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Errors analysis in the evaluation of particle concentration by PDA on a turbulent two-phase jet: application for cross section and transit time methods

机译:PDA在湍流两相射流中评估颗粒物浓度时的误差分析:横截面和穿越时间方法的应用

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摘要

Phase-Doppler anemometry (PDA) is a powerful tool for two-phase flow measurements and testing. Particle concentration and mass flux can also be evaluated using the raw particle data supplied by this technique. The calculation starts from each particle velocity, diameter, transit time data, and the total measurement time. There are two main evaluation strategies. The first one uses the probe volume effective cross section, and it is usually simplified assuming that particles follow quasi one-directional trajectories. In the text, it will be called the cross section method. The second one includes a set of methods which will be denoted as “Generalized Integral Methods” (GIM). Concentration algorithms such as the transit time method (TTM) and the integral volume method (IVM) are particular cases of the GIM. In any case, a previous calibration of the measurement volume geometry is necessary to apply the referred concentration evaluation methods. In this study, concentrations and mass fluxes both evaluated by the cross-section method and the TTM are compared. Experimental data are obtained from a particle-laden jet generated by a convergent nozzle. Errors due to trajectory dispersion, burst splitting, and multi-particle signals are discussed.
机译:相多普勒风速仪(PDA)是用于两相流量测量和测试的强大工具。也可以使用此技术提供的原始颗粒数据评估颗粒浓度和质量通量。计算从每个粒子速度,直径,渡越时间数据和总测量时间开始。有两种主要的评估策略。第一个使用探针体积有效横截面,通常假定粒子遵循准单向轨迹进行简化。在本文中,它将称为“横截面方法”。第二种方法包括一组方法,这些方法将被称为“广义积分方法”(GIM)。 GIM的特殊情况包括浓度算法,例如运输时间法(TTM)和积分体积法(IVM)。在任何情况下,都必须事先对测量体积的几何形状进行校准,才能应用上述浓度评估方法。在这项研究中,比较了通过截面方法和TTM评估的浓度和质量通量。实验数据是从会聚喷嘴产生的带有颗粒的射流获得的。讨论了由于轨迹分散,突发分裂和多粒子信号引起的误差。

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