All Projects

2286 Results for
Recipient
Hawk Creek Watershed Project
2020 Fiscal Year Funding Amount
$66,725
Fund Source

This project will monitor seven lakes and 15 stream sites within the Hawk Creek Watershed to collect surface water quality data to determine the health of the watershed's streams and lakes and if they are in need of restoration or protection strategies. The sites will be monitored according to Minnesota Pollution Control Agency's Water Monitoring Standard Operating Procedures. The goal of this project will be to accurately gather water quality samples and data as part of an organized effort to determine surface water quality conditions within the Hawk Creek Watershed.

Chippewa
Kandiyohi
Renville
Recipient
Hawk Creek Watershed Project
2016 Fiscal Year Funding Amount
$99,134
2018 Fiscal Year Funding Amount
$58,655
2019 Fiscal Year Funding Amount
$40,953
2020 Fiscal Year Funding Amount
$13,031
2021 Fiscal Year Funding Amount
$10,781
2022 Fiscal Year Funding Amount
$141,641
2024 Fiscal Year Funding Amount
$21,099
Fund Source

This project will monitor six sites within the Minnesota River Basin: Hawk Creek near Maynard, Hawk Creek near Granite Falls, Beaver Creek near Beaver Falls, Yellow Medicine River near Granite Falls, Yellow Medicine River near Hanley Falls, and Spring Creek near Hanley Falls. The sites will be monitored according to the Minnesota Pollution Control Agency (MPCA) Watershed Pollutant Load Monitoring Network (WPLMN) Standard Operating Procedure, which is the procedure being followed for sites currently monitored by the Hawk Creek Watershed Project.

Renville
Yellow Medicine
Recipient
Prairie Country Resource Conservation & Development, c/o Hawk Creek Watershed Project
2010 Fiscal Year Funding Amount
$52,753
Fund Source

This project will assess 4 lakes and 17 stream sites. The four lakes will be assessed for total phosphorus, chlorophyll-a, and secchi data by the HCWP staff. Staff will monitor East Twin, West Twin, West Solomon, and St. John’s Lakes for total phosphorus, chlorophyll-a, and Secchi disk readings. In order to obtain a sufficient dataset. Ten samples will be collected over 2 years. Water samples at 17 stream locations for chemical analyses, including intensive watershed monitoring sites and “non-target” sites.

Chippewa
Kandiyohi
Lac qui Parle
Lincoln
Lyon
Redwood
Renville
Yellow Medicine
Recipient
Hawk Creek Watershed Project
2024 Fiscal Year Funding Amount
$136,134
Fund Source

This project will monitor a total of eight sites (six through the Watershed Pollutant Load Monitoring Network and two through the Intensive Watershed Monitoring).  Through the Watershed Pollutant Load Monitoring Network, six sites will be monitored within the Minnesota River - Granite Falls Watershed: Hawk Creek near Maynard, Hawk Creek near Granite Falls, Beaver Creek near Beaver Falls, Yellow Medicine River near Granite Falls, Yellow Medicine River near Hanley Falls, and Spring Creek near Hanley Falls.

Chippewa
Kandiyohi
Renville
Recipient
Headwaters Science Center
2015 Fiscal Year Funding Amount
$36,053
Fund Source

This project will sample and monitor 18 sites for chemical, physical and bacteriological parameters for two years in coordination with the 2015-16 Surface Water Assessment Grant (SWAG) work plan proposal. Headwaters Science Center (HSC) will be the project lead and recruit volunteer students from Trek North, Bug-O-Nay-Ge-Shig, and Deer Lake high schools as well as to two AmeriCorps volunteer crews. An experienced Minnesota Pollution Control Agency (MPCA) environmental scientist will be the project lead responsible for oversight and full compliance to MPCA protocols.

Beltrami
Recipient
Headwaters Science Center
2016 Fiscal Year Funding Amount
$57,028
Fund Source

This project will conduct water quality monitoring at 12 stream sampling sites. The sites will be monitored for chemical, physical, and bacteriological parameters over a two year time-period. The Headwaters Science Center (HSC) will be the lead agency and arrange volunteer cooperation from Trek North, Bemidji, Perham and/or Detroit Lakes High School students and their instructors. The HSC project lead will be responsible for oversight and full compliance to MPCA protocols.

