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CONSIDERATIONS OF A DOUBLE-WALL COOLING DESIGN TO REDUCE SAND BLOCKAGE

机译:减少砂壁堵塞的双壁冷却设计的考虑

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Gas turbine engines use innovative cooling techniques to keep metal temperatures down while pushing the main gas temperature as high as possible. Cooling technologies such as film-cooling and impingement cooling are generally used to reduce metal temperatures of the various components in the combustor and turbine sections. As cooling passages become more complicated, ingested particles can block these passages and greatly reduce the life of hot section components.This study investigates a double-walled cooling geometry with impingement and film-cooling. A number of parameters were simulated to investigate the success of using impingement jets to reduce the size of particles in the cooling passages. Pressure ratios typically ranged between those used for combustor liner cooling and for blade outer air seal cooling whereby both these locations typically use double-walled liners. The results obtained in this study are applicable to more intricate geometries where the need to promote particle breakup exists. Results indicated that ingested sand had a large distribution of particle sizes where particles greater than 150 μm are primarily responsible for blocking the cooling passages. Results also showed that the blockage from these large particles was significantly influenced and can be significantly reduced by controlling the spacing between the film-cooling and impingement cooling plates.
机译:燃气涡轮发动机使用创新的冷却技术来降低金属温度,同时将主要气体温度推到尽可能高的水平。通常使用诸如薄膜冷却和冲击冷却之类的冷却技术来降低燃烧器和涡轮部分中各个组件的金属温度。随着冷却通道变得越来越复杂,摄入的颗粒会阻塞这些通道,并大大缩短热段部件的使用寿命。 这项研究研究了具有冲击和薄膜冷却的双壁冷却几何形状。模拟了许多参数,以研究使用冲击射流减小冷却通道中颗粒尺寸的成功性。压力比通常在燃烧室衬套冷却和叶片外部空气密封冷却所用的压力比之间变化,因此这两个位置通常都使用双壁衬套。在这项研究中获得的结果适用于需要促进颗粒破碎的更复杂的几何形状。结果表明,吞入的沙子具有较大的粒径分布,其中大于150μm的颗粒是造成冷却通道堵塞的主要原因。结果还表明,通过控制薄膜冷却板和冲击冷却板之间的间距,可以显着影响这些大颗粒的堵塞,并且可以显着降低这些堵塞。

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