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EXPERIMENTAL STUDY OF SURFACE ROUGHNESS EFFECTS ON A TURBINE AIRFOIL IN A LINEAR CASCADE - PART I: EXTERNAL HEAT TRANSFER

机译:表面线粗糙度对涡轮叶型表面粗糙度的影响实验研究-第一部分:外部传热

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The present experimental study is part of a comprehensive heat transfer analysis on a highly loaded low pressure turbine blade and endwall with varying surface roughness. Whereas a former paper [1] focused on full span heat transfer of a smooth airfoil and surface roughness effects on the endwall, in this work further measurements at the airfoil midspan with different deterministic surface roughness are considered. Part I investigates the external heat transfer enhancement due to rough surfaces whereas part II focuses on surface roughness effects on aerodynamic losses. A set of different arrays of deterministic roughness is investigated in these experiments, varying the height and eccentricity of the roughness elements, showing the combined influence of roughness height and anisotropy of the rough surfaces on laminar to turbulent transition and the turbulent boundary layer as well as boundary layer separation on the pressure and suction side. It is shown that - besides the known effect of roughness height -eccentricity of roughness plays a major role in the onset of transition and the turbulent heat transfer. The experiments are conducted at several free-stream turbulence levels (Tu_1 = 1.4% to 10.1%) and different Reynolds numbers.
机译:本实验研究是对高负荷低压涡轮叶片和端壁(具有变化的表面粗糙度)进行全面传热分析的一部分。以前的一篇论文[1]侧重于光滑翼型的全跨度传热和端壁上的表面粗糙度影响,在这项工作中,考虑了在具有不同确定性表面粗糙度的翼型中跨上进行的进一步测量。第一部分研究了由于粗糙表面导致的外部传热增强,而第二部分则着重于表面粗糙度对空气动力损失的影响。在这些实验中研究了一组不同的确定性粗糙度阵列,它们改变了粗糙度元素的高度和偏心率,显示了粗糙度高度和粗糙表面的各向异性对层流向湍流过渡以及湍流边界层以及湍流边界层的综合影响。压力和吸入侧的边界层分离。结果表明,除粗糙度高度的已知影响外,粗糙度的偏心率在转变的开始和湍流热传递中起着重要作用。实验在几种自由流湍流水平(Tu_1 = 1.4%至10.1%)和不同的雷诺数下进行。

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