Otter Tail
Recipient
Heron Lake Watershed District
2014 Fiscal Year Funding Amount
$48,626
Fund Source

The project will involve monitoring twelve stream sites and one lake in Jackson County. The stream sites are known to be impaired. The purpose of monitoring in multiple locations is to determine the source of the impairments.

Jackson
Recipient
Sibley Soil and Water Conservation District
2019 Fiscal Year Funding Amount
$17,431
2020 Fiscal Year Funding Amount
$10,437
2021 Fiscal Year Funding Amount
$10,437
2022 Fiscal Year Funding Amount
$25,995
2024 Fiscal Year Funding Amount
$27,680
Fund Source

The goal of the High Island Creek Watershed Pollutant Load Monitoring project is to assist the Minnesota Pollution Control Agency (MPCA) with meeting the objectives of the Watershed Pollutant Load Monitoring Network (WPLMN). This will be accomplished by conducting water chemistry monitoring at two specified stream locations from ice out through October 31, capturing snow melt, rainfall events and base flow conditions. In addition, project staff will compile and submit the required data, information, and reports, and calculate pollutant loads using the FLUX32 model.

Sibley
Recipient
RESPEC
2019 Fiscal Year Funding Amount
$96,998
Fund Source

The primary goal of this project is to train the Minnesota Pollution Control Agency staff in Hydrologic Simulation Program FORTRAN (HSPF) model calibration of nutrients, oxygen demand, and algal processes and in MATLAB script development for model output processing and report generation. Additionally, a pilot application process will be developed to link HSPF applications to Water quality Analysis Simulation Program (WASP) to take advantage of the advanced sediment oxygen demand processes.

Statewide
Recipient
Houston Engineering
2012 Fiscal Year Funding Amount
$67,996
Fund Source

This project will continue to develop, and calibrate/validate the hydrology of an HSPF watershed model for the Thief River watershed. The consultant will add representation of point source discharges to the model. The consultant will compile flow data for the purposes of calibration and validation. An initial hydrologic calibration will be performed and submitted for approval. The consultant will produce an HSPF watershed model that can readily be used to provide information to support conventional parameter TMDLs.

Beltrami
Marshall
Pennington
Roseau
Recipient
RESPEC
2011 Fiscal Year Funding Amount
$96,618
Fund Source

This project will support construction of three watershed framework models built using the Hydrologic Simulation Program FORTRAN (HSPF). These executable models will simulate hydrology at the subbasin scale. An HSPF model will be built for each of three major watersheds: the Crow River/North Fork Crow River, the South Fork Crow River, and the Sauk River.

Carver
Douglas
Hennepin
Kandiyohi
McLeod
Meeker
Morrison
Pope
Renville
Sibley
Stearns
Todd
Wright
Recipient
AQUA TERRA Consultants
2011 Fiscal Year Funding Amount
$99,950
Fund Source

This project will support construction of three watershed framework models built using the Hydrologic Simulation Program FORTRAN (HSPF). These executable models will simulate hydrology at the subbasin scale. An HSPF model will be built for each of these major watersheds: Crow Wing River, Redeye River, and Long Prairie River.

Becker
Cass
Clearwater
Crow Wing
Douglas
Hubbard
Morrison
Otter Tail
Todd
Wadena
Recipient
RESPEC
2013 Fiscal Year Funding Amount
$174,954
Fund Source

This project will construct, calibrate, and validate three HSPF watershed models. The consultant will produce HSPF models that can readily be used to provide information to support conventional parameter TMDLs. The consultant will clearly demonstrate that these models generate predicted output time series for hydrology, sediment, nutrients, and dissolved oxygen which are consistent with available sets of observed data.

Aitkin
Becker
Beltrami
Cass
Clearwater
Crow Wing
Hubbard
Itasca
Recipient
RESPEC
2014 Fiscal Year Funding Amount
$250,000
Fund Source

The goal of this project is to complete the calibration/validation process of Hydrologic Simulation FORTRAN (HSPF) watershed models for the Lake of the Woods/Rainy River Basin.

