Flow in Pillow-Plate Channels for High-Speed Turbomachinery Heat Exchangers

IF 1.3 Q2 ENGINEERING, AEROSPACE
S. Sundermeier, Maximilian Passmann, S. aus der Wiesche, E. Kenig
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引用次数: 2

Abstract

In numerous turbomachinery applications, e.g., in aero-engines with regenerators for improving specific fuel consumption (SFC), heat exchangers with low-pressure loss are required. Pil low-plate heat exchangers (PPHE) are a novel exchanger type and promising candidates for high-speed flow applications due to their smooth profiles avoiding blunt obstacles in the flow path. This work deals with the overall system behavior and gas dynamics of pillow-plate channels. A pillow-plate channel was placed in the test section of a blow-down wind tunnel working with dry air, and compressible flow phenomena were investigated utilizing conventional and focusing schlieren optics; furthermore, static and total pressure measurements were performed. The experiments supported the assumption that the system behavior can be described through a Fanno–Rayleigh flow model. Since only wavy walls with smooth profiles were involved, linearized gas dynamics was able to cover important flow features within the channel. The effects of the wavy wall structures on pressure drop and Mach number distribution within the flow path were investigated, and a good qualitative agreement with theoretical and numerical predictions was found. The present analysis demonstrates that pressure losses in pillow-plate heat exchangers are rather low, although their strong turbulent mixing enables high convective heat transfer coefficients.
高速涡轮机械换热器枕板通道中的流动
在许多涡轮机应用中,例如,在具有用于提高比燃料消耗(SFC)的再生器的航空发动机中,需要具有低压损失的热交换器。Pil低板换热器(PPHE)是一种新型的换热器,由于其光滑的外形避免了流动路径中的钝性障碍,因此有望用于高速流动应用。本文研究了枕板通道的整体系统行为和气体动力学。将一个枕板通道放置在干燥空气吹扫风洞的试验段,利用常规和聚焦纹影光学方法研究了可压缩流动现象;此外,还进行了静压和总压测量。实验支持了这样一种假设,即系统行为可以通过Fanno–Rayleigh流模型来描述。由于只涉及具有光滑轮廓的波状壁,线性化的气体动力学能够覆盖通道内的重要流动特征。研究了波纹壁结构对流道内压降和马赫数分布的影响,发现与理论和数值预测在质量上有很好的一致性。目前的分析表明,枕板式换热器的压力损失相当低,尽管它们的强湍流混合能够实现高对流传热系数。
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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