Alternatives to Geminus

Compare Geminus alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to Geminus in 2026. Compare features, ratings, user reviews, pricing, and more from Geminus competitors and alternatives in order to make an informed decision for your business.

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    DC-E DigitalClone for Engineering

    DC-E DigitalClone for Engineering

    Sentient Science Corporation

    DigitalClone® for Engineering is the world's only gearbox reliability prediction solution integrating multiple scales of analysis in a single software package. In addition to modeling and analysis capabilities at the gearbox and gear/bearing levels, DC-E is the only solution available that models fatigue life based on detailed, physics-based models of the material microstructure (US Patent 10474772B2). DC-E enables construction of a gearbox digital twin with high value across all stages of the lifecycle of the physical asset - from design and manufacturing optimization to component supplier selection to failure root cause analysis to condition-based maintenance and to prognostics. This computational environment drives down the time and cost to bring new designs to the market and to sustain them over time.
    Starting Price: Upon request
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    MapleSim

    MapleSim

    Waterloo Maple

    From digital twins for virtual commissioning to system-level models for complex engineering design projects, MapleSim is an advanced modeling tool that helps you reduce development time, lower costs, and diagnose real-world performance issues. Remove vibrations with better control code, not hardware upgrades. Diagnose root-cause performance issues with detailed simulation results. Validate new design performance before physical prototyping. MapleSim is an advanced system-level modeling and simulation tool that applies modern techniques to dramatically reduce model development time, provide greater insight into system behavior, and produce fast, high-fidelity simulations. Scale and connect as the needs of your simulations grow more complex. Take your designs further with our flexible modeling language. Combine components across different domains in a virtual prototype. Solve tough machine performance problems.
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    NVIDIA Modulus
    NVIDIA Modulus is a neural network framework that blends the power of physics in the form of governing partial differential equations (PDEs) with data to build high-fidelity, parameterized surrogate models with near-real-time latency. Whether you’re looking to get started with AI-driven physics problems or designing digital twin models for complex non-linear, multi-physics systems, NVIDIA Modulus can support your work. Offers building blocks for developing physics machine learning surrogate models that combine both physics and data. The framework is generalizable to different domains and use cases—from engineering simulations to life sciences and from forward simulations to inverse/data assimilation problems. Provides parameterized system representation that solves for multiple scenarios in near real time, letting you train once offline to infer in real time repeatedly.
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    HAULSIM

    HAULSIM

    RPMGlobal

    HAULSIM connects the fleet assets, mining operational plans and the people to build a ‘digital twin’ of any mining operation – open pit or underground – to deliver an accurate representation of any mine sites haulage operations. With a 3-D Discrete Event Simulation (DES) engine, at its core, HAULSIM is the only mining simulation software that can quantify the impact of changes as the models reflect the complex and dynamic nature of a mine site in its entirety; including the variability, interactions and dependencies that occur in these systems. Decisions to a mine haulage system can be based on real data giving the user the ability to test multiple ‘why’ and ‘what-if’ scenarios to reduce operating costs through optimised performance, and ensure overall operational safety and efficiency.
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    Ansys Twin Builder
    An analytics-driven, simulation-based digital twin is a connected, virtual replica of an in-service physical asset — in the form of an integrated multidomain system simulation —that mirrors the life and experience of the asset. Hybrid digital twins enable system design and optimization and predictive maintenance, and they optimize industrial asset management. By implementing Ansys Twin Builder, you can improve top-line revenue, manage bottom-line costs and both gain and retain a competitive advantage. Ansys Twin Builder enables you to quickly create a digital twin–a connected replica of an in-service asset. This allows for enhanced lifecycle management and true predictive maintenance, saving costs to help maintain a competitive advantage.
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    gPROMS

    gPROMS

    Siemens

    Siemens' gPROMS digital process design and operations technology enables process organizations to make complex design and operating decisions daily to generate sustainable value. By capturing deep process knowledge in the form of high-fidelity predictive process models, gPROMS allows rapid and effective exploration of the process and product decision space. gPROMS encapsulates fundamental knowledge about a process, which can be analyzed and optimized using advanced mathematical techniques to enhance process design and operation. This approach accelerates innovation and helps achieve economically optimal process designs while managing technology risk. The gPROMS Process modeling environment supports the entire concept-to-operations process design cycle. With advanced analysis and optimization technologies operating on high-fidelity models, it helps accelerate process design, quantify and manage risk, and determine optimal process designs that generate value over the plant's lifetime.
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    GE Digital Twin
    Apply advanced analytics and machine learning to reduce operational costs and risks. Digital twins are a key piece of the digital transformation puzzle. They create an accurate virtual replica of physical objects, assets, and systems to boost productivity, streamline operations and increase profits. Digital Twin is most commonly defined as a software representation of a physical asset, system or process designed to detect, prevent, predict, and optimize through real time analytics to deliver business value. At GE Digital, we are focused on how digital twin software can help our customers across three core areas: Asset, Network, and Process. Monitor, simulate and control an asset, process or network as an effective strategy to improve system performance. Protect the health and safety of employees, the environment, and business objectives, by reducing asset- and process-related incidents and avoiding unplanned downtime.
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    Alchemite