Cook
Koochiching
Lake
Lake of the Woods
Roseau
St. Louis
Recipient
RESPEC
2014 Fiscal Year Funding Amount
$396,300
Fund Source

The goal of this project is to continue and finalize HSPF watershed model construction and complete the calibration/validation process.

Aitkin
Anoka
Becker
Beltrami
Benton
Carlton
Cass
Clearwater
Crow Wing
Hubbard
Isanti
Itasca
Kanabec
Meeker
Mille Lacs
Morrison
Sherburne
St. Louis
Stearns
Todd
Wright
Recipient
RESPEC
2011 Fiscal Year Funding Amount
$149,677
Fund Source

This project will finalize HSPF watershed model construction and complete the calibration/validation process for the following three watersheds: North Fork Crow River, South Fork Crow River, and Sauk River.

Carver
Douglas
Hennepin
Kandiyohi
McLeod
Meeker
Morrison
Pope
Renville
Sibley
Stearns
Todd
Wright
Recipient
Emmons and Olivier Resources, Inc. (EOR)
2011 Fiscal Year Funding Amount
$135,000
Fund Source

This project will complete the development of two watershed HSPF models for the Mustinka River and Bois de Sioux River watersheds. These calibrated and validated executable models will simulate hydrology at the 12-digit HUC subbasin scale.

Big Stone
Grant
Otter Tail
Stevens
Traverse
Wilkin
Recipient
RESPEC
2014 Fiscal Year Funding Amount
$94,984
Fund Source
The goal of this project is to construct, calibrate, and validate a watershed model using HSPF. RESPEC will produce a HSPF model that can readily be used to provide information to support conventional parameter TMDLs.
Jackson
Lincoln
Murray
Nobles
Pipestone
Rock
Recipient
RESPEC
2014 Fiscal Year Funding Amount
$95,000
Fund Source
The goal of this project is to continue and finalize HSPF watershed model construction and complete the calibration/validation process.
Beltrami
Clearwater
Marshall
Pennington
Polk
Red Lake
Recipient
Tetra Tech
2014 Fiscal Year Funding Amount
$90,000
Fund Source

The goal of this project is to finalize HSPF watershed models for the St. Louis, Cloquet, and Nemadji Rivers.

Aitkin
Carlton
Itasca
Pine
St. Louis
Recipient
RESPEC
2024 Fiscal Year Funding Amount
$59,904
Fund Source

The Hydrologic Simulation Program Fortran (HSPF) Scenario Application Manager (SAM) software application was developed by RESPEC for the Minnesota Pollution Control Agency (MPCA) to meet the agency’s business needs to provide increased accessibility and use of HSPF modeled data to support Total Maximum Daily Load (TMDL), Watershed Restoration and Protection Strategies (WRAPS), and One Watershed, One Plan (1W1P) development efforts.

Statewide
Recipient
Hubbard County Soil and Water Conservation District
2023 Fiscal Year Funding Amount
$54,853
Fund Source

The Hubbard County Surface Water Monitoring Leech Lake River Watershed 2023-2024 Project will include water quality and temperature profile monitoring of 12 lakes and 8 stream sampling sites in the Leech Lake River watershed area of Hubbard and Cass counties.The lakes include Garfield, Hart, Gillet, Twenty-One, Nelson, Halverson and McCarty in Hubbard County and Little Sand, Upper Trelipe, Lower Trelipe, Crystal and Howard in Cass County. In Hubbard County, the stream sites include 2 sites on the Necktie River and 2 sites on the Kabekona River.

Cass
Hubbard
Recipient
Hubbard County SWCD
2020 Fiscal Year Funding Amount
$32,457
Fund Source

This project will include water quality monitoring on two rivers and twenty lakes found within the Crow Wing River Watershed. ‏Rivers included are Fishhook and Straight River; lakes included are Mow, Big Bass, 11 CROW WING (MAIN), 11 CROW‏WING (EAST), Tenth Crow Wing, Third Crow Wing, Fourth Crow Wing, First Crow Wing, Shallow, Deer, Waboose, East‏ Crooked, Middle Crooked, West Crooked, Dead, Ojibway, Upper Twin, Pickerel, Moran, Little Mantrap, Portage. Water quality ‏sampling will be conducted according to Minnesota Pollution Control Agency work plan parameters.

