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首页> 外文期刊>Journal of Turbulence >Helical modes in low- and high-swirl jets measured by tomographic PIV
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Helical modes in low- and high-swirl jets measured by tomographic PIV

机译:由断层扫描PIV测量的低温和高旋转夹具的螺旋模式

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We report on a parallel study on properties of large-scale vortical structures in low-and high-swirl turbulent jets by means of the time-resolved tomographic particle image velocimetry technique. The high-swirl jet flow is featured by a well-established bubble-type vortex breakdown with a central recirculation zone. In the low-swirl flow, the mean axial velocity, while intermittently acquiring negative values, remains positive in the mean but with a local velocity defect immediately downstream from the nozzle exit, followed by a spiralling vortex core system and its eventual breakdown. Measurements of the 3D velocity fields allowed direct analysis of the azimuthal/helical modes via Fourier transform over the azimuthal angle and proper orthogonal decomposition ( POD) analysis in the Fourier space. A precessing vortex core is detected for both swirl cases, whereas the POD analysis showed that the one originating in the bubble-type vortex breakdown is much more energetic and easier to detect.
机译:我们通过时间分辨断层粒子图像测速技术报告了低和高旋转湍流喷射中大型涡流结构的性质的平行研究。高旋转射流通过具有中央再循环区的良好的泡沫型涡流击穿。在低涡流中,平均轴向速度,同时间歇地获取负值,在平均值中保持正,但是在喷嘴出口中立即下游的局部速度缺陷,其次是螺旋涡旋芯系统及其最终故障。 3D速度场的测量允许通过傅立叶变换在傅立叶空间中的方位角和适当的正交分解(POD)分析上通过傅立叶变换直接分析方位角/螺旋模式。检测到两种涡流案例的涡旋核心,而POD分析表明,源自气泡型涡流击穿的载体更具能量和更容易检测。

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