Current Strength Predictor

Current Strength Predictor MCP Connector for Claude

A+

Predict water movement, rip currents, and drift at surf breaks.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise oceanographic predictions for surfers and coastal observers. By analyzing the interaction between swell direction, tide stages, and coastal geometry, it calculates critical water movement patterns. Use predict_longshore_flow to determine parallel water speed, locate_rip_currents to identify dangerous outgoing channels, calculate_drift_vector to find the net movement of water, and analyze_coastal_influence to see how headlands and reefs affect current intensity.

surftidecurrentsoceancoastal

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

analyze_coastal_influence

Analyzes how landmasses like headlands and reefs impact current strength

calculate_drift_vector

Calculates the net movement of water by combining longshore and rip currents

locate_rip_currents

Locates potential rip current positions based on coastal features

predict_longshore_flow

Predicts the speed and direction of the longshore current

See how to talk to your AI agent using Current Strength Predictor.

Where are the rip currents located if the swell is at 180 degrees and there is a reef with a gap at 190 degrees?

The rip current is located at a bearing of 190 degrees with an intensity of 0.8.

How fast is the water moving parallel to the beach with a 150 degree swell, a 45 degree coastline, and high tide?

The longshore current speed is 1.2 meters per second at a direction of 135 degrees.

What is the net movement if the longshore speed is 1.0 at 90 degrees and the rip speed is 0.5 at 180 degrees?

The net drift speed is 1.12 meters per second at a direction of 105 degrees.

Predictions are based on the interaction of swell direction and coastal features like reefs or headlands using `locate_rip_currents` to identify high-probability zones.

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