Becker
Hubbard
Recipient
University of Waterloo
2017 Fiscal Year Funding Amount
$4,000
2013 Fiscal Year Funding Amount
$2,982
Fund Source

The lab will analyze stable isotopes oxygen-18 and deuterium in water samples collected in streams, lakes, wetlands, groundwater, and point sources. This data can identify primary flow sources under varying flow conditions (low to very high flows). Identifying sources can help identify pollutant sources or locate areas that are in need of protection. For example, you may want to protect an area that contributes cold groundwater to a coldwater fishery. Or it could link a water chemistry impairment to a specific source.

Statewide
Recipient
RESPEC
2022 Fiscal Year Funding Amount
$175,168
Fund Source

The goal of this project is to continue the development of Hydrologic Simulation Program FORTRAN (HSPF) model application tools and improve and expand the effective application of HSPF models. The tools involved in this work include HPSF and Scenario Application Manager (SAM). 

Statewide
Recipient
Aqua Terra Consultants
2012 Fiscal Year Funding Amount
$120,238
2013 Fiscal Year Funding Amount
$134,980
Fund Source

This project will continue HSPF watershed model construction beyond the initial framework development. The consultant will add representation of point source discharges to the model. The consultant will also compile flow data for the purposes of calibration and validation. Finally, an initial hydrologic calibration will be performed and submitted for approval.

Becker
Cass
Clearwater
Crow Wing
Douglas
Hubbard
Morrison
Otter Tail
Todd
Wadena
Recipient
Aqua Terra Consultants
2012 Fiscal Year Funding Amount
$93,802
Fund Source

This project will complete a guidance document for the construction of Hydrologic Simulation Program FORTRAN (HSPF) watershed models which are intended to support MPCA Watershed programmatic activities. It will also customize and populate a national HSPF parameter database with values from Minnesota HSPF model applications. This enhanced database will expedite the future construction of HSPF models as well as increase the consistency among HSPF model applications in Minnesota.

Statewide
Recipient
Tetra Tech
2015 Fiscal Year Funding Amount
$155,000
Fund Source

The goal of this project is to continue and finalize Hydrological Simulation Program FORTRAN (HSPF) watershed model construction and complete the calibration/validation process for the Minnesota River–Headwaters and Lac qui Parle watersheds that can readily be used to provide information to support conventional parameter Total Maximum Daily Load (TMDL) reports.

Big Stone
Chippewa
Lac qui Parle
Lincoln
Stevens
Swift
Traverse
Yellow Medicine
Recipient
Tetra Tech
2015 Fiscal Year Funding Amount
$100,000
Fund Source

The goal of this project is to continue and finalize Hydrological Simulation Program FORTRAN (HSPF) watershed model construction and complete the calibration/validation process. The consultants will produce HSPF watershed model applications for the Lake Superior North and Lake Superior South watersheds that can readily be used to provide information to support conventional parameter Total Maximum Daily Load (TMDL) projects.

Cook
Lake
St. Louis
Recipient
AQUA TERRA Consultants
2015 Fiscal Year Funding Amount
$5,140
Fund Source

This project will finalize the guidance document to ensture consistency and validity of future Hydrological Simulation Program FORTRAN (HSPF) model applications within the State of MN. This improved guidance will help to ensure consistency and validity of future HSPF model applications within the State as part of the One Water Program.

Statewide
Recipient
RESPEC
2024 Fiscal Year Funding Amount
$149,998
Fund Source

This project will support the development, enhancement, and support of the statewide Minnesota Pollution Control Agency Hydrologic Simulation Program – Fortran (HSPF) Model Repository, HSPEXP+ (enhanced expert system for HSPF model calibration), HCALC (HSPF Calibration Control), HTEXT (HSPF Timeseries Extension), Scenario Application Manager (SAM), and Preprocessing Application Translator for HSPF (PATH).

