This project involves the collaboration between Pan Asian Arts Alliance, Elluminance Era, Chinese American Chamber of Commerce-MN, Asian Media Access, Unity Dance Group, and other Pan Asian Arts groups. It is a first-ever collaboration between Asian American performing and visual arts organizations. The project, "Asia Extravaganza," is a one-night festivity event to showcase Asian American youthful culture through dance, music and storytelling.
We will assess the environmental quality of prairies across Minnesota. On-the-ground surveys and contaminant risk assessments will help inform partner management actions, endangered species recovery plans, and pollinator reintroduction efforts.
The Berger Fountain, known as the dandelion fountain to most, was installed in 1975 by Benjamin Berger and has been a beloved neighborhood landmark in Loring Park and a favorite location for wedding photographers and children ever since. Ben Berger was a park board commissioner and, after seeing a dandelion fountain in Australia, fundraised to build a sister fountain right here in Minnesota.
Recent efforts by Carver County Water Management Organization Staff have centered on removing point sources of bacteria in both Bevens and Carver Creeks. These efforts have shown improvement in water quality; however the creeks are still above the state standard for E. coli. Early results from field surveys have pinpointed areas where livestock have uncontrolled access to streams. Five sites over a twenty mile stretch of Bevens Creek have shown evidence of livestock access to streams and associated damage to streambanks.
This study will leverage our current bioacoustics monitoring framework to assess avian diversity at the statewide scale through a citizen science acoustic monitoring program, with a focus on private lands.
The Birdie Lane East Ravine Improvement project consists of eliminating ravine erosion and treatment of an 8.24-acre watershed to reduce total phosphorus reaching Lake Hazeltine by 98 pounds per year. The eroding ravine will be replaced with a linear treatment feature to provide treatment of a watershed that has land uses that include roads, single-family residential, and a golf course. The project will involve development of a cascade, pool, and riffle channel system.
This project will expand the Truth Telling Series that collected, preserved, and shared suppressed Dakota and Anishinaabe histories through community oral narratives. The project will document untold and silenced narratives from Black Minnesotans in urban and rural communities to develop new and easily accessible curriculum for grades Pre-K-6, in partnership with numerous BIPOC scholars, elders, and community partners. The project includes a collaborative story collection. The stories will be collected, documented, and written.
Seminary Fen, a 600-acre complex in Carver County, supports one of only 500 calcareous fens in the world and is one of the highest quality calcareous fens in southern Minnesota. The Fen feeds Assumption Creek; one of the metro area's last known trout streams that supports naturally reproducing native brook trout. Assumption Creek then discharges to the nearby Minnesota River. The Fen's unique hydrology, soils, plants, and habitats are highly sensitive to water quality and sedimentation stress.
This Total Maximum Daily Load (TMDL) project will develop a TMDL Report and Implementation Plan defining the sources contributing to the impairments and outlining the steps necessary to bring Bluff Creek back to meeting water quality standards.
In 2002 and 2004, the Minnesota Pollution Control Agency listed Bluff Creek for turbidity and biological integrity. A Total Maximum Daily Load report and implementation plan were finalized and approved in 2013. This project was identified as a high priority site for culvert restoration and bank repairs.
This project will develop a Final TMDL report and Implementation Plan for the Bluff Creek Watershed. The main outcomes of this project are the development of a Final TMDL Report approved by MPCA and EPA and a Final Implementation Plan approved by MPCA.
The Cannon River Watershed is a diverse watershed from the standpoint of topography, land use, and land cover, but a central issue of concern is increased sedimentation and turbidity within the river. One of the best ways to keep sediment from entering the Cannon River is to install vegetative buffers on the smaller tributaries in the upper reaches of the watershed. This project is important as it aims to help identify strategic locations where buffers are needed and to assist landowners to install buffers that will directly help reduce sedimentation within the watershed.
We will partner with urban municipalities and school districts to support planting of climate-resilient tree species. Activities include planting trees, gravel bed nursery creation, tree assessment and mapping, and community.
The Burandt Lake Stormwater Reuse System (BLSRS) project will install a water reuse system to capture untreated storm water and reduce pollutants entering Burandt Lake. This collaborative project with Carver County, Carver County Soil and Water Conservation District (SWCD), City of Waconia and Independent School District 110 will retain and reuse an estimated 48% of the annual storm water runoff (1.25 million gallons) currently generated from eight acres of adjacent residential neighborhoods.
This project is to refresh the Cannon River Watershed Hydrologic Simulation Program FORTRAN (HSPF) model. The previous model was developed for the time period of 1995-2012. This phase will extend the model to include data through 2019. All time series data will be updated through 2019, land classification zones will be restructured, hydrology calibration will be updated as needed, and final reporting including technical memo and model package.
This project with the Cannon River Watershed Joint Powers Board will conduct lake and stream sampling for the watershed restoration and protection strategy (WRAPS) update in the Cannon River Watershed. This sampling will track changes from the 2011 results, along with fill in gaps, delist or keep an eye out for new impairments, and gather data for permitting. The sites of sampling were selected by the Minnesota Pollution Control Agency (MPCA) and will be looking at lake and stream chemistry and stream bacteria.
