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Measuring Fluid Level at Subcritical to Supercritical Pressures in Once Through Boilers

机译:在直流锅炉中在亚临界至超临界压力下测量液位

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Modern once through boilers have integral steam-water separation systems that are only needed for boiler startup however must remain in service throughout the boiler's entire operating range. Therefore the steam-water separation systems in supercritical boilers need to operate at both subcritical pressures during start up and low load to supercritical pressures approaching unit full load. The concept of "level" for steam water systems has traditionally been associated with subcritical operation at saturated steam conditions, where the meaning of "level" is truly the boundary of the two different phases that are present. "Level" for supercritical fluids is somewhat abstract since the definition of supercritical fluid indicates when vapor and liquid phases are indistinguishable. Yet the "level" signal provides important operational information and is used in automatic control as well as boiler protection logic. This paper discusses the term of "subcooled boundary" as an alternative for the term "level" and presents calculation methodologies including the transition zone from subcritical to supercritical.
机译:现代的直通式锅炉具有一体的蒸汽-水分离系统,仅在锅炉启动时才需要,但是必须在锅炉的整个运行范围内保持运转。因此,超临界锅炉中的蒸汽-水分离系统需要在启动过程中在亚临界压力下运行,并需要低负荷运行至接近机组满负荷的超临界压力。蒸汽水系统的“液位”概念传统上与饱和蒸汽条件下的亚临界运行相关联,其中“液位”的含义实际上是存在的两个不同阶段的边界。超临界流体的“水平”在某种程度上是抽象的,因为超临界流体的定义指示了何时无法区分汽相和液相。然而,“液位”信号提供了重要的操作信息,并用于自动控制以及锅炉保护逻辑中。本文讨论了“过冷边界”一词作为“水平”一词的替代方法,并提出了包括从亚临界到超临界的过渡带在内的计算方法。

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