Integrated steam tracing station adaptive to multi-temperature interval output

By designing an integrated steam tracing station, and utilizing the combination of the first and second steam pipes and a specific structure, flexible adjustment of output across multiple temperature ranges is achieved. This solves the problem of non-adjustable temperature in traditional steam tracing stations, and improves the steam tracing effect and system adaptability.

CN122129652APending Publication Date: 2026-06-02ACKAM (JIANGSU) IND TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
ACKAM (JIANGSU) IND TECH CO LTD
Filing Date
2026-04-20
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Traditional steam tracing stations struggle to achieve flexible output across multiple temperature ranges, leading to energy waste or poor insulation and antifreeze performance.

Method used

An integrated steam tracing station adapted to multiple temperature ranges was designed. Steam at different temperatures is delivered through the first steam pipe and the second steam pipe respectively. Combined with the layout of the narrowing section, suction pipe, mixing section and diffuser pipe, the efficient mixing and temperature regulation of steam are achieved by using spiral guide vanes and spiral mixing belt.

Benefits of technology

It enables flexible adjustment and rapid response of steam temperature, avoids erosion of pipe walls by condensate, ensures uniform and stable temperature of chemical pipelines, and improves the adaptability and energy efficiency of the system.

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Abstract

This invention discloses an integrated steam tracing station adaptable to multiple temperature ranges, relating to the field of steam tracing station technology. It includes a steam channel, a first steam pipe, a second steam pipe, and a mixing pipe. The first steam pipe transports steam type one, and the second steam pipe transports steam type two. The mixing pipe consists of a reduced-diameter section, an intake pipe, a mixing section, and a diffuser. The reduced-diameter section contains a perforated conveying disc and a spiral guide vane, while the mixing section contains a spiral mixing belt. After being accelerated by the reduced-diameter section, steam type one forms a negative pressure in the intake pipe, introducing steam type two into the mixing section for thorough mixing with steam type one. The mixed steam is then sent into the steam channel through the diffuser. The inner wall of the reduced-diameter section is equipped with a diversion pipe for discharging condensate and preventing erosion and wear. By utilizing the different diameters of the connecting pipes between each mixing pipe and the second steam pipe, the steam output from each mixing pipe has a different temperature, thus achieving multi-temperature range output.
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