Dense Media Separation (DMS) Designer

Dense Media Separation (DMS) Designer MCP Connector for Claude

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Design efficient DMS circuits by calculating equipment dimensions, media properties, and separation performance.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing Dense Media Separation (DMS) circuits used in mineral processing. It allows users to calculate necessary equipment dimensions for cyclones or drums, determine optimal media properties including viscosity impact, and estimate separation efficiency and recovery rates. Use optimize_circuit_design to verify the feasibility of a complete design based on ore density, throughput, and target cut points.

dmsminingseparationmineral-processingengineering-tools

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

calculate_equipment_dimensions

Determines the necessary physical size of the separation vessel (cyclone or drum) to handle the specified ore flow

determine_media_properties

Calculates the ideal media density and evaluates the impact of viscosity on the separation process

evaluate_separation_performance

Estimates the efficiency and recovery capabilities of the proposed design

optimize_circuit_design

Provides a high-level summary and optimization check for a full set of design parameters

See how to talk to your AI agent using Dense Media Separation (DMS) Designer.

What size cyclone do I need for 50 tph throughput with an ore density of 2.8 and media density of 2.5?

For a throughput of 50 tph, the required cyclone will have a diameter of 450mm, a height of 1200mm, and a volume of 1.9m³.

Calculate the media properties for a sink-float density of 2.6 and ore density of 2.9 with a viscosity of 0.05.

The optimal media density is 2.65, with a stability index of 0.85 and a viscosity impact factor of 0.92.

Is a design with 100 tph throughput, 2.7 cut point, 3.0 ore density, and 2.6 media density feasible for a drum?

Yes, the design is feasible. The recommended diameter is 2200mm with an estimated separation efficiency of 94%.

You can use the `calculate_equipment_dimensions` tool. Provide the throughput, ore density, media density, and specify 'cyclone' as the equipment type.

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