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Geothermal steam condition performance monitoring

机译:地热蒸汽条件性能监测

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摘要

Turbine scaling from poor purity steam is a major problem in geothermal power stations. The "true" purity and quality of steam going into geothermal turbines can't easily be measured in stations equipped with direct-contact condensers. Field testing has also shown that wet steam line samples are generally not representative of steam purity. Measuring sodium flux or chemical tracer injected upstream of the separators in drainpot condensate discharges can be used to determine the steam condition, However, the best measurement method seems to be the measuring of sodium flux.Tracers injected upstream of separators can take a long time to stabilise. The results of tracer studies need to be treated with caution and if they are used for a short interval test, they can give misleadingly optimistic results.Even with reliable representative data, there are very few changes that can be made to improve steam purity or quality without either major capital expenditure or significant load loss. This means that the design of a steam delivery system capable of providing clean dry steam is of vital importance in power station design. Results from existing stations' performance shows that the design of steam delivery systems is currently being poorly done.
机译:来自纯度蒸汽差的涡轮缩放是地热发电站的一个主要问题。在配备有直接接触冷凝器的站中,无法测量进入地热涡轮机的“真实”纯度和质量。田间测试还表明,湿蒸汽线样品通常不代表蒸汽纯度。测量钠助焊剂或化学示踪剂在排水管凝块排出中的分离器上游注入蒸汽条件,然而,最佳测量方法似乎是测量钠的助量。注射分离器上游的分类器可能需要很长时间稳定。需要谨慎治疗示踪剂研究的结果,如果它们用于短暂的间隔测试,它们可以给出误演乐观的结果。与可靠的代表性数据相对于,可以提高蒸汽纯度或质量很少的变化没有主要的资本支出或大量负载损失。这意味着能够提供清洁干燥蒸汽的蒸汽输送系统的设计对于发电站设计至关重要。现有电台绩效的结果表明,蒸汽输送系统的设计目前正在做得不佳。

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