The Dakota Language Project, under the guidance of our dedicated Language Instructor, Mr. Barry Hand, represents a significant step forward in our ongoing efforts to preserve and revitalize our Dakota language. At its core, this project is designed to expand upon the successes we've achieved in language preservation. Our primary focus is cultivating the next generation of Dakota speakers with an unwavering commitment to youth-oriented instruction. Our approach contrasts traditional language learning methods that rely solely memorizing vocabulary and grammar rules.
The Dakota Language Project, under the guidance of our dedicated Language Instructor, Mr. Barry Hand, represents a significant step forward in our ongoing efforts to preserve and revitalize our Dakota language. At its core, this project is designed to expand upon the successes we've achieved in language preservation. Our primary focus is cultivating the next generation of Dakota speakers with an unwavering commitment to youth-oriented instruction. Our approach contrasts traditional language learning methods that rely solely memorizing vocabulary and grammar rules.
Over the past 20 years, Minneola Township in Goodhue County has experienced uncontrolled flooding events. These floods have caused extensive damage to private property, public roads, and even loss of life. Storing stormwater higher in the watershed will reduce the amount and intensity of these extreme rain events. Ultimately lowering the volume and rate of storm event flows will cause less damage and improve safety. Just as important are the water quality benefits that will accrue and reduce sedimentation
and improve the health of the Zumbro River.
This application expands on the competitive "Future of Farming" CWF Grant that Becker SWCD received in 2022. The project builds resilient agricultural systems and achieves non-point source pollution reductions identified by local and regional water quality monitoring and models. This application will focus on the public water system of the Otter Tail River where the City of Fergus Falls draws their drinking water downstream of Becker County. It will also focus on the groundwater vulnerability of the Straight River located in the Crow Wing River Watershed and the Redeye River Watershed.
To hire a qualified consultant to develop architectural drawings for the Third Street Bridge, Cannon Falls, listed in the National Register of Historic Places.
This project strives to continue progress towards the sediment and nutrient reduction goals for the Buffalo River. Specific targeted practices and quantities include Water and Sediment Control Basins (110), Grade Stabilizations (7), Grassed Waterways (10), Critical Area Plantings (12), Filter Strips (45 ac.), Cover Crops (2,500 ac/year), Rotational Grazing/Use Exclusion (320 ac), Wetland Restoration (86 ac).
This project strives to make further, substantial steps towards the sediment and nutrient reduction goals for Buffalo River Watershed District's (BRRWD) Mainstem and Lakes Planning Region and the objectives of the Buffalo-Red River Comprehensive Watershed Management Plan adopted in 2021.
Turtle Island Skywatchers - Innovative Research and Data Visualization project works to protect Minnesota water, wildlife, and natural resources while empowering Indigenous youth as leaders and all citizens as researchers.
We will reconstruct historical lake conditions to identify factors linked to successful walleye fisheries and guide effective management in the face of warming temperatures, invasive species, and nutrient loading.
Minnesotans increasingly value native fishes. For example, >95% of bowfished species in MN are native, yet all are poorly understood. Foundational natural resource data is absolutely necessary for all stakeholders.
Our goals are to engage 100,000 underserved youth statewide in environmental education, engaging them in the conservation and preservation of Minnesota wilderness through the experiences in the outdoors.
Though many parts of the Twin Cities metropolitan area are urbanized, there are also has large areas of natural lands that continue to serve as important habitat for fish, wildlife, and plant communities. However, pressure on these remaining lands continues to intensify as population and development pressures increase.
This project will provide the monitoring of reaches where there are data gaps, incorporate new data and analyze relevant data, identify pollutant sources, hold a stakeholder meeting, and gather information towards the future development of a Draft Restoration (TMDL) and Protection Plan.
Phase II of the Upper South Branch Project will continue a FY2011 CWF project with the strategic implementation of conservation practices within the Upper South Branch of the Buffalo River watershed. This second phase will result in approximately 305 acres of new filter strips, 50 side inlet sediment control structures, and 8 sediment control basins which will reduce sediment loading to the stream by 4,700 tons/year and phosphorus by 9,700 pounds/year.
This project will extend the simulation period for the Hydrological Simulation Program - FORTRAN (HSPF) models for the Grand Rapids, Brainerd, Crow Wing, Redeye, Long Prairie, Sartell, Sauk, St. Cloud, and Crow watersheds, and review and comment on the calibration.
This project will extend, calibrate, and validate watershed models using the Hydrological Simulation Program - FORTRAN (HSPF) watershed model for the Mississippi Headwaters, Leech Lake, Pine, and South Fork Crow Watersheds.
The primary goal of this project is to examine the calibration and validation of recently extended Hydrological Simulation Program – FORTRAN (HSPF) watershed models for the Mississippi River-Headwaters, Mississippi River-Grand Rapids, Mississippi River-Brainerd, Mississippi River-Sartell, Mississippi River-St. Cloud, Leech Lake, Pine River, Crow Wing River, Long Prairie River, and Redeye River watersheds and revise the calibration.
The Upper Buffalo River Sediment Reduction Project area lies in the first major land use transition within the buffalo's flowage, where intact forests and modestly developed lakes give way to altered hydrology and tilled fields of highly productive soils near the top of the Red River Basin. This abrupt change in land use within the watershed is directly linked to stream impairments within the project area.
A joint effort of Becker and Clay Soil and Water Conservation District, the Buffalo Red Shallow Lakes and Mainstem Improvement Strategy will reduce nutrient and sediment delivery to 12 impaired lakes and impaired reaches of the Buffalo River through a targeted and prioritized approach to the implementation of Best Management Practices (BMPs). Numerous models have been combined with local knowledge to identify chief sources of constituents in the watershed and to isolate and prioritize implementation sites demonstrating the most significant gains in water quality.
Use mobile AI-assisted technologies to survey lake visitors. Assess perceptions of water quality and perceived threats. Combine survey data with water quality data and trend monitoring to inform lake management.
Public Art Saint Paul will propel new work forward on the 2nd Wakpa Triennial. The first Wakpa Triennial, 3 years in the making, presented in summer 2023 more than 110 artists in new work across artistic and humanities disciplines including sculpture, installation, video, poetry, music, painting, murals, paper-making, textiles, conversations, and other discussion and participatory programs.
The Red River is impaired for turbidity. The level of turbidity is a significant factor in the cost of treatment of drinking water by the City of Moorhead. This water quality improvement project involves the retrofit of Clay County Ditches 9, 32, and 33 just south of the city. The project involves the installation of an estimated 87 side inlet sediment controls and 35 acres of buffer strips. All three of these ditch systems with over 16 miles of County Ditch will be treated for sediment and erosion control with the installation of conservation practices.
To hire professionals to restore painted designs on the knee wall and balcony slab underside of the water tower balcony at Tower View to their 1915-1921 appearance.
Minnesota Sea Grant seeks to create a science-policy fellowship program to train Minnesota's science-policy workforce and advance Minnesota's water resource policy, emulating Sea Grants successful federal-level fellowship program.
We propose robotics-based educational activities for middle-school youth on water quality in Minnesota. Youth will gain skills for measuring water quality and communicating results through group study and hands-on projects.
Effective groundwater management requires accurate knowledge about the water budget, which is the amount of water stored within the system in aquifers and the amount of water flowing through the overall hydrologic system including water flowing at the surface, water flowing from above ground down into aquifers, and water flowing between aquifers below the surface.