
SteamForce EVO™
Next-Evolution Steam-Assisted Flaring with FlowShield™ Technology
Zeeco’s SteamForce EVO represents the next evolution in steam-assisted flaring, delivering superior smokeless performance with significantly lower steam consumption across a wider operating range. By reducing steam demand, operators can lower costs, reduce fuel gas consumption, and decrease emissions.
Engineered with advanced FlowShield technology, this innovative flare tip protects critical components, prevents burnback, and extends equipment life.
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Why SteamForce EVO?
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Lowest continuous steam requirements amongst all traditional flare tip styles
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Most efficient steam assist technology for maximum smokeless rates
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Stable operation and performance from maximum flow rates down to continuous purge conditions
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Enhanced flare tip protection through advanced FlowShield technology
FlowShield™ Technology: Built-In Protection
At the core of SteamForce EVO is Zeeco’s patent-pending FlowShield technology:
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Injects steam directly into critical internal regions for protection
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Prevents burnback into the flare tip body
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Enhances thermal protection without excess steam use
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Extends flare tip life and reliability, even in high-hydrogen applications
This targeted approach ensures protection where it’s needed most, without compromising efficiency.

Advance Design that Performs
SteamForce EVO continues to use and enhances Zeeco’s proven venturi-based approach with key design features:
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Converging-diverging venturi nozzle for maximum air entrainment and smokeless efficiency
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Optimized multi-nozzle configuration for improved gas distribution and air accessibility
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Precision-engineered internal flow geometry for stable mixing
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Minimized surface area of the flare body to minimize heat exposure
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Robust radiation shielding with improved airflow

Designed for Real-World Operations
SteamForce EVO is engineered for industries where reliability and efficiency are critical:
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Refineries
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Petrochemical facilities
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Chemical manufacturing
Its ability to operate effectively across a wide range of gas compositions and flow scenarios makes it ideal for modern, dynamic processes.
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