首页> 外文会议>ASME summer heat transfer conference 2008 >EFFECTS OF SYNGAS ASH PARTICLE SIZE ON DEPOSITION AND EROSION OF A FILM COOLED LEADING EDGE
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EFFECTS OF SYNGAS ASH PARTICLE SIZE ON DEPOSITION AND EROSION OF A FILM COOLED LEADING EDGE

机译:SYNGAS烟灰颗粒尺寸对薄膜冷却前缘的沉积和腐蚀的影响

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The paper investigates the deposition and erosion caused by Syngas ash particles in a film cooled leading edge region of a representative turbine vane. The carrier phase is predicted using Large Eddy Simulation for three blowing ratios of 0.4, 0.8 and 1.2. Three ash particle sizes of 1, 5, and 10 microns are investigated using Lagrangian dynamics. The 1 micron particles with momentum Stokes number St = 0.03 (based on approach velocity and cylinder diameter), follow the flow streamlines around the leading edge and few particles reach the blade surface. The 10 micron particles, on the other hand with a high momentum Stokes number, St = 3, directly impinge on the surface, with blowing ratio having a minimal effect. The 5 micron particles with St = 0.8, show the largest receptivity to coolant flow and blowing ratio. On a number basis, 85-90% of the 10 micron particles, 40-50% of 5 micron particles and less than 1 % of 1 micron particles deposit on the surface. Overall there is a slight decrease in percentage of particles deposited with increase in blowing ratio. On the other hand, the potential for erosive wear is highest in the coolant hole and is mostly attributed to 5 micron particles. It is only at B.R.= 1.2 that 10 micron particles contribute to erosive wear in the coolant hole.
机译:本文研究了由合成气烟灰颗粒在代表性的涡轮叶片的薄膜冷却前缘区域中造成的沉积和腐蚀。使用大涡模拟针对0.4、0.8和1.2的三种吹炼比预测载体相位。使用拉格朗日动力学研究了1、5和10微米的三种灰分粒径。动量斯托克斯数St = 0.03(基于进近速度和圆柱直径)的1微米颗粒遵循前缘周围的流线,几乎没有颗粒到达叶片表面。另一方面,具有高动量斯托克斯数St = 3的10微米颗粒直接撞击表面,吹塑比影响最小。 St = 0.8的5微米颗粒显示出最大的冷却液流动性和发泡率。基于数量,10微米颗粒的85-90%,5微米颗粒的40-50%和1微米颗粒的不到1%沉积在表面上。总体而言,随着吹塑比的增加,沉积颗粒的百分比略有下降。另一方面,在冷却液孔中发生腐蚀的可能性最高,并且主要归因于5微米的颗粒。仅在B.R. = 1.2时,10微米的颗粒会导致冷却液孔中的腐蚀磨损。

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