ASSESSMENT OF THE WASHING EFFECTIVENESS OF ON-PURPOSE DESIGNED ECO-FRIENDLY CLEANER AGAINST SOOT DEPOSITS

IF 1.1 Q4 ENGINEERING, MECHANICAL
N. Casari, M. Pinelli, A. Suman, Alessandro Vulpio, C. Appleby, Simon Kyte
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引用次数: 6

Abstract

The increment of the industrialization processes led to even more release of carbonaceous particulate into the environment. These airborne contaminants are produced by endothermic machines, coal combustion, heating systems, and production plants. Soot particles suspended into the air can overpass the inlet filters (if present) of gas turbines and deposit onto the internal parts of the compressor. This phenomenon, leading to the modification of the aerodynamic surface of the airfoils, is the main responsible for the gas turbine performance losses over time. This detrimental effect can be partially recovered by washing the compressor unit, frequently. In this work, the assessment of the washing effectiveness against soot deposits of an on-purpose designed eco-friendly cleaner is provided. The removal effectiveness of this water-based cleaner is related to the capability to collect soot particles from surfaces, limiting redeposit phenomena over the stages. The experimental investigation has been carried out by injecting soot particles, under controlled conditions, into a multistage test axial compressor. Using image post-processing techniques, carried out over the entire compressor flow path, a quantitative evaluation of the washing capability has been assessed. Compared with demineralized water, the cleaner was found to be effective if high cleaning performances are expected.
专门设计的环保型清洁剂对烟灰沉积的洗涤效果评估
工业化进程的增加导致碳质颗粒更多地释放到环境中。这些空气中的污染物是由吸热机器、煤炭燃烧、加热系统和生产工厂产生的。悬浮在空气中的烟灰颗粒可以穿过燃气轮机的入口过滤器(如果存在),并沉积在压缩机的内部零件上。这种现象导致翼型的空气动力学表面发生变化,是燃气轮机性能随时间损失的主要原因。这种有害影响可以通过频繁地清洗压缩机单元来部分恢复。在这项工作中,提供了一种专门设计的环保清洁剂对烟灰沉积的洗涤效果的评估。这种水基清洁剂的去除效果与从表面收集烟灰颗粒的能力有关,从而限制了各阶段的再沉积现象。通过在受控条件下向多级试验轴流压缩机中喷射烟灰颗粒进行了实验研究。使用在整个压缩机流动路径上进行的图像后处理技术,对洗涤能力进行了定量评估。与软化水相比,如果期望高清洁性能,则发现该清洁剂是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the Global Power and Propulsion Society
Journal of the Global Power and Propulsion Society Engineering-Industrial and Manufacturing Engineering
CiteScore
2.10
自引率
0.00%
发文量
21
审稿时长
8 weeks
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