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Calpine Geysers' Units 18 and 20's Stretford System Froth and Balance Tank Level Measurement

机译:Calpine Geysers的18和20单元的斯特雷特福德系统泡沫和平衡罐液位测量

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Depending on the global location of the geothermal plant, H2S abatement may be required to meet local environmental regulations. At Calpine's Geysers, a number of the operating power plants have Stretford H2S Abatement systems while others are equipped with burner-scrubber systems. The primary abatements systems for surface condenser vent gases are the Stretford Abatement systems. Burner-scrubber systems are in use on the direct-contact condenser units. Ten of the Geysers power plants use Stretford Abatement; the five remaining units use the burner-scrubber system. This paper focuses on the liquid level measurement technology in use in the Stretford system froth and balance tanks. These tanks were initially designed with "bubbler" level measurement systems, when the plants were constructed by Pacific Gas & Electric (PG&E) in the 1980's. Tank level measurement in these systems is particularly challenging because the Stretford solution and froth are two phase solutions containing high concentrations of suspended solids and have a highly variable solution density. Lower density foam and froth layers tend to form on solution surfaces causing false level indications in instruments that depend on solution height and density such as bubblers. Additional difficulties are encountered when suspended solids settle in the tank bottoms, effectively reducing the tank volume. In 2012, the bubbler systems were replaced with non-contacting radar level transmitters. Non-contacting radar level transmitters have been used on the froth and balance tanks since that time. The Stretford process is reviewed; the froth and balance tanks, which are part of the Stretford Abatement system, are detailed; bubbler technology is over-viewed; and finally, non-contacting radar as a solution in these applications is discussed.
机译:根据地热发电厂的全球位置,可能需要减少H2S以满足当地的环境法规。在Calpine的间歇泉,许多运行中的电厂都配备了斯特雷特福德H2S减排系统,而其他电厂则配备了燃烧器洗涤器系统。表面冷凝器排放气体的主要减排系统是斯特雷特福德减排系统。燃烧器洗涤器系统用于直接接触式冷凝器单元上。间歇泉发电厂中有十座使用了斯特雷特福德减排。其余五个单元使用燃烧器洗涤器系统。本文重点介绍了斯特雷特福德系统泡沫和平衡罐中使用的液位测量技术。这些罐最初是在1980年代由Pacific Gas&Electric(PG&E)建造时使用“气泡”液位测量系统设计的。这些系统中的罐液位测量尤其具有挑战性,因为斯特雷特福德溶液和泡沫是包含高浓度悬浮固体且溶液密度变化很大的两相溶液。较低密度的泡沫层和泡沫层倾向于在溶液表面上形成,从而在取决于溶液高度和密度的仪器(例如起泡器)中引起错误的液位指示。当悬浮的固体沉淀在储罐底部时,会遇到其他困难,从而有效地减少了储罐的体积。 2012年,起泡器系统被非接触式雷达液位变送器所取代。从那时起,非接触式雷达液位变送器就被用于泡沫罐和平衡罐。审查了斯特雷特福德程序;斯特雷特福德减排系统一部分的泡沫罐和平衡罐已详细列出;起泡器技术被忽视;最后,讨论了非接触式雷达在这些应用中的解决方案。

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