    Alchemite

    Intellegens

    Alchemite provides AI-augmented physical modeling and solutions that help organizations extract actionable insights from experimental and simulation data by combining machine learning with physics-informed models to improve prediction accuracy, reduce experimental costs, and optimize product and process development. Its solutions span materials discovery and design, predictive modelling of performance and reliability, multiscale modelling that connects atomistic to macroscopic behaviour, and automation of workflow tasks such as data integration, surrogate modelling, and model validation. It supports physics-aware neural networks and hybrid modelling approaches that respect underlying scientific laws while learning from data to enable faster and more accurate simulations, reduced reliance on expensive physical testing, and improved decision-making. Intellegens’ tools are applied in areas such as battery performance prediction, chemical process optimization, etc.
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    SOLIDWORKS Simulation
    Subject your designs to real world conditions to raise product quality while reducing prototyping and physical testing costs. SOLIDWORKS® Simulation is an easy-to-use portfolio of structural analysis tools that use Finite Element Analysis (FEA) to predict a product’s real-world physical behavior by virtually testing CAD models. The portfolio provides linear, non-linear static and dynamic analysis capabilities. SOLIDWORKS Simulation Professional enables you to optimize your design, determine product mechanical resistance, product durability, topology, natural frequencies, and test heat transfer and buckling instabilities. It can also perform sequential multi-physics simulations. SOLIDWORKS Simulation Premium lets you efficiently evaluate your designs for nonlinear and dynamic response, dynamic loading, and composite materials. SOLIDWORKS Simulation Premium includes three advanced studies: Non-Linear Static, Non-Linear Dynamic, and Linear Dynamics.
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    Simcenter MAGNET
    Simcenter MAGNET is a powerful electromagnetic field simulation solution for performance prediction of motors, generators, sensors, transformers, actuators, solenoids, or any component with permanent magnets or coils. Simcenter MAGNET helps you predict the performance of any component with permanent magnets or coils. Perform low-frequency electromagnetic field simulations. Simcenter MAGNET includes capabilities to accurately model the physics of electromagnetic devices. This includes the ability to model manufacturing processes, temperature-dependent material properties, magnetization and de-magnetization modeling, and vector hysteresis models among others. Simcenter MAGNET also has a built-in motion solver with a six-degree-of-freedom capability. It allows for complex problems like magnetic levitation or complex motion to be accurately modeled and analyzed. This is made possible with a unique smart re-meshing technology.
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    Simulation Modeling

    Simulation Modeling

    Rapid Modeling Corporation

    Simulation modeling or Predictive modeling is a potent tool for developing experimental computer models that are exact copies of an existing system. These models include an AutoCAD layout, and are enhanced visually through animation to verify that the model is running just like the real system. In addition, the model runs real-world patient or product schedules and the behavior of the computer model can be benchmarked against the real system if it exists. Once a simulation model has been created, we can efficiently and accurately run detailed experiments on the computer model, and tune it for outstanding performance without ever disturbing the real system. Simulation is also commonly used to design new systems from scratch. Starting with a mere concept, our simulation models are regularly used to craft the "perfect facility, hospital, or clinic" for your organization. Simulation is also utilized as an improvement tool to existing systems that under-perform.
    Starting Price: $3,500 one-time payment
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    Cosmo Tech

    Cosmo Tech

    Cosmo Tech

    Cosmo Tech provides a 360° Simulation Digital Twin platform to solve the most complex industrial problems and lead enterprise decision making. Industrial companies rely on Cosmo Tech to predict the evolution of their organization to better understand the impact of their decisions and optimize all levels of enterprise planning; ensuring a future that is robust, resilient and sustainable. Develop scenarios that involve disruptions in your system to plan for the future. By running simulations including the likes of machine breakdowns, workers’ strikes, and increased costs, you can anticipate how to recover quickly in these events. Uncover which range of parameters and processes to adjust in your digital twin to make complex decisions with confidence. View all the variables that go into decision making, as well as cascading effects from altering them, at a glance.
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    PowerFLOW

