The goal of this project is to continue and finalize Hydrologic Simulation Program FORTRAN (HSPF) watershed model construction and complete the calibration/validation process. The project will add representation of point source discharges to the model, compile flow and water quality data for the purposes of calibration and validation. The end result will be an HSPF watershed model that can readily be used to provide information to support conventional parameter TMDLs.
Pheasants Forever, Ducks Unlimited, and the U.S. Fish and Wildlife Service partnered to permanently protect, restore and enhance 1,630 acres of grassland and 294 acres of wetland as Waterfowl Production Areas in Western and Southern Minnesota. All lands acquired will be owned and managed in perpetuity by the USFWS as part of the National Wildlife Refuge System and open for public recreation.
Pheasants Forever (PF) and the U.S. Fish and Wildlife Service (Service) will cooperate to permanently restore and protect approximately 1397.31 acres as Waterfowl Production Areas (WPAs) in western and southern Minnesota. All lands acquired through this grant proposal will be owned and managed by the Service as part of the National Wildlife Refuge System.
The Minnesota Department of Natural Resources Accelerated Prairie Grassland Restoration and Management Program had a successful first round of funding from the Legacy Funds. The program worked through the growing pains and obstacles in getting a new program up and operational and was successful in enhancing nearly 5,800 acres of prairie and grasslands in eight of the ecological subsections of Minnesota. A contractor base has been established for this type of work statewide that needs to be evaluated and expanded on for future appropriations.
Ducks Unlimited enhanced 6,882 wetland acres through the bio-engineering and installation of water control structures on managed shallow lake outlets for Minnesota DNR, and protected 76 wetland and 103 upland acres on a shallow lake through a purchased conservation easement.
Many of Minnesota's wetlands have been lost and the remainder degraded. The original proposal planned for 15,000 acres of wetland/shallow lake enhancement to provide critical habitat for each life stage of waterfowl and wetland wildlife. The six projects subsequently completed with this appropriation enhanced 13,800 acres of wetlands and shallow lakes in the Prarie and Forest/Prairie Ecosections of Minnestoa.
This appropriation funded 283 projects totaling 21,953 acres. The two largest types of enhancement were 112 woody removal projects totaling 10,160 acres and 134 prescribed burns totaling 10,082 acres. Additionally, we seeded 30 sites totaling 1386 acres, put in infrastructure for conservation grazing of 236 acres on 3 sites, conducted 3 oak savanna enhancements totaling 42 acres, and treated 47 acres of invasive species on 2 sites.
This program of on-the-ground conservation projects increased the wildlife and ecological values of forest communities on Minnesota's public forestlands. Restoration and enhancement projects in this program enhanced more than 10,000 acres of forest.
We protected 22.3 miles of trout streams and 1.3 miles of lakeshore via easements (585 acres in total), and 7.4 miles (504 acres) of lakeshore through fee-title purchase. We enhanced shoreline habitat on 524 acres of riparian land, and instream habitat on 3.1 miles of trout streams and 0.5 miles of warmwater rivers.
We propose restoration and enhancement of prairie and savanna on WMA’s, SNA’s, and Native Prairie Banks in Minnesota and restoration and enhancement of bluff prairies on State Forest Land in southeast Minnesota.
With these funds we were able to restore, protect, and enhance 24,611 acres of native and restored grassland in Minnesota. Much of this work was done through the DNR Roving Crews, a new program funded with these dollars that has significantly increased the state's habitat management capabilities. In addition to these enhancement activities we were able to enroll acres in the DNR's Native Prairie Bank Easement Program as well as acquire acres for the SNA program.
This program will increase populations of a variety of game and non-game wildlife species by protecting and enhancing forest habitats on which wildlife depends. This program of on-the-ground forest conservation projects will amplify the wildlife value of forest communities on DNR administered forestlands. Our forest enhancement will treat 4,472 ac. These activities are not conducted as part of the DNR's commercial timber operations. Additionally, our program will acquire 404 acres of forestland that contributes to habitat complexes and other high priorities.
