Spiral Concentrator Design

Spiral Concentrator Design MCP Connector for Claude

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Design mineral processing spiral concentrator circuits based on ore characteristics.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing gravity separation circuits. Use calculate_circuit_capacity to determine the required number of units and footprint, optimize_splitter_settings to find the ideal radial position for mineral recovery, and evaluate_flow_dynamics to ensure stable slurry behavior. The toolset also includes generate_design_summary to aggregate all parameters into a final engineering specification.

gravity-separationmineral-processingcircuit-designmetallurgyengineering-tools

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

calculate_circuit_capacity

Determines the total number of spiral units and the required physical footprint for a given production target

evaluate_flow_dynamics

Simulates how the slurry will behave on the spiral surface to ensure stable operation

generate_design_summary

Aggregates all calculated parameters into a final engineering specification for the circuit

optimize_splitter_settings

Recommends the precise position of splitters to maximize mineral recovery while minimizing gangue entrapment

See how to talk to your AI agent using Spiral Concentrator Design.

Calculate the circuit capacity for a throughput of 50 tph with a mineral density of 4.5 and a particle size distribution of [0.1, 0.5, 1.0].

The required circuit includes 5 spiral units with a total footprint area of 45 square meters in a parallel_banks configuration.

What is the optimal splitter position for a particle size of 0.2, mineral density of 4.0, pulp density of 0.3, and wash water flow of 5.0?

The optimal splitter position is 35% with an expected recovery of 88% and an expected grade of 72%.

Evaluate the flow dynamics for a pulp density of 0.25, particle size of 0.15, and wash water flow of 2.0.

The flow stability index is 0.85 and the turbulence level is 0.12, indicating highly stable operation.

You can use the `calculate_circuit_capacity` tool, providing the throughput, mineral density, and particle size distribution.

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