气膜冷却试验台主动产生主流湍流的LES和1D热线数据分析

L. Fischer, M. Straußwald, M. Pfitzner
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引用次数: 1

摘要

在风洞中加入了涡发生器,为气膜冷却试验台研究更真实的入流条件。流场信号在LES模拟中通过探针进行数值采样,并通过1D热线测量来确定湍流量。LES表明湍流是各向异性的,一维热线无法检测到。此外,积分长度尺度将提供洞察湍流漩涡的大小是用两种方法确定的。第一种方法采用一探针两次相关的方法,可以从数值和实验探针进行评估。第二种相关方法是利用两个探测器同时使用的方法,利用LES域的空间分辨率。如果对速度信号进行三重分解,两种方法都显示了涡发生器下游类似燃烧室的湍流长度尺度。
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Analysis of LES and 1D Hot-Wire Data to Determine Actively Generated Main Flow Turbulence in a Film Cooling Test Rig
A vortex generator was incorporated into a wind tunnel to investigate more realistic inflow conditions for film cooling test rigs. The flow field signals are sampled numerically by probes in LES simulations and experimentally by using 1D hot-wire measurements to determine turbulence quantities. The LES shows that the turbulence is anisotropic which cannot be detected by the 1D hot-wire. Furthermore, the integral length scale which shall provide insight into the sizes of the turbulent eddies is determined using two approaches. The first uses the one probe at two times correlation method and could be evaluated from the numerical and experimental probes. The second correlation method exploits the spatial resolution in the LES domain by using the two probes at one time approach. Both methods show combustor-like turbulence length scales downstream of the vortex generator if the triple decomposition is applied onto the velocity signal.
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