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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effects of Temperature and Particle Size on Deposition in Land Based Turbines
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Effects of Temperature and Particle Size on Deposition in Land Based Turbines

机译:温度和粒度对陆基涡轮机沉积的影响

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摘要

Four series of tests were performed in an accelerated deposition test facility to study the independent effects of particle size, gas temperature, and metal temperature on ash deposits from two candidate power turbine synfuels (coal and petcoke). The facility matches the gas temperature and velocity of modern first stage high pressure turbine vanes while accelerating the deposition process. Particle size was found to have a significant effect on capture efficiency with larger particles causing significant thermal barrier coating (TBC) spoliation during a 4 h accelerated test. In the second series of tests, particle deposition rate was found to decrease with decreasing gas temperature. The threshold gas temperature for deposition was approximately 960℃. In the third and fourth test series, impingement cooling was applied to the back side of the target coupon to simulate internal vane cooling. Capture efficiency was reduced with increasing mass flow of coolant air; however, at low levels of cooling, the deposits attached more tenaciously to the TBC layer. Postexposure analyses of the third test series (scanning electron microscopy and X-ray spectroscopy) show decreasing TBC damage with increased cooling levels.
机译:在加速沉积测试设备中进行了四个系列的测试,以研究粒径,气体温度和金属温度对两种候选动力涡轮合成燃料(煤和石油焦)的灰分沉积的独立影响。该设备可与现代第一级高压涡轮机叶片的气体温度和速度相匹配,同时加快沉积过程。发现粒径对捕获效率有显着影响,较大的颗粒会在4小时的加速测试中引起明显的热障涂层(TBC)剥落。在第二系列测试中,发现颗粒沉积速率随气体温度降低而降低。沉积的临界气体温度约为960℃。在第三和第四测试系列中,将冲击冷却应用于目标试样的背面,以模拟内部叶片冷却。随着冷却剂空气质量流量的增加,捕集效率降低。但是,在较低的冷却水平下,沉积物会更牢固地附着在TBC层上。第三测试系列的曝光后分析(扫描电子显微镜和X射线光谱法)显示,随着冷却水平的提高,TBC损伤减少。

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