Wetland Restoration Hydrology

Wetland Restoration Hydrology MCP Connector for Claude

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Simulate water budgets, seasonal fluctuations, and vegetation suitability for wetland design.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a hydrological modeling engine for designing wetland restoration projects. It allows AI agents to calculate water budgets, predict seasonal water level fluctuations, design containment structures like berms, and evaluate ecological suitability for vegetation based on hydroperiods. Use calculate_water_budget to predict depth changes, simulate_seasonal_fluctuations to model annual cycles, design_containment_structures for perimeter requirements, and evaluate_vegetation_suitability to match biological zones to soil and water conditions.

wetlandwater-budgethydrologyrestorationecology

4 tools expose this connector's capabilities to your AI agent.

evaluate_vegetation_suitability

Matches biological zones to the calculated hydrological conditions

simulate_seasonal_fluctuations

Predicts how water levels will rise and fall throughout a typical year

design_containment_structures

Determines the physical requirements for the wetland perimeter to prevent overflow

calculate_water_budget

Estimates the net water balance for a specific period to predict depth changes

See how to talk to your AI agent using Wetland Restoration Hydrology.

Calculate the water budget for a 500 hectare watershed with 200mm of rainfall, 50mm ET, and 10mm seepage for a 1.5m target depth.

The net water balance is positive, and the predicted depth change is sufficient to meet the 1.5m target depth.

What is the required berm height for a wetland with a max depth of 2.5 meters and a 0.5 meter safety buffer?

The required berm height is 3.0 meters.

Is clay soil suitable for a site with a 30-day hydroperiod?

Clay soil is highly suitable for this hydroperiod, supporting permanent or seasonal aquatic zones with high stability.

You can use the `calculate_water_budget` tool. By providing the watershed area, rainfall, evapotranspiration, and soil seepage, the tool determines if the `isTargetMet` condition is true for your desired depth.

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