    PowerFLOW

    Dassault Systèmes

    By leveraging our unique, inherently transient Lattice Boltzmann-based physics PowerFLOW CFD solution performs simulations that accurately predict real world conditions. Using the PowerFLOW suite, engineers evaluate product performance early in the design process prior to any prototype being built — when the impact of change is most significant for design and budgets. PowerFLOW imports fully complex model geometry and accurately and efficiently performs aerodynamic, aeroacoustic and thermal management simulations. Automated domain discretization and turbulence modeling with wall treatment eliminates the need for manual volume meshing and boundary layer meshing. Confidently run PowerFLOW simulations using large number of compute cores on common High Performance Computing (HPC) platforms.
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    TRANSWELD

    TRANSWELD

    TRANSVALOR

    In markets where the safety of welded assemblies is essential, analysis with TRANSWELD® offers a global and innovative solution to anticipate welding defects. Our simulation software integrates multi-physical models to simulate the real behavior of the metal in the liquid/mushy state to perform a complete analysis of the material evolution. TRANSWELD® also makes it possible to study the microstructure of the solid-state assembly. Then, you ensure the conformity of your welded part without going through the prototyping stage. Our software is 100% predictive. It allows you to observe your welding processes numerically by applying real conditions. For example, you can visualize the heat source movement during the simulation of laser welding or arc welding.
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    NVIDIA PhysicsNeMo
    NVIDIA PhysicsNeMo is an open source Python deep-learning framework for building, training, fine-tuning, and inferring physics-AI models that combine physics knowledge with data to accelerate simulations, create high-fidelity surrogate models, and enable near-real-time predictions across domains such as computational fluid dynamics, structural mechanics, electromagnetics, weather and climate, and digital twin applications. It provides scalable, GPU-accelerated tools and Python APIs built on PyTorch and released under the Apache 2.0 license, offering curated model architectures including physics-informed neural networks, neural operators, graph neural networks, and generative AI–based approaches so developers can harness physics-driven causality alongside observed data for engineering-grade modeling. PhysicsNeMo includes end-to-end training pipelines from geometry ingestion to differential equations, reference application recipes to jump-start workflows.
    Starting Price: Free
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    Akselos Cloud
    The Akselos Cloud platform delivers a complete Digital Twin framework via the cloud. It provides an end-to-end solution covering automated updates of asset loads and condition, through to clear dashboards showing current asset integrity. No more limitations, Akselos technology enables you to model the most complex problems in structures of any size, and in full detail. Our approach runs structural simulations a 1000x faster than legacy software. Design and operational workflows that used to take months can now be done in hours. Any relevant data, such as sensors and process parameters, can be directly connected to our models, allowing you to optimize your asset even further. All of our simulations will validate results against the applicable engineering code/standards, so that you can feel confident you asset is safe and meets all the relevant requirements.
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    VPS-MICRO

    VPS-MICRO

    VEXTEC Corporation

    VPS-MICRO predicts the life of manufactured parts by simulating the behavior of the materials they’re made from. VPS-MICRO is built on three inescapable truths. Durability is not a function of applied stress, alone, but rather a combination of that stress and the material’s reaction to it. The materials we use to build complex components and systems are not homogenous. Computer cycles are shorter and cheaper than physical testing cycles or prototyping. Using these ideas as a foundation, VEXTEC’s VPS-MICRO® is a computational software that accurately accounts for a material’s reaction to the stress imparted upon it, its variability and all its various damage mechanisms, its geometry, and the conditions of its usage over time. The result is a 3D, time and condition-based product simulation that accurately and efficiently reflects the real world physics of how, when and why damage occurs.
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    Sentaurus Process
    Sentaurus Process is an advanced 1D, 2D and 3D process simulator for developing and optimizing silicon semiconductor process technologies. It is a new-generation process simulator for addressing the challenges found in current and future process technologies. Equipped with a set of advanced process models, which include default parameters calibrated with data from equipment vendors, Sentaurus Process provides a predictive framework for simulating a broad range of technologies from nanoscale CMOS to large-scale high-voltage power devices. Sentaurus Process is part of a comprehensive suite of core TCAD products for multi-dimensional process, device, and system simulations, embedded into a powerful user interface. Fast prototyping, development, and optimization of a broad range of technologies with comprehensive physics-based process modeling capabilities. Enhance device performance by optimization of thermal and mechanical stress in process structures with stress history.
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    MAK ONE

