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FILTER FAILURE DURING HIGH HUMIDITY CONDITIONS

机译:高湿度条件下的过滤器故障

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The operation of a gas turbine, by its basic design, requires it to ingest enormous quantities of air. Even in relatively clean environments, a gas turbine may ingest hundreds of pounds of foreign matter each year of various sizes. Also, the more advanced the turbine design, the more sensitive it is to the quality of the air ingested. Filtration is applied to the inlet air to provide protection against the effects of contaminated air. Filters used with gas turbines are designed to remove a specified amount of particular contaminants. One type of filter is the high efficiency filter. These are often installed in order to capture particles less than ten microns. These filters are sometimes susceptible to water penetration. If the filter is not designed to remove water, then water can absorb soluble contaminants and carry them through the filter into the inlet of the gas turbine. In the case where harmful contaminants travel through the filter with the water, this can be potentially damaging to the gas turbine. For example, salt is soluble and can lead to hot corrosion in the turbine section. If water is allowed to reach the high efficiency filters then the water may carry contaminants through the gas turbine. In order to mitigate this phenomenon, many filter systems have mist removal systems. Even with a good mist removal system, humidity can reach the high efficiency filters. As humid air flows past the high efficiency filters, the decrease in air pressure can lead to water condensing on the filters. A procedure is presented in this paper which shows that filters that have been fully or near fully loaded with contaminants may experience condensation in an environment with high humidity. This paper reviews a thermodynamic analysis that is used to determine the conditions that must be met in order to experience this phenomenon. The possible occurrence of condensation further demonstrates the criticality of replacing inlet filters as soon as the filter pressure loss shows an upward trend.
机译:根据其基本设计,燃气轮机的运行要求其吸收大量的空气。即使在相对清洁的环境中,燃气轮机每年也可能摄入数百磅的各种尺寸的异物。同样,涡轮机设计越先进,它对吸入的空气质量就越敏感。对进气进行过滤,以防止受到污染的空气的影响。燃气轮机使用的过滤器旨在去除特定数量的特定污染物。一种类型的过滤器是高效过滤器。通常安装这些是为了捕获小于十微米的颗粒。这些过滤器有时容易渗水。如果未将过滤器设计为除水,则水会吸收可溶性污染物,并通过过滤器将其带入燃气轮机的入口。如果有害污染物与水一起流过过滤器,则可能会对燃气轮机造成损害。例如,盐是可溶的,并可能导致涡轮部分中的热腐蚀。如果允许水到达高效过滤器,则水可能携带污染物通过燃气轮机。为了减轻这种现象,许多过滤器系统具有除雾系统。即使使用了良好的除雾系统,湿气仍可以到达高效过滤器。当湿空气流过高效过滤器时,空气压力的下降会导致水在过滤器上凝结。本文介绍了一种程序,该程序表明已充满或接近充满污染物的过滤器在高湿度环境中可能会凝结。本文回顾了一种热力学分析,该分析用于确定经历此现象必须满足的条件。一旦过滤器压力损失呈上升趋势,就可能出现冷凝现象,这进一步证明了更换进口过滤器的重要性。

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