Best Geology and Seismic Software for Freelancers - Page 3

Compare the Top Geology and Seismic Software for Freelancers as of November 2025 - Page 3

  • 1
    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.
  • 2
    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.
  • 3
    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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    ProSource E&P
    Information management professionals need the ability to collect, find, edit, manage, and transfer data quickly and easily, allowing them to provide the right information to the right people at the right time in support of their business processes. The ProSource E&P data management and delivery system provides a powerful and broad solution for acquisition, management, and delivery of corporate data required by all disciplines across an E&P organization. Building on the strength of the Seabed E&P open data model and database, the ProSource data management system adds the structure for an integrated working environment and holds a vast array of data domains in a single, integrated repository. Through the platform-neutral interface, you can leverage intuitive and compelling tools and capabilities for acquiring, browsing, querying, editing, comparing, transferring, and controlling the quality of your data.
  • 5
    Recall Borehole

    Recall Borehole

    E&P Software

    Vast and expanding quantities of borehole data are acquired over time in disparate formats, distributed, loaded and duplicated repeatedly among different databases. Information may be incomplete, inaccurate or uncertain, and access to critical project data too slow for today’s fast-paced decisions. Recall™ Borehole data management software is the industry’s leading solution for efficiently storing, managing, and publishing raw and edited borehole data in one integrated system. Recall software consists of two databases, one for edited data and one for raw data in its original format, both functioning as a single, integrated system. Data is loaded and quality controlled once. Standardized naming conventions and common queries apply across both databases, reducing cycle time and redundancies due to multiple copies.
  • 6
    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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    SPW

    SPW

    Parallel Geoscience

    The SPW software is an interactive seismic processing system. SPW is parallelized for use on multi-core processors with threads on either Windows 7 or Windows 10. SPW can be configured for standalone use on workstations, desktop PC's or laptops and may also be installed as a client-server configuration for large scale processing needs on high end server PCs. The SPW 3D package is a complete processing system for 3D P-wave seismic reflection data. Data QC and interactive analysis are strengths of the system and allow rapid control of data quality and checking of procesisng results.
  • 8
    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.
  • 9
    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.
  • 10
    TADPRO

    TADPRO

    Pegasus Vertex

    Today’s more prevalent extended-reach directional wells mean that tubulars are exposed to greater amounts of torque and drag (T&D). If this torque and drag is not evaluated, this can result in stuck pipe, pipe failures, and costly fishing jobs. TADPRO, the most comprehensive torque and drag software in the market, removes many of the risks of a drilling program, completion design or specific tool operation. Limits in the length of a horizontal based on specific friction factors can be determined. The ability to get needed weight to a liner-top packer can also be evaluated. With the ability to analyze forces downhole, rig equipment specifications for torque and hookload can be predicted. With unparalleled user-friendliness and graphical outputs in the industry, TADPRO provides both versatility and accuracy in its calculations. The software also integrates advanced features that make it extremely easy to use and allow results to be interpreted effortlessly.
  • 11
    TomoPlus

    TomoPlus

    GeoTomo

    TomoPlus is a comprehensive near-surface solutions package. It is designed to obtain an accurate near-surface velocity model , and derive accurate long and short wavelength statics solution to help seismic data processing. TomoPlus offers both conventional and high-end near-surface refraction solutions to handle a variety of near-surface problems. In simple situations, conventional approaches are applied to resolve high velocity contrasts and offer high resolution solutions. In complex areas, conventional methods may be applied to derive a good initial velocity model, and then high-end imaging technologies, such as nonlinear traveltime tomography, full waveform tomography, or joint traveltime waveform tomography may be applied to resolve more details. Besides several robust automatic first-break pickers, TomoPlus offers basic and advanced 2D & 3D near-surface imaging and statics approaches;
  • 12
    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.
  • 13
    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.
  • 14
    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.
  • 15
    OCPS