    MAK ONE

    MAK Technologies

    A powerful and flexible Computer Generated Forces (CGF) platform to fill your synthetic environments with urban, battlefield, maritime, and airspace activity. VR-Engage lets users play the role of a first-person human character; a ground vehicle driver, gunner, or commander; or the pilot of a fixed-wing aircraft or helicopter. Game-like visual quality in a high-performance image generator. Designed by modeling & simulation experts for training and simulation projects. Physically accurate sensors, model the physics of light in any wavelength to represent electro-optical, night-vision, and infrared sensors. Applications that let you model, simulate, visualize, and participate in whole-earth multi-domain simulations. Multi-domain computer-generated forces. Multi-role virtual simulator. Image generator & battlefield visualization. EO, IR, and NVG imaging sensors. Synthetic aperture radar simulation.
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    CAEmate

    CAEmate

    CAEmate

    WeStatiX SHM combines true simulation-based Digital Twins with Artificial Intelligence into a revolutionary platform for infrastructure monitoring. It can be applied to any kind of structure, from bridges to tunnels, and even to slopes and rock walls, to provide accurate insight into the current and future behavior of the monitored object. WeStatiX can be used to improve structure safety, optimize monitoring costs, and reduce the environmental impact of the build world. All in your favorite browser. With WeStatiX|SHM, you can create custom digital twins for real-time monitoring of existing structures in the cloud. This is possible for many kinds of infrastructure, such as bridges, rock walls, slopes, dams, buildings, and much more! The system is based on the combination of several innovative digital technologies, and thanks to artificial intelligence algorithms it is a powerful tool for the inspection and maintenance of any monitored object.
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    ProModel

    ProModel

    BigBear.ai

    ProModel is a discrete event simulation and predictive analytics tool, that helps provide clarity for your most complex decisions. Accelerate your system's performance while reducing risk with ProModel AI simulation software. We provide data-driven solutions in industries that require precise planning and forecasting to ensure operations run smoothly, efficiently, and optimally. You need to know how changes to your operations will impact production and scheduling, today and in the future. Our AI simulation software products allow organizations to design, simulate, and optimize factory layouts with a digital twin, quickly and accurately forecast patient census and bed capacity, uncover and prevent bottlenecks in operations, and optimize capacity planning and scheduling while streamlining production flows. Leverage dynamic simulation models for better process management. Use visual insights to see where and why bottlenecks occur.
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    20-sim

    20-sim

    20-sim

    20-sim is a modeling and simulation software package for mechatronic systems. With 20-sim you can enter models graphically, similar to drawing an engineering scheme. With these models, you can simulate and analyze the behavior of multi-domain dynamic systems and create control systems. You can even generate C-code and run this code on hardware for rapid prototyping and HIL-simulation. 20-sim provides you with features that allow you to create models very quickly and intuitively. You can create models using equations, block diagrams, physics blocks and bond graphs. Various features help you to build your models, simulate them and analyze their performance. Models are built in the 20-sim editor. This editor contains a large model library with building blocks to help you to construct models. The model library contains many components such as block diagrams and bond graphs.
    Starting Price: €108 one-time payment
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    iTwin

    iTwin

    Bentley Systems

    It can be challenging when the data you need for digital twins is in incompatible formats and different data sources from different vendors. It really shouldn't be that hard to create, visualize and analyze digital twins. Like you, we are engineers who are passionate about solving problems, and our software has helped solve some of the most complex engineering challenges in infrastructure. Combine engineering data, reality data, and IoT data. Create an immersive experience in 3D / 4D. Gain a deeper understanding of infrastructure assets. Unlock the value of digital data and make a difference. Provide the digital capabilities that drive business success. A digital twin is a digital representation of a physical asset, process or system, which allows us to understand and model its performance. Digital twins are continuously updated with data from multiple sources – which is what makes them different from static, 3D models.
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    Availability Workbench
    Powerful simulation software for improving asset performance. Maintenance and spares optimization, availability studies, reliability-centered maintenance, life cycle cost evaluations, and accelerated life testing all in one integrated suite. Connect directly to your SAP or MAXIMO system and analyze your data. Identify critical equipment, and automatically build failure models using Weibull analysis. Optimize your maintenance plans using simulation and reduce costs. Predict system availability and optimize your design. Simulation of multiple-product capacity with target cost penalties. Model system dependencies with RBDs or fault trees. Build in operational rules for accurate performance simulation. Determine the most effective spare holding policy. Predict life cycle costs and analyze your test data for stressed failures in the ALT module. Identify plant performance trends in the process reliability module.
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    Geminai

