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INVESTIGATION ON THE EFFECT OF SURFACE WETTABILITY ON A TWO-PHASE FLOW IN A COMPRESSOR CASCADE

机译:压气机叶栅两相流动中表面润湿性的影响研究

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In recent years overspray fogging has become a powerful means for power augmentation of industrial gas turbines. Despite the positive thermodynamic effect on the cycle droplets entering the compressor increase the risk of water droplet erosion. Further deposited water leads to a higher sensitivity towards fouling due to an increased stickiness of the blades. Therefore erosion resistant hydrophobic coatings are applied to the first stages of compressors. Although some patents claim the use of such coatings the aerodynamic impact of a different wettability is not regarded so far. This issue was addressed in the field of aerodynamic efficiency of wings in heavy rain showing higher penalty for hydrophobic coatings. In this study the issue of a different blade surface wettability in a linear transonic compressor cascade is addressed. Different coatings are applied resulting in contact angles of 51 - 95 °. The inflow Mach number was fixed at design inflow Mach number and the inflow angle was varied over a broad range. The effect on the water film pattern is analyzed in terms of position of film breakup, rivulet width and totally wetted surface. The performance of the cascade under two-phase flow was analyzed using LDA/PDA measurement technique in terms of loss coefficient based on wake momentum thickness and flow turning. It is shown that the wettability of the surface has significant effects on the film structure leading to a lower fraction of wetted surface with increasing contact angle. The influence on performance is limited to effects in the proximity of the surface and is dependent on operation point. While in design conditions hydrophilic coating show lower losses the trend is vice-versa for off-design conditions. The data represent first experimental work on the influence of surface wettability in a droplet-laden flow supporting positive features for hydrophobic coatings in gas turbine compressors.
机译:近年来,过喷雾化已成为增强工业燃气轮机功率的有力手段。尽管对进入压缩机的循环液滴有积极的热力学影响,但仍增加了水滴腐蚀的风险。由于叶片的粘性增加,进一步沉积的水导致对结垢的敏感性更高。因此,耐腐蚀的疏水涂层被应用于压缩机的第一级。尽管一些专利要求使用这种涂层,但迄今为止尚未考虑到不同润湿性的空气动力学影响。这个问题已在大雨中机翼的空气动力学效率领域得到解决,该机翼对疏水性涂层表现出更高的惩罚性。在这项研究中,解决了线性跨音速压缩机叶栅中不同的叶片表面润湿性的问题。施加了不同的涂层,导致接触角为51-95°。流入马赫数固定为设计流入马赫数,流入角在较大范围内变化。根据膜破裂的位置,小溪宽度和完全润湿的表面来分析对水膜图案的影响。使用LDA / PDA测量技术,根据基于尾流动量厚度和流转向的损耗系数,分析了两相流在级联下的性能。结果表明,表面的可湿性对薄膜结构具有显着的影响,导致随着接触角的增加,被湿表面的比例降低。对性能的影响仅限于表面附近的影响,并且取决于操作点。在设计条件下,亲水涂层的损耗较低,在非设计条件下趋势则相反。数据代表了在载有液滴的流动中表面润湿性影响的第一项实验工作,该流动支持了燃气轮机压缩机中疏水涂层的积极特征。

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