The Cannon River Watershed Habitat Protection and Restoration Program will protect approximately 275 acres in fee, and restore and enhance approximately 181 acres of high priority wildlife habitat within the Cannon River Watershed, including wetlands, prairies, Big Woods forest, and river/shallow lake shoreline. Its goal is to protect existing high quality habitat, restore degraded habitat, prevent degradation of water quality, and provide public access.
The goal of this project is to use a science-based and participatory approach to understanding and promoting conservation practices in the agricultural community.
The goal of this project is to apply the Hydrological Simulation Program FORTRAN (HSPF) model to evaluate scenarios to support potential management actions and implementation in the watershed, construct Total Maximum Daily Load (TMDL) studies, and to develop a conceptual site model of the lakes for understanding phosphorus release.
Complete section 3 of Watershed Restoration and Protection Strategy (WRAPS) document for the Cannon and Zumbro Watersheds and provide input to sections 1 and 2.
The Cannon River Watershed Habitat Protection and Restoration Program will protect approximately 264 acres in fee, and restore and enhance approximately 238 acres of high priority wildlife habitat within the Cannon River Watershed, including wetlands, prairies, Big Woods forest, and river/shallow lake shoreline. Its goal is to protect existing high quality habitat, restore degraded habitat, prevent degradation of water quality, and provide public access. We will restore and enhance riverine, forest, wetlands, oak savanna, and prairie habitat
The Cannon River Watershed Habitat Protection and Restoration Program will protect approximately 290 acres in fee, and restore and enhance approximately 358 acres of high priority wildlife habitat within the Cannon River Watershed, including wetlands, prairies, forests, and river/shallow lake shoreline. Its goal is to protect existing high quality habitat, restore degraded habitat, prevent degradation of water quality, and provide public access.
The Cannon River Watershed Habitat Protection and Restoration Program will protect approximately 180 acres in fee, and restore or enhance approximately 136 acres of high priority wildlife habitat within the Cannon River Watershed, including wetlands, prairies, forests, and river/shallow lake shoreline. Its goal is to protect existing high quality habitat, restore degraded habitat, prevent degradation of water quality, and provide public access.
Through fee-title acquisition, Trust for Public Land permanently protected 253 acres (115% of our goal) throughout the Cannon River Watershed. This resulted in two additions to existing Wildlife Management Areas (WMAs). These now publicly accessible and protected areas include wetland, prairie, and Big Woods forest habitat. The permanent protection of these places has reversed habitat loss, allowed for habitat restoration, and increased access to public lands for hunting, fishing, hiking, and other outdoor recreation opportunities.
Asian Media Access (AMA) will embark on a capacity-building project aimed at cultivating individual donors from Asian American and Pacific Islanders (AAPIs) and the public, and encompasses a multifaceted approach to enhance grant writing, reporting, nonprofit management, and fundraising capabilities. Key activities include: 1) train and assist board/staff on grant writing and reporting; 2) build internal expertise in grant writing and reporting by obtaining consultation and training from experts in Donor Solicitation.
To enhance nonoprofit arts groups' ability to serve the artistic cultural and geographic diversity of the metro area through grants for minor capital improvements equipment and supplies.
Revitalizing the old deer yards into Caribou Yards is a transformative initiative aimed at creating habitats for a herd of caribou. The need for this project arises from the closure of the old deer yards, which were previously inhabited by white-tailed deer until the last one passed away of old age. Subsequently, the fencing surrounding these three habitats has weathered and suffered damage during the years of inoccupancy.
To document and display past and current county history through photographs at the Carver County Fair. Selected photographs will represent a cross-section of topics, people, and places in Carver County.
This project will increase the ability of the Carver County Water Management Organization (CCWMO) to approach local community partners and fund projects that treat stormwater runoff at the source instead of treating stormwater downstream at a regional pond or through other large scale best management practices (BMPs). The CCWMO will target three geographic areas that have demonstrated strong community involvement, effective partner relationships, and support for the goal of improving water quality of locally impaired waters or regionally significant water body.
The Carver County Planning and Water Management Department (PWM) has an active well sealing cost share program. Following the adoption of the updated County Groundwater Plan in February of 2016, the Carver County Board of Commissioners moved to accelerate the program to encourage landowners to seal abandoned wells. Carver County is looking to supplement existing funds, as demand is expected to increase. With this additional funding, it is the goal of Carver County PWM to seal an additional 15 wells county wide.
Carver County Staff will monitor Silver Creek at station S000-843 following the basic monitoring regime. S000-843 is located in the Lower Minnesota subwatershed in southeastern Carver County. The monitoring will be conducted from 2014 to 2015 and include 13 site visits in 2014; collecting TSVS, TSS, Total P, Ammonia-N, TKN, NO2+NO3, Sulfate, Chloride, and Hardness as CaCO3 ten times. E.coli will be collected nine times in 2014.