    Geminai

    YouNeed3D

    Geminai is YN3D’s platform for delivering the most photorealistic Digital Twin that improves how all stakeholders operate, manage and service physical assets. Through visualizing the physical asset via reality models and connecting an asset’s information, Geminai enables users to centralize, visualize and share information in the most realistic and ‘true’ visual environment possible. Delivering a Digital Twin of your Assets via a True photorealistic representation offers the best insights available that will boost productivity and safety, reduce costs over the asset's lifecycle and allow all stakeholders to make more informed decisions when necessary. Remove interpretation errors and improve stakeholder collaboration by viewing assets with the highest-fidelity 3D models and not solely through 2D documents.
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    Schrödinger

    Schrödinger

    Schrödinger

    Transform drug discovery and materials research with advanced molecular modeling. Our physics-based computational platform integrates differentiated solutions for predictive modeling, data analytics, and collaboration to enable rapid exploration of chemical space. Our platform is deployed by industry leaders worldwide for drug discovery, as well as for materials science in fields as diverse as aerospace, energy, semiconductors, and electronics displays. The platform powers our own drug discovery efforts, from target identification to hit discovery to lead optimization. It also drives our research collaborations to develop novel medicines for critical public health needs. With more than 150 Ph.D. scientists on our team, we invest heavily in R&D. We’ve published over 400 peer-reviewed papers that demonstrate the strength of our physics-based approaches, and we’re continually pushing the limits of computer modeling.
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    ProModel

    ProModel

    ProModel

    ProModel is a discrete-event simulation technology that is used to plan, design and improve new or existing manufacturing, logistics and other operational systems. It empowers you to accurately represent real-world processes, including their inherent variability and interdependencies, in order to conduct predictive analysis on potential changes. Optimize your system around your key performance indicators. Create a dynamic, animated computer model of your business environment from CAD files, process or value stream maps, or Process Simulator models. Clearly see and understand current processes and policies in action. Brainstorm using the model to identify potential changes and develop scenarios to test improvements which will achieve business objectives. Run scenarios independently of each other and compare their results in the Output Viewer developed through the latest Microsoft® WPF technology.
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    ProModel Optimization Suite
    ProModel is a discrete-event simulation technology that is used to plan, design and improve new or existing manufacturing, logistics and other operational systems. It empowers you to accurately represent real-world processes, including their inherent variability and interdependencies, in order to conduct predictive analysis on potential changes. Optimize your system around your key performance indicators. Create a dynamic, animated computer model of your business environment from CAD files, process or value stream maps, or Process Simulator models. Clearly see and understand current processes and policies in action. Brainstorm using the model to identify potential changes and develop scenarios to test improvements which will achieve business objectives. Run scenarios independently of each other and compare their results in the Output Viewer developed through the latest Microsoft® WPF technology.
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    AQBioSim

    AQBioSim

    SandboxAQ

    AQBioSim is a cloud-native platform developed by SandboxAQ that leverages Large Quantitative Models (LQMs) grounded in physics and chemistry to revolutionize materials discovery and optimization. By integrating Density Functional Theory (DFT), Iterative Full Configuration Interaction (iFCI), Generative AI, Bayesian Optimization, and Chemical Foundation Models, AQBioSim enables high-fidelity simulations of molecular and material behaviors under real-world conditions. AQBioSim's capabilities include predicting performance under various stresses, accelerating formulation through in silico testing, and exploring sustainable chemical processes. Notably, AQBioSim has demonstrated significant advancements in battery technology by reducing lithium-ion battery end-of-life prediction time by 95%, achieving 35x greater accuracy with 50x less data.
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    AQChemSim

    AQChemSim

    SandboxAQ

    AQChemSim is a cloud-native platform developed by SandboxAQ that leverages Large Quantitative Models (LQMs) grounded in physics and chemistry to revolutionize materials discovery and optimization. By integrating Density Functional Theory (DFT), Iterative Full Configuration Interaction (iFCI), Generative AI, Bayesian Optimization, and Chemical Foundation Models, AQChemSim enables high-fidelity simulations of molecular and material behaviors under real-world conditions. AQChemSim's capabilities include predicting performance under various stresses, accelerating formulation through in silico testing, and exploring sustainable chemical processes. Notably, AQChemSim has demonstrated significant advancements in battery technology by reducing lithium-ion battery end-of-life prediction time by 95%, achieving 35x greater accuracy with 50x less data.
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    Siemens NX

