Main
[-The Observing and Monitoring Systems in Nearshore Lake Erie project aims to expand the existing network of observation buoys deployed in the Great Lakes. A novel system of buoys will be deployed in three nearshore (and AoC) areas of Lake Erie year round. In conjunction with Automated Underwater Vehicle data collection missions, the impacts of climate and environmental change on the water quality and hydrodynamics will be monitored at high temporal and spatial resolution. The year round deployment ensures that critical winter data, including ice thickness and flow, are also collected. The long term monitoring aspect of this project ensures that dynamic relationships between atmospheric and hydrobiological parameters are better understood and will allow for better predictive capabilities. In a first instance the data will be used to further validate the FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and climate change on Lake Erie and the Great Lakes at large. On a broad scale the data will be available for use for scientific and resource management purposes.
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link: -]
[[Attach:erie4b.jpg|http://geographyplanning.buffalostate.edu/htdocs/uploads/erie4b.jpg]]
[[Attach:erie6b.jpg|http://geographyplanning.buffalostate.edu/htdocs/uploads/erie6b.jpg]]
http://geographyplanning.buffalostate.edu/htdocs/uploads/erie1a.jpg
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(:if false:)
[[Buffalo River|http://www.epa.gov/greatlakes/aoc/buffalo.html]]
[[Ashtabula River| http://www.epa.gov/greatlakes/aoc/ashtabula.html]]
[[Attach:homepage.jpg|http://geographyplanning.buffalostate.edu/htdocs/uploads/homepage2.jpg]\\
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To continue setting up PmWiki, see [[PmWiki/initial setup tasks]].
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The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
to:
The Observing and Monitoring Systems in Nearshore Lake Erie project aims to expand the existing network of observation buoys deployed in the Great Lakes. A novel system of buoys will be deployed in three nearshore (and AoC) areas of Lake Erie year round. In conjunction with Automated Underwater Vehicle data collection missions, the impacts of climate and environmental change on the water quality and hydrodynamics will be monitored at high temporal and spatial resolution. The year round deployment ensures that critical winter data, including ice thickness and flow, are also collected. The long term monitoring aspect of this project ensures that dynamic relationships between atmospheric and hydrobiological parameters are better understood and will allow for better predictive capabilities. In a first instance the data will be used to further validate the FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and climate change on Lake Erie and the Great Lakes at large. On a broad scale the data will be available for use for scientific and resource management purposes.
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
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[++Observing Systems and Monitoring in Nearshore Lake Erie++]
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[+Observing Systems and Monitoring in Nearshore Lake Erie+]
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The Observing and Monitoring Systems in Nearshore Lake Erie project aims to expand the existing network of observation buoys deployed in the Great Lakes. A novel system of buoys will be deployed in three nearshore (and AoC) areas of Lake Erie year round. In conjunction with Automated Underwater Vehicle data collection missions, the impacts of climate and environmental change on the water quality and hydrodynamics will be monitored at high temporal and spatial resolution. The year round deployment ensures that critical winter data, including ice thickness and flow, are also collected. The long term monitoring aspect of this project ensures that dynamic relationships between atmospheric and hydrobiological parameters are better understood and will allow for better predictive capabilities. In a first instance the data will be used to further validate the FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and climate change on Lake Erie and the Great Lakes at large. On a broad scale the data will be available for use for scientific and resource management purposes.
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
to:
[-The Observing and Monitoring Systems in Nearshore Lake Erie project aims to expand the existing network of observation buoys deployed in the Great Lakes. A novel system of buoys will be deployed in three nearshore (and AoC) areas of Lake Erie year round. In conjunction with Automated Underwater Vehicle data collection missions, the impacts of climate and environmental change on the water quality and hydrodynamics will be monitored at high temporal and spatial resolution. The year round deployment ensures that critical winter data, including ice thickness and flow, are also collected. The long term monitoring aspect of this project ensures that dynamic relationships between atmospheric and hydrobiological parameters are better understood and will allow for better predictive capabilities. In a first instance the data will be used to further validate the FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and climate change on Lake Erie and the Great Lakes at large. On a broad scale the data will be available for use for scientific and resource management purposes.
