首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >CHARACTERISTICS OF THE SCALAR FIELD IN A TURBULENT LIQUID JET AND A FUNDAMENTAL STUDY ON THE MICRO SCALE CONCENTRATION MEASUREMENTS BY THE OPTICAL FIBER LIF METHOD
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CHARACTERISTICS OF THE SCALAR FIELD IN A TURBULENT LIQUID JET AND A FUNDAMENTAL STUDY ON THE MICRO SCALE CONCENTRATION MEASUREMENTS BY THE OPTICAL FIBER LIF METHOD

机译:湍流液体射流中的标量场特征以及用光纤LIF法测量微尺度浓度的基础研究

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In this study, the characteristics of the scalar field in an axisymmetric turbulent water jet are investigated experimentally. In the experiments, the axial velocity, the concentration of the dye solution and the temperature of the fluid are measured by the hot-film probe, the fiber sensor and the cold-firm probe, respectively. In particular, the difference of statistics between scalars (concentration and temperature) with the different molecular diffusion coefficients is discussed. The Schmidt number of the diffusing matter is 3,800, and the Prandtl number of temperature is 7. As regarding the mean values, the r.m.s values and distribution of PDF, we cannot find any difference between the concentration field and temperature field. However, in the spectrum, it is found that the temperature spectrum shows the -5/3 law almost in the same range as the velocity spectrum, on the other hand, the concentration spectrum shows the -5/3 law in the wider range than the velocity spectrum. This means that the shape of spectrum depends on the diffusion coefficient. In order to make the higher resolution measurement of concentration, a new optical probe based on the LIF method is designed. This probe consists of the two optical fibers, the tip of which is processed like the shape of a lens. By the effect of lens, the laser beam can be focused on the narrower area in comparison with the past LIF measurements. In the present design, the width of focus of laser beam is set to 0.6 micrometers, and the focal length is set to 7.3mm. It is shown that this probe has the resolution less than the Batchelor scale at x/d≥30 in the condition of present jet diffusion field (d=4mm, Re=20,000). Further, a new system to adjust the position of the optic fiber probe exquisitely is developed.
机译:在这项研究中,实验研究了轴对称湍流水射流中标量场的特性。在实验中,分别通过热膜探头,纤维传感器和冷固探头测量轴向速度,染料溶液的浓度和流体的温度。特别地,讨论了具有不同分子扩散系数的标量之间的统计差异(浓度和温度)。扩散物质的施密特数为3,800,温度的普朗特数为7。关于平均值,均方根值和PDF的分布,我们找不到浓度场和温度场之间的任何差异。然而,在光谱中,发现温度光谱在几乎与速度光谱相同的范围内显示-5/3律,另一方面,浓度光谱在比速度谱宽的范围内显示-5/3律。速度谱。这意味着光谱的形状取决于扩散系数。为了进行更高分辨率的浓度测量,设计了一种基于LIF方法的新型光学探头。该探头由两条光纤组成,其尖端像透镜一样被加工。与过去的LIF测量相比,借助透镜的作用,激光束可以聚焦在更窄的区域上。在本设计中,激光束的聚焦宽度设置为0.6微米,焦距设置为7.3mm。结果表明,在当前射流扩散场(d = 4mm,Re = 20,000)的条件下,该探头的分辨率小于x /d≥30时的Batchelor标度。此外,开发了一种用于精确调节光纤探头位置的新系统。

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