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ACCURATE MEASUREMENT OF WATER IN FEEDWATER HEATERS

机译:准确测量进给水加热器中的水

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The accurate measurement of liquid levels in power plant operations is key to efficient operation. Although water is a liquid that can be easily measured by numerous measurement technologies, detection in applications like feedwater heaters, for example, takes on a range of complexity that stresses even the most robust devices. Feedwater heaters operate in various ranges depending upon the stage of the process. High-pressure heaters typically operate at 1030 psig @ 550°F (71 bar @ 288°C). Further, liquid level transmitters should operate ideally from ambient start-up to operating conditions at full capacity; a wide variation. Torque tube and differential pressure transmitters have been the technologies of choice for many years, each technology having a set of strengths, weaknesses and idiosyncrasies. Performance of both technologies are dependent on the Specific Gravity (SG) of the medium of they are measuring; both suffer inaccuracies when the SG of water varies over temperature. A new level measurement technology, Guided Wave Radar (GWR), has emerged that eliminates the issues that have plagued torque tube and DP transmitters. Guided Wave Radar (GWR) has shown to accurately measure the level of water throughout the changing conditions seen in the life cycles of vessels like feedwater heaters. GWR is a technology based on the speed of light, or more precisely, electromagnetic energy. Inaccuracies due to Specific Gravity (SG) variations are not an issue. In fact, Guided Wave Radar has shown to accurately measure media with wide variations in dielectric.
机译:电厂操作中液位的精确测量是有效操作的关键。虽然水是一种通过多种测量技术容易地测量的液体,但是,在给水加热器等应用中的检测,例如,甚至是最强大的装置的复杂性。根据该方法的阶段,进给水加热器在各种范围内运行。高压加热器通常在550°F(71巴288°C)的1030psig @ 550°F处运行。此外,液位变送器应理想地从环境启动到全部容量的操作条件操作;各种各样的变化。扭矩管和差压变送器一直是多年来选择的技术,每种技术都有一套优势,劣势和特质。两种技术的性能取决于它们测量的介质的比重(SG);当SG的水变化在温度上时,都会遭受不准确。新的测量技术,引导波雷达(GWR)出现了消除了扭矩管和DP发射器的问题。引导波雷达(GWR)已显示在血管寿命周期中看到的整个变化条件下的水平测量水平,如进给水加热器。 GWR是一种基于光速的技术,或更精确地电磁能。由于特定的重力(SG)变异是不准确的不是问题。实际上,引导波雷达已经表明,可以准确地测量具有宽的电介质变化的介质。

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