    Siemens NX

    Siemens

    Siemens NX software is a flexible and powerful integrated solution that helps you deliver better products faster and more efficiently. NX delivers the next generation of design, simulation, and manufacturing solutions that enable companies to realize the value of the digital twin. Supporting every aspect of product development, from concept design through engineering and manufacturing, NX gives you an integrated toolset that coordinates disciplines, preserves data integrity and design intent, and streamlines the entire process. A generative design process is one that engineers can adopt to quickly develop new products based upon meeting design constraints. It is an iterative process that produces fast results the engineer can refine via constraint variation to narrow in on the best design to meet the requirements.
    Starting Price: $287 per month
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    Working Model 2D

    Working Model 2D

    Design Simulation Technologies

    Working Model is the best selling motion simulation product in the world. Confirm your design with powerful analytical tools. Fast “run-analyze-refine” cycle helps to optimize designs before building physical prototypes. Reduce physical prototyping. You are in total control of the simulation environment. Quickly build, run, and refine simulations with pre-defined objects and constraints. Run, stop, reset, single step, or pause the simulation at any time. Analyze your latest design by measuring force, torque, acceleration, etc. acting on any object. View output as vectors or in numbers and graphs in English or metric units. Import your 2D CAD drawings in DXF format. Input values from equations, sliders and DDE links to MATLAB and Excel. Create bodies and specify its mass properties, initial velocity, electrostatic charge, etc. Run or edit scripts to optimize simulations, document models, and more. Create visually appealing presentations by attaching pictures.
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    PIPE-FLO

    PIPE-FLO

    Revalize

    PIPE-FLO® is the world's leading fluid flow analysis and design modeling solution for those who design, operate, and manage mission-critical fluid processing environments. A suite of products to increase the speed and accuracy of fluid system modeling calculations—making design, commissioning, operation, and modification of fluid piping systems more efficient and effective. PIPE-FLO from Revalize is your strategic partner in mastering complex fluid systems and staying a step ahead of future challenges with engineering precision and operational excellence. Join thousands of designers, operators, and manufacturers worldwide who have transformed their fluid operations with PIPE-FLO from Revalize.
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    OPTIMICA Compiler Toolkit
    Modelon’s OPTIMICA Compiler Toolkit, the most advanced Modelica-based mathematical engine on the market, offers users a powerful solution for the automation, simulation and optimization of system behaviors throughout the model-based design cycle. Trusted as the compiler for Modelon Impact, OPTIMICA enables users to build multi-domain physical systems by choosing from thousands of available model components. OPTIMICA’s state-of-the-art solvers empower evaluation of complex physical systems – supporting transient simulations as well as steady-state computations and dynamic optimization. The sophisticated mathematical engine can manipulate and simplify models to improve performance and robustness, serving industries and applications ranging from automotive and active safety to energy and power plant optimization. To meet the increased need for regulating power in today’s energy market, start-up optimization of thermal power plants is a key industrial need.
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    CAESIM

    CAESIM

    Adaptive Research

    Adaptive Research is pleased to announce the immediate release of the CAESIM 2024 simulation platform, providing advanced computational fluid dynamics modeling with multi-physics capabilities. The new software release provides new tools and capabilities that optimize the modeling process and provide the CFD engineer with fast simulation solutions.
    Starting Price: $1295/annual standard
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    COMSOL Multiphysics
    Simulate real-world designs, devices, and processes with multiphysics software from COMSOL. General-purpose simulation software based on advanced numerical methods. Fully coupled multiphysics and single-physics modeling capabilities. Complete modeling workflow, from geometry to postprocessing. User-friendly tools for building and deploying simulation apps. The COMSOL Multiphysics® software brings a user interface and experience that is always the same, regardless of engineering application and physics phenomena. Add-on modules provide specialized functionality for electromagnetics, structural mechanics, acoustics, fluid flow, heat transfer, and chemical engineering. Choose from a list of LiveLink™ products to interface directly with CAD and other third-party software. Deploy simulation applications with COMSOL Compiler™ and COMSOL Server™. Create physics-based models and simulation applications with this software platform.
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    Vensim

    Vensim

    Ventana Systems

    Vensim® is the software of choice for thousands of analysts, consultants, and researchers worldwide for building high-quality simulation models in business, scientific, environmental, and social systems. Vensim integrates into one environment a powerful suite of tools for developing, testing, interpreting, and distributing models. These tools include cause-and-effect diagramming, graphical and textual model construction, easy reproduction of model structure using subscripts (arrays), Monte Carlo sensitivity analysis, optimization, data handling, and application interfaces. Further features enable advanced model resolution and fidelity. Vensim includes patented techniques to aid error detection, error prevention, and rapid comprehension of complex results.
    Starting Price: $50 per month
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    Creator

