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INFLUENCE OF OPPOSING DILUTION JETS ON EFFUSION COOLING

机译:对立稀释喷射对耐久性冷却的影响

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The gas turbine combustion process reaches gas temperatures that exceed the melting temperature of the combustor liner materials. Cooling the liner is critical to combustor durability and is often accomplished with double-walled liners that contain both impingement and effusion holes. The liner cooling is complicated with the interruption of the effusion cooling by large dilution jets that facilitate the combustion process. Given the presence of the dilution jets, it is important to understand the effect that the dilution jet has on the opposing wall in respect to the effusion film. This research includes measurements of the local static pressure distribution for a range of dilution jet momentum flux ratios to investigate the impact that the opposing dilution jet has on the effusion film. The interactions with the effusion cooling were also evaluated by measuring the overall cooling effectiveness across the panel. Measurements show that the opposing dilution jets did impact the liner at dilution jet momentum flux ratios that were greater than 20. The impacts at high momentum flux ratios were indicated through increased local static pressures measured on the surface of the combustor liner. Furthermore, the dilution touchdown decreased the overall cooling effectiveness of the effusion cooling. Results also indicated that the opposing dilution jets changed position on the liner as the dilution jet momentum flux ratio changes.
机译:燃气轮机燃烧过程达到超过燃烧器衬里材料的熔化温度的气体温度。冷却衬里对燃烧器耐久性至关重要,并且通常用双壁衬里完成,双壁衬里含有撞击和积液孔。衬里冷却与促进燃烧过程的大量稀释射流进行的积液冷却的中断复杂。鉴于稀释射流的存在,重要的是要理解稀释射流对相对壁的效果相对于活力膜。该研究包括用于稀释喷射动量助焊剂比率范围的局部静压分布的测量,以研究相对稀释射流在活力膜上的影响。还通过测量面板上的整体冷却效果来评估与积液冷却的相互作用。测量结果表明,相对的稀释射流确实对稀释喷射动量助焊剂的含量影响大于2​​0.通过增加在燃烧器衬里的表面上测量的局部静电压力增加,表明了高动量通量比的影响。此外,稀释抗衡率降低了积液冷却的总冷却效果。结果还表明,随着稀释射流动量磁通比变化,相反的稀释射流在衬里的位置变化。

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