TY - GEN
T1 - A geographical information system (GIS) real-time web portal for monitoring of marsh habitats
AU - Steidley, Carl
AU - Rawat, Ravinder
AU - Bachnak, Ray
AU - Jeffress, Gary
AU - Sadovski, Alexey
PY - 2005
Y1 - 2005
N2 - Many salt marsh restoration and creation projects have been implemented in the Galveston Bay System during the past 20 years. Salt marshes have many valuable functions for the surrounding habitat and the animals living there. Some of these functions include physical functions such as protecting shorelines from erosion, stabilizing deposits of dredged material, dampening flood effects, trapping water-born sediments, and serving as nutrient reservoirs. Biological functions include acting as tertiary water treatment systems to rid coastal waters of contaminants, serving as nurseries for many juvenile fish and shellfish species, serving as habitat for various wildlife species, and providing plant material for the base of a detritus-based food web. Each year more marshes are being built, and yet very little information is available concerning the success of past restoration projects. In an effort to assist the Fishery Ecology Branch (FEB) of the National Marine Fisheries Service (NMFS) Galveston Laboratory monitors marshes which have been created and obtains information concerning their success [1]. A prototype project to map and monitor these marsh habitats was undertaken. Further, a prediction model of the density and population of different fishery species in Galveston Bay was developed.
AB - Many salt marsh restoration and creation projects have been implemented in the Galveston Bay System during the past 20 years. Salt marshes have many valuable functions for the surrounding habitat and the animals living there. Some of these functions include physical functions such as protecting shorelines from erosion, stabilizing deposits of dredged material, dampening flood effects, trapping water-born sediments, and serving as nutrient reservoirs. Biological functions include acting as tertiary water treatment systems to rid coastal waters of contaminants, serving as nurseries for many juvenile fish and shellfish species, serving as habitat for various wildlife species, and providing plant material for the base of a detritus-based food web. Each year more marshes are being built, and yet very little information is available concerning the success of past restoration projects. In an effort to assist the Fishery Ecology Branch (FEB) of the National Marine Fisheries Service (NMFS) Galveston Laboratory monitors marshes which have been created and obtains information concerning their success [1]. A prototype project to map and monitor these marsh habitats was undertaken. Further, a prediction model of the density and population of different fishery species in Galveston Bay was developed.
UR - http://www.scopus.com/inward/record.url?scp=84883372581&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84883372581&partnerID=8YFLogxK
M3 - Conference contribution
AN - SCOPUS:84883372581
SN - 9781618395528
T3 - 20th International Conference on Computers and Their Applications 2005, CATA 2005
SP - 277
EP - 281
BT - 20th International Conference on Computers and Their Applications 2005, CATA 2005
T2 - 20th International Conference on Computers and Their Applications 2005, CATA 2005
Y2 - 16 March 2005 through 18 March 2005
ER -