    Creator

    Presagis

    Natively based on OpenFlight, the most widespread industry standard for 3D simulation models, Creator is the original software for creating optimized 3D models for use in your virtual environment. Designed specifically for simulation applications, Creator is the industry-standard software in the creation of optimized 3D models for real-time virtual environments. Content creators are constantly challenged to produce more models with higher detail, increased realism, and improved performance. Using a rich set of tools, content creators can build models from scratch, edit or import existing ones, and enhance objects for use in sensor-capable simulations. With full control of the modeling process, Creator allows you to quickly generate highly optimized and physically accurate 3D models with varying levels of detail. With complete interactive control of your models from database level to a single vertex attribute, Creator lets you develop models faster and with more control than ever.
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    Deepsona

    Deepsona

    Deepsona

    Deepsona is an AI-powered market research platform that uses synthetic audience simulations to generate predictive consumer behaviour insights. Built on behavioural science and advanced AI modeling, the platform enables marketers, market researchers and product teams to evaluate commercial viability, test messaging strategies and assess market acceptance before launch. The platform combines large-scale persona generation, interaction modeling, and sentiment analysis into a unified simulation engine. Users can run concept tests, pricing experiments, and positioning evaluations that produce high-fidelity predictive data on consumer responses. Key capabilities include multi-trait synthetic AI personas, automated sentiment evaluation, and conversion likelihood modeling. Deepsona transforms traditional market research from retrospective analysis into forward-looking simulation, enabling faster validation cycles and data-driven go-to-market decisions.
    Starting Price: $79/month
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    QX Simulator

    QX Simulator

    Quantum Computing Simulation

    The realization of large-scale physical quantum computers appears to be challenging, alongside the efforts to design quantum computers, significant efforts are focusing on the development of useful quantum algorithms. In the absence of a large physical quantum computer, an accurate software simulation of quantum computers on a classical computer is required to simulate the execution of those quantum algorithms and to study the behavior of a quantum computer and improve its design. Besides simulating error-free execution quantum circuits on a perfect quantum computer, the QX simulator can simulate realistic noisy execution using different error models such as the depolarizing noise. The user can activate the error model and define a physical error probability to simulate a specific target quantum computer. This error rate can be defined based on the gate fidelity and the qubit decoherence of the target platform.
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    Analytic Solver

    Analytic Solver

    Frontline Systems

    Analytic Solver Optimization - 100% upward compatible from the Excel Solver - handles every type and size of the conventional optimization problem (without uncertainty). Unlike other optimization software, it algebraically analyzes your model structure and maximally exploits multiple cores in your PC. You can solve nonlinear models 10 times larger, and linear models 40 times larger than the Excel Solver, get solutions much faster – and plug-in Solver Engines to handle up to millions of variables! Analytic Solver Simulation gives you easy-to-use, powerful Monte Carlo simulation and risk analysis, decision trees, and simulation optimization using Frontline’s advanced Evolutionary Solver. With 60 probability distributions plus compound distributions, automatic distribution fitting, rank-order and copula-based correlation, 80 statistics, risk measures and Six Sigma functions, multiple parameterized simulations and more.
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    SimuPACT

    SimuPACT

    SimGenics

    SimuPACT is an advanced simulation platform that enables rapid development of high-fidelity, full-scope power and process plant simulators with modern, intuitive graphical tools and a powerful integrated architecture that supports engineering analysis, operator training, and control system checkout on the same platform without extra cost. It embraces the latest software technologies and engineering strategies to deliver higher accuracy and faster simulator creation, with configurable modelling tools, solvers, and extensive libraries for electrical networks, multi-phase flows, logic and control networks, sensors, actuators, mechanical systems, and materials handling, and it integrates seamlessly with distributed control system (DCS) emulation and third-party systems using standard protocols. SimuPACT also includes a flexible instructor station that lets users configure simulations, initiate malfunctions, manage scenarios, and review trainee performance.
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    Twinn Witness