Statewide
Recipient
RESPEC
2023 Fiscal Year Funding Amount
$149,998
Fund Source

The goal of this project is to continue the development of Hydrologic Simulation Program FORTRAN (HSPF) model application tools improve and expand the effective application of HSPF models.

Statewide
Recipient
AQUA TERRA Consultants
2014 Fiscal Year Funding Amount
$43,000
Fund Source
This project will address the numerous recommendations included in the original Guidance Document to provide an updated and improved Guidance Document. This improved guidance will help to ensure consistency and validity of future HSPF model applications within the State as part of the One Water Program.
Statewide
Recipient
RESPEC
2011 Fiscal Year Funding Amount
$174,579
Fund Source

This project will construct, calibrate, and validate two Hydrologic Simulation Program FORTRAN (HSPF) watershed models. The consultant will produce HSPF models that can readily be used to provide information to support conventional parameter Total Maximum Daily Load (TMDLs) at the Big Fork River and Little Fork River watersheds.

Itasca
Koochiching
St. Louis
Recipient
RESPEC
2011 Fiscal Year Funding Amount
$214,963
Fund Source

This project will complete spatial and temporal revisions of 6 Hydrologic Simulation Program FORTRAN (HSPF) models, the recalibration and validation of 7 watershed HSPF models, and the revision of the drainage network and point source representation of the Pomme de Terre HSPF model.

Big Stone
Blue Earth
Brown
Carver
Cottonwood
Dakota
Douglas
Faribault
Freeborn
Grant
Hennepin
Jackson
Le Sueur
Lincoln
Lyon
Mahnomen
Martin
McLeod
Murray
Nicollet
Norman
Otter Tail
Pipestone
Polk
Ramsey
Redwood
Renville
Rice
Scott
Sibley
Steele
Stevens
Swift
Waseca
Watonwan
Yellow Medicine
Recipient
RESPEC
2014 Fiscal Year Funding Amount
$99,970
Fund Source

The goal of this project is to develop a watershed-scale decision support tool, Scenario Application Manager (SAM), to facilitate prioritization and placement of best management practices (BMPs) needed to achieve the necessary reductions identified by various watershed management programs in Minnesota. SAM consists of a Geographic Information System (GIS) for site selection, and Hydrological Simulation Program – Fortran (HSPF) model application to simulate the transport of pollutants.

Statewide
Recipient
RESPEC
2016 Fiscal Year Funding Amount
$39,967
Fund Source

The goal of this project is to refine the segmentation, extend the simulation period, and recalibrate an existing Hydrologic Simulation Program FORTRAN (HSPF) watershed model for the Rum River Watershed.

Aitkin
Anoka
Benton
Chisago
Crow Wing
Isanti
Kanabec
Mille Lacs
Morrison
Sherburne
Recipient
RESPEC
2017 Fiscal Year Funding Amount
$34,955
Fund Source

The goal of this project is to develop the guidance needed for water quality parameter evaluation and calibration for Hydrological Simulation Program – FORTRAN (HSPF) applications that utilize the general water quality constituent routines on the land surface to generate loadings of nutrients and organic material for input to water bodies to support dissolved oxygen (DO), nutrient, and algal simulation.

Statewide
Recipient
Tetra Tech
2017 Fiscal Year Funding Amount
$3,969
Fund Source

This project is for constructing, calibrating, and validating a Hydrologic Simulation Program FORTRAN (HSPF) watershed models for the Minnesota portions of the Des Moines Headwaters, Lower Des Moines, and East Fork Des Moines watersheds. The model can be used to provide information to support conventional parameter Total Maximum Daily Load (TMDL) reports. This model generates predicted output timeseries data for hydrology, sediment, nutrients, and dissolved oxygen that are consistent with observed data.

Cottonwood
Jackson
Lyon
Martin
Murray
Pipestone
Recipient
AQUA TERRA Consultants
2014 Fiscal Year Funding Amount
$50,000
Fund Source
Development of Target NPS loading rates along with a pollutant source allocation tool for assessing and quantifying source allocations for impaired stream reaches for use in the TMDL development.
Statewide