Kite Wind Gradient Calculator

Kite Wind Gradient Calculator MCP Connector for Claude

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Calculate wind speed increases and power gains at different kite altitudes.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides tools to model the vertical wind profile using the logarithmic wind law. It helps kite pilots understand how wind speed increases with height based on surface roughness. Use get_wind_at_height to find wind speeds at specific altitudes, calculate_power_scaling to determine the cubic power increase, find_optimal_flying_height to plan flights within line length limits, and analyze_thermal_impact to assess atmospheric stability.

kitewindaerodynamicsmeteorologypower-scaling

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

analyze_thermal_impact

Analyzes how temperature gradients affect atmospheric stability and wind profile

calculate_power_scaling

Calculates the power increase ratio and percentage when flying at a target wind speed

get_wind_at_height

Calculates the wind speed at a specific altitude using the logarithmic wind profile

find_optimal_flying_height

Finds the ideal height to achieve a target power ratio within gear constraints

See how to talk to your AI agent using Kite Wind Gradient Calculator.

What is the wind speed at 50 meters if the wind at 10 meters is 5 m/s and the surface is smooth water?

The calculated wind speed at 50 meters is 6.2 m/s.

How much more power will I get if the wind speed increases from 5 m/s to 7 m/s?

Increasing the wind speed from 5 m/s to 7 m/s results in a 2.74 times increase in available power.

I have 100m of line. What is the best height to get double the power if the wind at 10m is 6 m/s and roughness is 0.03?

To achieve a 2x power increase, the optimal flying height is 32.5 meters.

Wind speed increases with height due to the wind gradient. Since power scales with the cube of wind speed, even small increases in altitude can lead to significant power gains.

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