    OCPS

    RPMGlobal

    OCPS is 100% script-free and specifically designed to deal with the challenges of open-cut phosphate mines. It is made up of pre-defined logic, which, when combined with the knowledge of mining engineers, automatically determines what is practically possible to achieve across one or multiple mining operations. This agility gives Engineers the ability to respond rapidly to the market and maximise output, delivering shareholder value. OCPS is the only Enterprise Planning solution that complies with industry standards and aligns to ISA-95, delivering true collaboration across the mining value chain.Automatically creates the scheduling reserves from geology and design, whilst handling massive models. Simultaneously schedules mining and dumping, so you know the source and destination of every step.
  • 16
    VelComp

    VelComp

    Velocity

    Graphically edit data in va, vi, vrms, or depth domains, graphically display multiple surveys, create composite velocity functions from multiple surveys, choose data interpolation method, change correctional velocity and convert depth to time.
  • 17
    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.
  • 18
    GaeaSynergy

    GaeaSynergy

    GAEA Technologies

    It uses the synergy within the geoscientific data to effectively and efficiently fulfill the needs of several industries. The program can be used to evaluate contaminants, soil and rock properties, mineral deposits, and oil and gas deposits. It is ideal for the environmental, geotechnical, mining, oil sands, and petroleum industries.GaeaSynergy is comprised of a base application and several optional modules. The base application is free and is used as a platform that all of the other modules build upon. Using the optional modules, the program can be used to generate geotechnical test results and reports, lab analyses reports, boring and well logs, cross-sections, and fence diagrams. The base application of GaeaSynergy consists of several components that provide functionality to both the base application and optional modules.
  • 19
    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.
  • 20
    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.
  • 21
    Prediktor APIS
    Best-in-class, world-leading data management solutions for onshore and offshore wind, developed in collaboration with a leading multinational energy company. Our data management software, Prediktor APIS is a component-based architecture that serves Industrial Internet of Things (IIoT) interoperability purposes with various industry-standard protocols and approaches. It utilizes OPC UA technologies to strive for interoperability and openness in industrial operations. This architecture’s component strategy assures that each deployment can balance the right level of functionality and complexity without sacrificing robustness. Through industry-unique standardization, Prediktor APIS provides a unified way of accessing and displaying all kinds of data associated with your wind asset. This results in a highly efficient ‘software platform’ that can quickly and easily build practical IIoT applications at scale.
  • 22
    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.
  • 23
    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
  • 24
    Maptek GeoSpatial Manager
    GeoSpatial Manager allows dynamic, automatic updates to any survey surface to produce a single source of truth at any point in time. GeoSpatial Manager combines smart visualization tools with a simple web interface. The result is an easy-to-use system for managing as-built surfaces that can be accessed securely by everyone in an organization. This unique solution dynamically updates and merges surveyed surfaces, allowing users to manage, visualize, and download any as-built surface at any point in time over the life of a project and apply it to downstream tasks. Defining your as-built surface now and at key points in time improves understanding, efficiency, and collaboration. The solution allows all surfaces of a project to be accessed and dynamically visualized using a time slider. Centralized storage on a cloud or network server avoids frustration and risk arising from locating survey files that may be stored in various folders on a local or server machine.
  • 25
    Maptek PointModeller
    Maptek develops smart, easy-to-use software across the quarry, aggregates, civil engineering, and mining applications. If you collect point cloud data using a drone or other sensor then you need PointModeller, the latest point cloud processing solution. PointModeller is ideal for converting drone or other lightweight, mobile sensor point cloud data into deliverables for civil, topographic, quarry, and aggregate operations. Featuring powerful 3D visualization, smart filtering, and interactive manipulation tools, PointModeller translates your 3D point clouds into actual deliverables. Intuitive, powerful tools help manage stockpile inventory through accurate volumetrics, create topographic or 3D surfaces, and track digging conformance. Increase your productivity and optimize your workflow in quarrying, civil, or topographical applications with PointModeller. Cost-effective subscription package for any drone or mobile sensor user, providing decision support capability for your project.
