Closed · W81EWF-23-SOI-0015 · CFDA 12.630 · Discretionary
Integrating long term datasets with next generation ecological models to quantify ecological response in aquatic systems
Federal grant opportunity posted by Engineer Research and Development Center, cataloged on Grants.gov.
- up to $2.5M
- Award range
- Closed
- Status
- July 17, 2023
- Close date
- 1
- Expected awards
The verdict
Integrating long term datasets with next generation ecological models to quantify ecological response in aquatic systems is a closed discretionary listing from Engineer Research and Development Center that offered Up to $2,500,000 across 1 expected award. Future funding cycles may be published under the same CFDA number.
- up to $2.5M
- award range
- Closed
- application status
- 1
- expected award
- 12.630
- CFDA program
Opportunity snapshot. This Grants.gov announcement - Integrating long term datasets with next generation ecological models to quantify ecological response in aquatic systems - is cataloged under number W81EWF-23-SOI-0015 and tied to CFDA assistance listing 12.630, posted by Engineer Research and Development Center. Grants.gov currently shows the opportunity as closed, first posted on May 16, 2023. The funding category is Discretionary, delivered as a cooperative agreement.
Award economics. The award range on file is Up to $2,500,000. The agency has projected $7.5 million in total estimated funding for this announcement. It expects to issue 1 award. If the agency funds the expected 1 award from the $7.5 million estimated pool, the average award works out to roughly $7.5 million. Cost sharing is not required, so applicants do not need to commit matching funds to be competitive on this opportunity. Federal award ranges are often upper bounds; actual allocations reflect program appropriations, the strength of the applicant pool, and the evaluation committee's scoring.
Deadline and action path. This opportunity closed on July 17, 2023. Future funding cycles may be published under the same CFDA number, so monitoring the parent program page is the most reliable way to catch re-announcements. Every Grants.gov submission requires an active SAM.gov registration and a Unique Entity ID. Review the Eligibility section below carefully, federal eligibility categories (nonprofit, state or local government, tribal, individual, educational institution, small business) have distinct registration and reporting requirements. Pre-application outreach to the listed agency contact is permitted and often welcomed, it helps clarify scope and scoring priorities. Before acting on the deadline or award figures above, verify them directly on the official Grants.gov listing, amendments can change dates and amounts after this page was last refreshed.
Award Range
Up to $2,500,000
Close Date
July 17, 2023
Posted
May 16, 2023
Est. Total Funding
$7,500,000
Expected Awards
1
Instrument
Cooperative Agreement
Description
This research project focuses on integrating long term datasets with next generation ecological models to quantify ecological response in aquatic systems. The ERDC seeks applications for integrating long-term environmental datasets into the next generation of integrated ecological models. Currently, the next generation of integrated ecological models have been parameterized with short-term (<3 years) field or literature data, and their predictive capacity over a longer term is limited, which severely constrains the practical applicability of these models. In particular, aquatic ecosystems are tightly coupled systems driven by complex, system-level interactions among physical, ecological, and social factors. In order to develop comprehensive management plans for aquatic ecosystems, ecological models must be able to accurately forecast how these integrated systems will respond to the changes in the physical and environmental system drivers. Without coupling long-term datasets to next generation models, there is a limited ability to make accurate forecasts. Parameterizing next generation process-based ecological models with long-term datasets that explicitly link physical and ecological processes to changes in species dynamics will dramatically increase the predictive accuracy. Resource managers will be able to use these models to create sustainable long-term strategies for public-benefitting activities including forecasting how ecological response will change in uncertain futures, maintaining and improving infrastructure, managing flood risk and coastal storm damage, among others. The university partner will identify knowledge gaps in existing long-term datasets, will develop and execute experimental designs for addressing those knowledge gaps, and will assist with development and parameterization of these next generation integrated ecological models. These studies will provide critical data and parameters for next generation integrated ecological models that can be used to predict ecological response to various natural and anthropological events. This research will focus on the following objectives 1) Develop a robust, multidisciplinary, field-based experimental design that can quantify the physical and environmental drivers at multiple scales within aquatic systems (e.g., surface and hyporheic). 2) Quantification of small-scale patterns in ecological response for invasive and native benthic communities to quantify how changes in in-stream flow affect spatial distributions. 3) Develop streamflow studies to quantify how differences in climatic disturbance (e.g., flood and drought) impact ecological response for invasive and native benthic communities across temporal scales. 4) Develop system-scale experiments to quantify connectivity, movement, community dynamics, intra- and inter-specific interactions, and methods for using these data to conceptualize and parameterize ecological models.5) Determine positive and negative associations among species with respect to their distribution and abundance and examine if these associations are a consequence of interactions through biological or abiotic pathways.6) Quantify relationships between the hydrogeomorphology of a watershed and species distributions within the watershed. 7) Develop parameter estimates for next generation integrated ecological models developed for quantifying ecological response.
Eligibility
Grants.gov lists this opportunity under eligibility category code 25. These codes correspond to applicant types (state/local government, tribal organization, nonprofit, educational institution, individual, small business, etc.) defined in Grants.gov's own eligibility reference. See the current Grants.gov eligibility categories or check the official listing below for this opportunity's exact eligibility statement.
Official Listing on Grants.gov
View full details, application forms, and submission instructions.
Agency Contact
Phoebe V Fuller Grantor Phone 6016343793
Key Dates
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| Sources | the SAM.gov Assistance Listings and Grants.gov |