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link: -]
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link: -]
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The Observing and Monitoring Systems in Nearshore Lake Erie project aims to expand the existing network of observation buoys deployed in the Great Lakes. A novel system of buoys will be deployed in three nearshore (and AoC) areas of Lake Erie year round. In conjunction with Automated Underwater Vehicle data collection missions, the impacts of climate and environmental change on the water quality and hydrodynamics will be monitored at high temporal and spatial resolution. The year round deployment ensures that critical winter data, including ice thickness and flow, are also collected. The long term monitoring aspect of this project ensures that dynamic relationships between atmospheric and hydrobiological parameters are better understood and will allow for better predictive capabilities. In a first instance the data will be used to further validate the FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and climate change on Lake Erie and the Great Lakes at large. On a broad scale the data will be available for use for scientific and resource management purposes.
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
(:if false:)
The near real-time data will be available to stakeholders, educators and students through this website. Interactive updates of physical, chemical and biological properties of the lake will be available by following the link:
(:if false:)
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[[http://www.epa.gov/greatlakes/aoc/ashtabula.html|Ashtabula River]]
[[http://www.epa.gov/greatlakes/aoc/ashtabula.html|Ashtabula River]]
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[++Great Lakes Center: Observing Systems and Monitoring in Nearshore Lake Erie++]
[[Attach:homepage.jpg|http://96.240.84.191:7474/uploads/homepage.jpg]]\\
[++Brief Project Description:++]
This project aims to expand the existing network of observation buoys deployed in the Great
Lakes. A novel system of buoys will be deployed in three nearshore (AoC) areas of Lake Erie. In
conjunction with an Automated Underwater Vehicle, systematic changes in the water quality and
hydrodynamics will be monitored at high temporal and spatial resolution. The year round
deployment ensures that winter data, including ice thickness, are also collected. The real-time
data will be available to stakeholders through a website and will be used to further validate the
FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and
climate change on Lake Erie and the Great Lakes at large.
(:if false:)
This was the old home page -Ben
Welcome to PmWiki!
A local copy of PmWiki's
documentation has been installed along with the software,
and is available via the [[PmWiki/documentation index]].
To continue setting up PmWiki, see [[PmWiki/initial setup tasks]].
The [[PmWiki/basic editing]] page describes how to create pages
in PmWiki. You can practice editing in the [[wiki sandbox]].
More information about PmWiki is available from http://www.pmwiki.org .
(:ifend:)
[[Attach:homepage.jpg|http://96.240.84.191:7474/uploads/homepage.jpg]]\\
[++Brief Project Description:++]
This project aims to expand the existing network of observation buoys deployed in the Great
Lakes. A novel system of buoys will be deployed in three nearshore (AoC) areas of Lake Erie. In
conjunction with an Automated Underwater Vehicle, systematic changes in the water quality and
hydrodynamics will be monitored at high temporal and spatial resolution. The year round
deployment ensures that winter data, including ice thickness, are also collected. The real-time
data will be available to stakeholders through a website and will be used to further validate the
FVCOM hydrodynamic forecasting model predictions of the impacts of environmental and
climate change on Lake Erie and the Great Lakes at large.
(:if false:)
This was the old home page -Ben
Welcome to PmWiki!
A local copy of PmWiki's
documentation has been installed along with the software,
and is available via the [[PmWiki/documentation index]].
To continue setting up PmWiki, see [[PmWiki/initial setup tasks]].
The [[PmWiki/basic editing]] page describes how to create pages
in PmWiki. You can practice editing in the [[wiki sandbox]].
More information about PmWiki is available from http://www.pmwiki.org .
(:ifend:)
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A local copy of PmWiki's
documentation has been installed along with the software,
and is available via the [[PmWiki/documentation index]].
To continue setting up PmWiki, see [[PmWiki/initial setup tasks]].
The [[PmWiki/basic editing]] page describes how to create pages
in PmWiki. You can practice editing in the [[wiki sandbox]].
More information about PmWiki is available from http://www.pmwiki.org .
to:
Site is under construction