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An Object-Oriented Hierarchical Patch Dynamics Paradigm (HPDP) for Modeling Complex Groundwater Systems across Multiple-Scales

Shu-Guang Li, Qun Liu, Soheil Afshari

Volume 21, Issue 5, Pages 744-749, May 2006, Environmental Modelling & Software

Abstract

In this paper, we present an object-oriented hierarchical patch dynamics paradigm (HPDP) for modeling complex groundwater systems across multiple-scales – one that has the potential to significantly alleviate the infamous “curse-of-dimensionality” and the associated computational bottlenecks. The HPDP takes advantage of hierarchy theory, divides and conquers complexities, and decouples scale-dependent dynamics hierarchically. The object-oriented HPDP represents a generalization of the “telescopic-mesh-refinement” (TMR) techniques, providing dynamic model coupling, visual interactive steering, and freeing the modelers from the impractical task of having to interact offline and iteratively with potentially large numbers of modeling patches. The HPDP provides a valuable tool for understanding scale-dependent processes and for practical groundwater investigations. We illustrate the effectiveness of the HPDP and its potential for multi-scale groundwater modeling using an example.

  • 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
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    • Advertising with Us
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