Ducks Unlimited and Minnesota DNR Section of Wildlife completed 26 project affecting 7,603 acres, including three wetland restoration projects restoring 97 acres, 18 shallow lake enhancement projects enhancing 7,154 wetland acres, and five fee-title land acquisition projects protecting 352 acres.
Accomplishments of the appropriation include: i) protection of 3.9 miles of shoreline; ii) modification of 4 lake outlet structures to allow fish passage, benefiting 1,264 acres; iii) enhanced river and stream functions at 15 sites, benefiting over 17 river miles; and iv) enhance 4.5 miles of shoreline habitat on publicly-owned lakeshore.
The table below provides a short summary of the acres and sites accomplished. We enhanced or restored 59,495 acres in 458 separate habitat projects.Project Type # Sites # AcresFencing for conserv grazing 6 721grassland conversion 33 1,124Invasive Species Control 43 1,599mowing 3 104Prescribed burn 214 48,368Restoration 13 123Woody Removal 146 7,457
This program accelerated the permanent protection of 2,267 acres of wetlands (465 acres) and grasslands (1,802 acres) as Waterfowl Production Areas open to public hunting in Minnesota. Over the course of the appropriation, PF acquired 18 parcels for a total of 2,267 acres which exceeded our total acre goal of 2,250 acres by 17 acres. Breaking down acres by ecological section we exceeded our acre goal for both the metropolitan area by 61 acres and in the prairie area by 346 acres. We have exceeded anticipated match of $5,125,000 by $771,500.
The AgBMP Loan Program provides needed funding for local implementation of clean water practices at an extremely low cost, is unique in its structure and is not duplicated by any other source of funding.The AgBMP loan program provides 3% loans through local lenders to farmers, rural landowners, and agriculture supply businesses.
The Anoka Sandplain Partnership (Phase 3) proposal will restore and enhance 2,952 acres of wildlife habitat on priority public lands principally within the Anoka Sandplain Ecological Region within the Metropolitan Urbanizing, Forest-Prairie, and Northern Forest regions.
Based on the Minnesota Waters Lake and River Association database, Crow Wing County has the highest number of lake associations in Minnesota. Currently, there are over 136 lake association groups in the county, which does not include neighborhood, resort or religious groups. These lakes aer a cornerstone to the state's tourism econmy and there is a great demand for stormwater management incentive program to protect these local water resources.
This is the second phase of building the Hydrologic Simulation Program FORTRAN (HSPF) model for the Buffalo River watershed. This work will include completion of the model including final calibration and validation.
Over a century ago, the construction of Judicial Ditch No. 3 resulted in the rerouting of the South Branch of the Buffalo River, completely changing its flow characteristics. In the first phase of this multi-phase project, the Buffalo-Red River Watershed District (BRRWD) in partnership with landowners, federal, state, and local agencies, will put much of the rerouted channel back restoring up to 4.6 miles of the South Branch with up to 100 acres of associated riparian habitat corridor.
This is the second phase of building the Hydrologic Simulation Program FORTRAN (HSPF) model for the Buffalo River watershed. The project will result in a completed model including necessary calibration and validation phases.
This project will continue to develop, and calibrate/validate the hydrology of an Hydrological Simulation Program FORTRAN (HSPF) watershed model for the Buffalo 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.
Multiple water courses in the Buffalo River - Red River Watershed District are impaired for turbidity. These waterways include the Red River of the North, Wolverton Creek, Deerhorn Creek, Stoney Creek, South Branch Buffalo River, and the main stem of the Buffalo River. This project will provide a means of prioritizing areas of the watershed to implement conservation practices to reduce overland runoff contaminant loadings contributing to water quality impairments.
Funds are to be used to protect, enhance and restore water quality in lakes, rivers and streams and to protect groundwater and drinking water. Activities include structural and vegetative practices to reduce runoff and retain water on the land, feedlot water quality projects, SSTS abatement grants for low income individuals, and stream bank, stream channel and shoreline protection projects. For the fiscal year 2012, BWSR awarded 12 local governments with funds.
