A Low Order Flow Network Model for Double-Wall Effusion Cooling Systems

IF 1.3 Q2 ENGINEERING, AEROSPACE
Michael van de Noort, P. Ireland
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引用次数: 1

Abstract

The high pressure turbine nozzle guide vane of a modern aeroengine experiences large heat loads and thus requires both highly effective internal and external cooling. This can be accomplished with double-wall effusion cooling, which combines impingement, pin-fin and effusion cooling. The combination of three cooling mechanisms causes high pressure losses, increasing potential for the migration of coolant towards low pressure regions, subsequently starving effusion holes on the leading edge of coolant supply. This paper presents a low order flow network model to rapidly assess the pressure and mass flow distributions through such cooling schemes for a flexible set of geometric and flow conditions. The model is subsequently validated by a series of experiments with varying mainstream pressure gradients. Results from the model are used to indicate design parameters to reduce the effect of coolant migration, and to minimise the risk of destructive hot gas ingestion.
双壁射流冷却系统的低阶流网络模型
现代航空发动机高压涡轮喷管导叶承受着较大的热负荷,因此需要高效的内外冷却。这可以通过双壁射流冷却来实现,它结合了撞击、鳍状和射流冷却。三种冷却机制的结合导致高压损失,增加了冷却剂向低压区域迁移的可能性,随后导致冷却剂供应前缘的渗出孔枯竭。本文提出了一个低阶流网络模型,以快速评估在一组灵活的几何和流动条件下,通过这种冷却方案的压力和质量流量分布。该模型随后通过一系列不同主流压力梯度的实验进行了验证。该模型的结果用于指示设计参数,以减少冷却剂迁移的影响,并尽量减少破坏性热气体摄入的风险。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.30
自引率
21.40%
发文量
29
审稿时长
11 weeks
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