HR: 0800h
AN: H41E-0456 [Abstracts]
TI: A GIS-Enabled, Michigan-Specific, Hierarchical Groundwater Modeling and Visualization System
AU: * Liu, Q
EM: liuqu@egr.msu.edu
AF: Department of Civil and Environmental Engineering,Michigan State University, A112 RCE, East Lansing, MI
48824
United States
AU: Li, S
H41E-0456
AF: Department of Civil and Environmental Engineering,Michigan State University, A112 RCE, East Lansing, MI
48824
United States
AU: Mandle, R
H41E-0456
AF: Michigan Department of Environmental Quality, 525 W Allegan Str, Lansing, MI 48909
United States
AU: Simard, A
H41E-0456
AF: Department of Civil and Environmental Engineering,Michigan State University, A112 RCE, East Lansing, MI
48824
United States
AU: Fisher, B
H41E-0456
AF: Michigan Department of Environmental Quality, 525 W Allegan Str, Lansing, MI 48909
United States
AU: Brown, E
H41E-0456
AF: Michigan Department of Environmental Quality, 525 W Allegan Str, Lansing, MI 48909
United States
AU: Ross, S
H41E-0456
AF: Michigan Department of Environmental Quality, 525 W Allegan Str, Lansing, MI 48909
United States
AB:
Efficient management of groundwater resources relies on a comprehensive database that represents the characteristics of the
natural groundwater system as well as analysis and modeling tools to describe the impacts of decision alternatives. Many
agencies in Michigan have spent several years compiling expensive and comprehensive surface water and groundwater inventories
and other related spatial data that describe their respective areas of responsibility. However, most often this wealth of
descriptive data has only been utilized for basic mapping purposes. The benefits from analyzing these data, using GIS
analysis functions or externally developed analysis models or programs, has yet to be systematically realized.
In this talk, we present a comprehensive software environment that allows Michigan groundwater resources managers and
frontline professionals to make more effective use of the available data and improve their ability to manage and protect
groundwater resources, address potential conflicts, design cleanup schemes, and prioritize investigation activities. In
particular, we take advantage of the Interactive Ground Water (IGW) modeling system and convert it to a customized software
environment specifically for analyzing, modeling, and visualizing the Michigan statewide groundwater database. The resulting
Michigan IGW modeling system (IGW-M) is completely window-based, fully interactive, and seamlessly integrated with a GIS
mapping engine. The system operates in real-time (on the fly) providing dynamic, hierarchical mapping, modeling, spatial
analysis, and visualization. Specifically, IGW-M allows water resources and environmental professionals in Michigan to:
* Access and utilize the extensive data from the statewide groundwater database, interactively manipulate GIS objects, and
display and query the associated data and attributes;
* Analyze and model the statewide groundwater database, interactively convert GIS objects into numerical model features,
automatically extract data and attributes, and simulate unsteady groundwater flow and contaminant transport in response to
water and land management decisions;
* Visualize and map model simulations and predictions with data from the statewide groundwater database in a seamless
interactive environment.
IGW-M has the potential to significantly improve the productivity of Michigan groundwater management investigations. It
changes the role of engineers and scientists in modeling and analyzing the statewide groundwater database from heavily
physical to cognitive problem-solving and decision-making tasks. The seamless real-time integration, real-time visual
interaction, and real-time processing capability allows a user to focus on critical management issues, conflicts, and
constraints, to quickly and iteratively examine conceptual approximations, management and planning scenarios, and site
characterization assumptions, to identify dominant processes, to evaluate data worth and sensitivity, and to guide further
data-collection activities.
We illustrate the power and effectiveness of the M-IGW modeling and visualization system with a real case study and a
real-time, live demonstration.
UR: http://www.egr.msu.edu/igw/
DE: 1819 Geographic Information Systems (GIS)
DE: 1829 Groundwater hydrology
SC: Hydrology [H]
MN: Fall Meeting 2005