAMAP can be used as a standalone system, or can be integrated with LEASSV to provide a full and comprehensive solution for reconstructing seismic data from images of sections and basemaps. The minimum system requirement is a PC running Microsoft Windows XP, Vista, 7, 8 or 10 (x86 or x64). Over 60 raster file formats are supported via Snowbound Software Inc's raster library. Plotting is supported via standard Windows printer drivers. Locprep is an interactive editor for Lynx and UKOOA-type location files, which store seismic shotpoint location information, and can also store general location information. You can use Locprep to perform a variety of tasks with LOC files.
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    RockMass

    RockMass

    RockMass

    We're streamlining geotechnical data collection for ground control engineers, geotechnical engineers and geologist. Our platform enables engineers and geologists to collect then process 3D point cloud data into useful geological measurements. Taking measurements at a mine can be dangerous and time consuming, which is why our tool aims to provide a safer and faster way to realize information that is crucial to mining operations. Our handheld and mobile mapping technology collects and automatically calculates joint set orientations of rock masses using flash LiDAR, an inertial measurement unit and our software platform. We also provide an intuitive platform for documenting RMR, Q, and additional geological measurements. We give engineers and geologists highly accurate and consistent data in a matter of minutes. Our team is focused on building an industrial product that doubles as a very intelligent, simple, yet practical device that provides unprecedented value to the mining industry.
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    PLAXIS 2D

    PLAXIS 2D

    Bentley Systems

    Every project is challenging, but the geotechnical analysis doesn’t have to be. PLAXIS 2D provides the power of fast computations. Perform advanced finite element or limit equilibrium analysis of soil and rock deformation and stability, as well as soil structure interaction, groundwater, and heat flow. PLAXIS 2D is a powerful and user-friendly finite-element (FE) software for 2D analysis of deformation and stability in geotechnical engineering and rock mechanics. PLAXIS is used worldwide by top engineering companies and institutions in the civil and geotechnical engineering industry. PLAXIS 2D is ideal for a range of applications from excavations, embankments, and foundations to tunneling, mining, oil and gas, and reservoir geomechanics. PLAXIS 2D includes all the essentials to perform deformation and safety analysis for soil and rock that do not require the consideration of creep, steady state groundwater or thermal flow, consolidation analysis, or any time-dependent effects.
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    DUG Insight
    DUG Insight allows you to focus on geoscience, helping you make your next discovery. DUG Insight is a full-service, interactive software platform for advanced seismic data processing and imaging, interpretation, visualization, and QI—across land, marine, and ocean-bottom surveys. It also includes DUG’s multi-parameter FWI imaging for revolutionary least-squares imaging solutions. DUG Insight takes a fresh approach to geoscience, with powerful features integrated into an easy-to-use interface. With DUG Insight’s processing and imaging module, you can gain access to a number of key technologies designed to turbocharge your seismic workflows. All developed in-house by DUG, these include deblending, noise removal, deghosting, designate, demultiplex, data regularisation, imaging, and post-migration processing. Process your datasets on DUG Insight’s interactive and interpretive platform to meet your land, marine, and OBN processing and imaging needs.
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    GeoThrust

    GeoThrust

    GeoTomo

    GeoThrust has been designed with a workflow architecture to obtain an accurate earth model and earth image in time and in depth from data recorded with irregular geometry in areas with rough topography, complex near-surface, and complex subsurface, with uncompromisingly high technical specifications for data analysis and quality control, but easy to learn and easy to use. The near-surface model is estimated by nonlinear tomography applied to first-arrival times that accounts for topography and resolves lateral and vertical velocity variations. Aside from statics corrections, the corrections for the near-surface are performed by wavefield dating - an essential requirement for imaging from irregular topography. GeoThrust performs subsurface velocity estimation, modeling and imaging from topography, not from a flat datum, based on rms and interval velocities estimated at reflector positions, not at reflection positions.
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    Slide3

    Slide3

    Rocscience

    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.
    Starting Price: $5,895 per year
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    GIM Suite

    GIM Suite

    acQuire

    With seamless integration across desktop, web and mobile, GIM Suite enables the capture, management and delivery of geoscientific observations and measurements in any environment. The powerful data management capabilities in GIM Suite improve confidence in decision-making across the mining value chain because you are always working from a single source of truth for one of your most important assets – your geological data. Miners are collecting and using more data than ever before. Smart mining techniques and practices give companies access to more complex deposits. Your geological data is part of a wider mining ecosystem and, when properly integrated, can inform optimizations elsewhere. A single, trusted version of your data can be safely accessed across teams, with everyone in your organization working with the same information.
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    TOMOXPro

    TOMOXPro

    GeoTomo

    This software package includes crosshole survey design, model building and modeling, data preprocessing, CDP transformation, tomography, wave-equation migration, and post-processing. It simply offers the entire range of capabilities that you will need for performing a crosshole seismic project. Model includes P- and S-wave velocities, densities, and anisotropic parameters. Creating arbitrary velocity model, with layers, objects, and faults. Acoustic, elastic, and anisotropic finite-difference method for full wavefield simulation.
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    StuckPipePro

    StuckPipePro

    Pegasus Vertex

    A stuck pipe can result from a wide variety of causes. Typically, these causes are related to mechanical sticking and differential sticking. Mechanical sticking can be caused by key seating, under gauge holes, wellbore instability, poor hole cleaning and related causes. Differential sticking typically occurs when high-contact forces caused by low reservoir pressures, high wellbore pressures, or both, are exerted over a sufficiently large area of the drill string. Stuck pipe occurrences are widely held to be the most expensive drilling problems confronting the petroleum industry and the cost of correcting them can amount to millions of dollars. Running an analysis of well data to predict the stuck chance of a drill string is becoming more imperative.