    Twinn Witness

    Haskoning

    Twinn Witness is a predictive simulation software developed by Royal HaskoningDHV that enables organizations to create dynamic virtual models of existing and planned facilities and operations. By experimenting with various 'what-if' scenarios, users can uncover in-depth business insights and validate decisions in a risk-free environment. The software offers both 2D and immersive 3D simulation models, facilitating improved communication and understanding of processes and data interrelationships. User-friendly, flexible, and powerful, Twinn Witness provides detailed insights into capital expenditures, continuous improvement, and operational enhancements before investments are made, thereby improving performance, reducing costs, and building robust business cases for sustainable growth and increased return on investment.
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    NVIDIA Isaac Sim
    NVIDIA Isaac Sim is an open source reference robotics simulation application built on NVIDIA Omniverse, enabling developers to design, simulate, test, and train AI-driven robots in physically realistic virtual environments. It is built atop Universal Scene Description (OpenUSD), offering full extensibility so developers can create custom simulators or seamlessly integrate Isaac Sim's capabilities into existing validation pipelines. The platform supports three essential workflows; large-scale synthetic data generation for training foundation models with photorealistic rendering and automatic ground truth labeling; software-in-the-loop testing, which connects actual robot software with simulated hardware to validate control and perception systems; and robot learning through NVIDIA’s Isaac Lab, which accelerates training of behaviors in simulation before real-world deployment. Isaac Sim delivers GPU-accelerated physics (via NVIDIA PhysX) and RTX-enabled sensor simulation.
    Starting Price: Free
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    SimulationX

    SimulationX

    ESI Group

    Technical systems, like machines and manufacturing plants, are often very complex. They consist of a multitude of components and subsystems, usually based on diverse technical domains and increasingly fitted with sensors and controls. Their dynamic interactions have a significant impact on safety, performance, and comfort. With SimulationX, you have a single platform for modeling, simulating, and analyzing technical systems, including mechanics, hydraulics, pneumatics, electronics, and controls, as well as thermal, magnetic, and other physical behavior. Comprehensive component libraries with application-oriented model elements ensure you have the right tools available for your task.
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    Honeywell UniSim Design Suite

    Honeywell UniSim Design Suite

    Honeywell International

    Honeywell's UniSim® Design Suite is a versatile process simulation and modeling software that enables engineers to create steady-state and dynamic models for plant design, optimization, and troubleshooting. With tools for sustainability-focused applications like carbon capture and green hydrogen production, it supports operational efficiency and business goals. UniSim models can act as digital twins to monitor plant performance, predict process changes, and improve safety, production, and profitability.
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    Vertex Digital Twin Platform

    Vertex Digital Twin Platform

    Vertex Software LLC.

    Vertex improves and enhances your current workflows and tools. Plug our visualization engine directly into your existing interface, applications, and systems. Vertex is easy to use and low cost to deploy and maintain. Unlock 3D product data from any size model, to any number of users, on any device.
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    SIMULATE

    SIMULATE

    RPMGlobal

    SIMULATE is a purpose-built Discrete Event Simulation (DES) solution for Original Equipment Manufacturers (OEMs) to model complex, 3D mining environments using fully customizable, brand-specific mining equipment. SIMULATE is a platform used by OEMs globally to provide accurate, quantifiable, and productive equipment and service solutions for mining clients. Users of SIMULATE can showcase and articulate equipment value that is quantified and proven through simulated demonstrations. OEMs can leverage customer data to build a ‘digital twin’ of any mining operation, open pit or underground, to deliver an accurate representation of any mine site's haulage operations, actively demonstrating the value their equipment and services can provide. SIMULATE uses the most widely used haulage calculation engine in the mining industry, ensuring that you and your customers are on the same page. Increase profitability through improved operations.
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    FEATool Multiphysics

    FEATool Multiphysics

    Precise Simulation

    FEATool Multiphysics - "Physics Simulation Made Easy" - a fully integrated physics, FEA, and CFD simulation toolbox. FEATool Multiphysics is a fully integrated simulation platform with a unified interface for several Finite Element Analysis (FEA) and Computational Fluid Dynamics (CFD) multi-physics solvers, such as OpenFOAM, SU2 Code, and FEniCS. This uniquely allows for modeling coupled physics phenomena such as found in fluid flow, heat transfer, structural, electromagnetics, acoustics, and chemical engineering applications, within a single user-friendly interface. With these capabilities, FEATool Multiphysics has become trusted tool by engineers and researchers worldwide to accelerate innovation and quickly achieve results in the energy, automotive, semi-conductor, and process industries.
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    Simpack

    Simpack

    Dassault Systèmes

    Simpack is a general multibody system simulation (MBS) software enabling analysts and engineers to simulate the non-linear motion of any mechanical or mechatronic system. It enables engineers to generate and solve virtual 3D models in order to predict and visualize dynamic motion, coupling forces and stresses. Simpack is used primarily within the automotive, engine, HIL/SIL/MIL, power transmission, railway, and wind energy industrial sectors, but can be applied to any branch of mechanical engineering. Simpack simulation software is particularly well-suited to high frequency transient analyses, even into the acoustic range. Simpack was primarily developed to handle complex non-linear models with flexible bodies and harsh shock contact.