Funds are to be used to protect, enhance and restore water quality in lakes, rivers and streams and to protect groundwater and drinking water. Activities include structural and vegetative practices to reduce runoff and retain water on the land, feedlot water quality projects, SSTS abatement grants for low income individuals, and stream bank, stream channel and shoreline protection projects. For the fiscal year 2012, BWSR awarded 13 local governments with funds to complete 143 projects. More information is available in the detail reports below.
Crow Wing SWCD is building off its success with Project Recharge and expanded the program to target Gull and Big Trout lakes. The SWCD selected these two lakes because of their declining transparency readings, 25 interested landowners, 2 adjacent resorts, and the community support, past partnerships, valuable fisheries, high ratio of forested land, and low ratio of impervious area in the lakeshed.The SWCD worked with partners to find willing landowners and businesses to complete the following types of projects:Swap Rock for Native Stock: Implement bioengineering to stabilize shorelines.
The primary objective of this workplan is to demonstrate the ability of the City of Paynesville to meet the current and future wastewater treatment needs and achieve beneficial use of wastewater effluent, to replace the use of groundwater.
The Clearwater Lake Chain has elevated nutrient levels which lead to poor water quality. The City of Kimball and surrounding agricultural area drains, mostly untreated, into a trout stream which empties into the Clearwater River Chain of Lakes.
The overall goal is to develop a Watershed Restoration and Protection Strategy (WRAPS) Report and Total Maximum Daily Load (TMDL) Study that will address water quality impairments and maintain or improve water quality throughout the Clearwater River watershed. The study will identify sources of pollutants to the streams and lakes, allocate pollution reduction goals, and prioritize and identify implementation strategies to maintain or improve water quality in key lakes and streams in the watershed.
The goal of this project is to update existing bacteria and Total Suspended Solids (TSS) source inventory through desktop survey and field reconnaissance to identify and prioritize locations to reduce sediment and bacteria loading to the Clearwater River; then, design and implement best management practices (BMPs) at prioritized locations to reduce loading.
This project will conduct a 2017 revision of the South Fork Crow River, North Fork Crow River and Sauk River Watershed Hydrological Simulation Program FORTRAN (HSPF) models and review of the Pine River Watershed HSPF model.
The purpose of this project is reduce peak flows in the North Fork of the Crow River through culvert sizing. Culvert sizing will typically result in smaller culverts, which will provide short-term temporary storage within channels and on adjacent lands upstream from road crossings. In addition to reducing peak flow rates, flood damage and downstream erosion, increased sediment and nutrient removal through extended detention time is expected.
The Buffalo River Watershed Pilot Project is one of two pilots in Minnesota designed to develop a watershed approach for managing Minnesota’s surface waters. The goal of this project is to develop a plan that will guide surface water quality management throughout the watershed.
This project will construct three watershed framework models built using the Hydrologic Simulation Program FORTRAN. These executable models will simulate hydrology at the 12-digit HUC subbasin scale. An HSPF model will be built for each of the following 8-HUC watersheds: Red Lake River (09020303) and the Clearwater River (09020305).
This project will finalize HSPF watershed model construction by incorporating internal phosphorus loading in modeled lakes, run a suite of implementation scenarios and generate a GenScn project containing model output. The consultant will produce HSPF watershed models that can readily be used to provide information to support conventional parameter TMDLs. The consultant will deliver all modeling files for baseline and implementation scenarios and provide a GenScn project containing model output.
This project will develop and execute three point source related scenarios for the Chippewa River watershed using an existing HSPF watershed model. This project will also support the review of the HSPF Modeling Guidance Document.
This project will complete a pollutant source identification and subwatershed information report and support the development of a Draft Restoration and Protection Plan (RAPP). It will also support the devlopment of a Implementation Plan that will identify target areas for BMP implementation for bacteria reductions.
The primary focus of this project is the collection of lake core samples to aid in the completion of lake TMDLs for Dean, Malardi & Fountain lakes. This work will enable completing tasks included in the North Fork Crow River Watershed Restoration & Protection Project (WRPP). Additional data collection is needed to update lake response models. This new data will provide a cohesive and comprehensive data collection for Dean, Malardi and Fountain lakes.