  • 26
    Maptek BlastLogic
    Maptek BlastLogic is an all-in-one solution that adds value to open-cut operations through streamlined drill & blast design, tracking, and analysis. It enables operations to make blast implementation decisions with reference to mine plans, geology, and geotechnical data with instant data connection and visualization in the field or office. Flexible drill and blast system designed to work in a demanding production environment. Access to data is immediate and universal across users, simplifying and accelerating routine tasks. Innovation in blast design, modeling, and analysis. Centralized record of all operational blast data. Interfaces with leading drill navigation systems. A business-wide solution that can be scaled to suit your operation. Superior blast performance is achieved by fusing distinct data sets associated with mine planning, drill guidance, field survey, load design parameters, and post-blast evaluation to create a more intelligent blast design.
  • 27
    Maptek PointStudio
    Dedicated workflows and reporting options improve efficiency and productivity for both surface and underground mine operations. Get a quick and clear picture of the status of your project with intuitive point cloud processing tools. Process and combine point cloud data from Maptek laser scanners, UAVs, and other lidar sensors into easy-to-understand deliverables. Measure stockpile volumes with ease, update end-of-month survey models with new field data, and analyze geotechnical risks that could impact the safety of your operation. PointStudio provides the tools to accurately measure, quantify, and communicate conformance to design. PointStudio is delivered on the Maptek Workbench for interoperability with other Maptek solutions. Users can easily set up workflows to automate and standardize site processes. Custom toolbars, menus, workflows, and shortcut keys are easily set up to suit individual work patterns and standardize processes across teams, sites, and operations.
  • 28
    Maptek DomainMCF
    Maptek DomainMCF uses machine learning to generate domain boundaries directly from sample data for the rapid creation of resource models. Geologists feed in drilling or other sampling data and obtain domain or grade models in dramatically less time than traditional resource modeling methods. Maptek DomainMCF moves away from complex software installed on desktop computers and shifts costs from capital to operating budgets. Faster, secure cloud processing is supported by flexible licensing. Generate resource models in minutes or hours, depending on the size, data density, and complexity of the deposit. Many operations only have the ability to update their resource models once or twice a year. Using DomainMCF, your project can be modeled in minutes with results comparable to classical techniques. You remain in control of the process without the onerous preparation work. New data can be added and models regenerated quickly to reflect the current data.
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    Maptek Vestrex
    Automation and orchestration for strategic decision-making. Generate valuable connections between diverse data sources regardless of product, application, process, or format. Maptek has been developing hardware and software solutions for more than 40 years. Now we turn our focus to integrating those solutions with inter-process workflows across the mining value chain. Maptek Vestrex provides the ecosystem for automation and orchestration, centrally connecting various data sources, mining processes, and system outputs. Secure data access and management from a centralized platform is strengthened by effortless data transfer between cloud and desktop environments. This enables valuable connections between diverse data sources without constraints from the product, application, process, or format. Making technical data available in the cloud encourages collaboration between stakeholders across mining roles, teams, and organizations to extend the value beyond traditional applications.
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    PaleoScan
    PaleoScan is a seismic interpretation software based on a semi-automated approach that produces chrono-stratigraphically consistent geological models. This unique technology, patented in 2009, allows our clients to accelerate their seismic interpretation cycle, scan the subsurface in real time to focus on high-potential areas, and identify hydrocarbon accumulation or CO2 storage areas. Another significant advantage of PaleoScan is its ability to produce a 3D geological model of the entire seismic cube, which allows the visualization and interpretation of the geological reservoirs as well as the overlying layers up to the seabed, in order to establish a reliable ranking of the storage reservoirs, taking into consideration the risks inherent to gas injection. At the confluence of powerful algorithms, computational power, and data analysis, our revolutionary technology pushes your seismic interpretation to an unprecedented level.