Evaporator Design Engineer

Evaporator Design Engineer MCP Connector for Claude

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Calculate thermal requirements and equipment dimensions for industrial evaporation systems.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized engineering tools for designing industrial evaporation systems. It allows users to calculate heat transfer area, steam consumption, and the optimal number of effects for multi-stage processes. Use calculate_single_effect_design for simple setups, calculate_multiple_effect_design to optimize energy efficiency through multiple stages, estimate_energy_cost to project operational expenses, and analyze_boiling_point_impact to understand how solute concentration affects temperature driving force.

evaporationthermal-engineeringsteam-consumptionheat-transferindustrial-process

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

analyze_boiling_point_impact

Analyze sensitivity to boiling point elevation

calculate_multiple_effect_design

Calculate equipment requirements for a multi-stage evaporation process

calculate_single_effect_design

Calculate equipment requirements for a single-stage evaporation process

estimate_energy_cost

Estimate operational costs for the evaporation design

See how to talk to your AI agent using Evaporator Design Engineer.

Calculate the requirements for a single-effect evaporator with a feed rate of 5000 kg/h, initial concentration of 5%, target concentration of 25%, and steam at 150°C.

The required heat transfer area is 125.4 m² and the estimated steam consumption is 1850 kg/h for this single-effect design.

How many effects are needed for a 10000 kg/h feed to reach 40% concentration from 10%, using 120°C steam, if I cannot exceed 2500 kg/h of steam consumption?

To stay below the 2500 kg/h steam limit, a 3-effect evaporation system is required.

What is the annual cost for a system consuming 3000 kg/h of steam using waste heat, running 16 hours a day?

The estimated daily cost is $450 and the total annual cost is $164,250 based on current waste heat recovery models.

You can use the `calculate_multiple_effect_design` tool. Provide the feed rate, concentrations, steam temperature, and your maximum allowed steam consumption to find the optimal number of stages.

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