Cloud-based, Data-enabled, Realtime Interactive Global Groundwater Modeling
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IGW2D References

  • Quick Tutorial
  • Video Tutorials
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  • Step by Step
  • Video Tutorial
Provided here are: quick written tutorials ,video tutorials, and step-by-step case studies. IGW2D is a real-time, interactive and visual software system for unified deterministic and stochastic groundwater modeling. 
Taking advantage of recent developments in groundwater research, numerical simulation techniques, and visual programming, this software system allows for unified deterministic and stochastic groundwater modeling. The system is designed to simulate two-dimensional unsteady flow and reactive transport in general groundwater formations subject to both systematic and ‘randomly’ varying stresses and geological and chemical heterogeneity. The current version of the software, characterized by its full interactivity and built-in real-time and animated visualization, has the following distinct capabilities:
  • High level and grid-independent conceptual modeling. This includes interactive visual specification and editing of model domain, aquifer properties and stresses over any arbitrarily shaped area at any point in time during the process of model construction, simulation, and analysis.
  • Automatic grid generation and automatic conversion of conceptual representation to numerical model(s).
  • Interactive simulation and ‘real-time’ visualization and animation of flow in response to deterministic as well as stochastic stresses.
  • Interactive, visual, and ‘real-time’ particle tracking, random walk, and reactive  plume modeling in both systematically and randomly fluctuating flow.
  • Interactive and visual conditional simulation of hydrogeologic and geochemical spatial fields; ‘real-time’, visual and parallel conditional flow and transport simulations.
  • Interactive scattered data interpolation, regression, and kriging.
  • Interactive water and contaminant mass balance analysis with visual and real-time flux update.
  • Interactive, visual, and ‘real-time’ monitoring of head hydrographs and concentration  breakthroughs.
  • Real-time modeling and visualization of aquifer transition from confined to unconfined to partially desaturated or completely dry and rewetting.
  • Interactive, visual, and ‘real-time’ sub-scale modeling using telescopic approach.
  • Interactive, visual, and ‘real-time’ stochastic Monte Carlo simulation.
The user-friendly software system dramatically simplifies the process of groundwater modeling and provides virtually ‘instant’ analysis with visual solution representation. The software provides an effective tool: 1) for groundwater professionals, site planners, managers, and regulators to conduct site investigation and experiment in ‘real-time’ with sampling strategies, management options, and remedial schemes, 2) for researchers to study field-scale physical and chemical groundwater processes in heterogeneous soils, and 3) for professors to teach groundwater flow and transport and site investigation and remediation using vivid interactive and real-time simulations. 

Provided here are: quick written tutorials ,video tutorials, and step-by-step case studies. ​
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  • Home
    • Overview
    • MAGNET Modeling Features
  • MAGNET Network
    • Global Modeling Platform
    • Global Model Network
    • Global User Network
  • Library
    • Research Videos >
      • Real world heterogeneity
      • Random Field Representation
      • Effects of Spatial Heterogeneity
      • Effects of Temporal Variability
      • Effects of Interacting Heterogeneity
      • Effects of Multiscale Heterogeneity
      • Macridispersion Models
      • Monte Carlo Simulations
      • Transport in Complex Aquifers
      • Transport in Fractured Tills
    • Education Videos >
      • Regional Vertical Circulation
      • Seepage Under Dams
      • Aquifer Response to Pumping
      • Law of Refraction
      • FLow in Anisotropic Aquifers
      • Wellhead ​Delineation
      • Connection with Surface Water
      • Stream Aquifer Interaction
      • Artificial Recharge
      • Groundwater Contamination
      • Transport Processes
      • Groundwater Remediation
    • MAGNET USER REFERENCE >
      • Magnet Quick Tutorials
      • Magnet User Manual
    • IGW USER REFERENCE >
      • IGW2D References
      • IGW2D Example Problems
      • IGW3D User Manual
      • IGW3D Tutorials
      • IGW3D Reference Manual
    • IGW Verification >
      • Comparison with Analytical Solutions
      • Comparison with MODFLOW
      • Comparison with Field Observations
    • MGMT USER REFERENCE >
      • MGMT User Manual
      • MGMT Tutorials
    • MGMT Verification
    • Research Publications
    • Inquiry-based Learning
    • Real World Case Studies >
      • Gallery A
      • Gallery B
    • Published MAGNET NETWORK Models
  • Services
    • Advertising with Us
  • Support
    • MAGNET Account >
      • Sign Up
      • Edit Account
    • Frequently asked questions
    • MAGNET Discussion Forum
    • Live Chat
    • Terms & Privacy
    • Contact
    • Meet the Team
  • Career
    • Job Opening