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Uncertainty of the PIV testing results for gas flow field caused by tracer particles and seeding method

机译:由示踪剂颗粒和播种法引起的气流场PIV测试结果的不确定性

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The quality of flow visualization is very important for PIV. A lot of testing results indicate that the slip between tracer particles and continuous phase is very severe for high velocity gradient flow field and yield uncertain testing results. In addition, improper seeding method of tracer particles often results in false results. The systematical investigation on the above-mentioned problem has been done based on the theory of dilute phase gas-particle flow. The results indicate that tracer particles must e have the slip with the fluid as long as the velocity gradient presents, even the particle is sufficiently accelerated, and it has severely influence on the reliability of PIV testing results for the flow field with high velocity gradient or (and) larger tracer particles size. The relative error caused by the slip of particles and fluid is in proportion to the particle Stokes time and the particle velocity gradient, but it is in inverse proportion to the correction factor for Stokes-drag force. The above conclusions can be used to judge and correct the measurement error or to select proper tracer particles for the non-uniform flow field. During the study on seeding method of tracer particles, the Reynolds number ratio of dragging gas flow for tracer particles and main gas flow Re/Re is considered as the disturbance intensity scale of dragging gas flow on main gas flow. The attenuation process and attenuation distance of disturbance is investigated for different Re/Re. The optimal seeding position can be selected based on the data of the attenuation distance for different Re/Re.
机译:流量可视化质量对于PIV非常重要。许多测试结果表明,对于高速梯度流场,示踪剂颗粒和连续相之间的滑移非常严重,并产生不确定的测试结果。此外,示踪剂颗粒的不正当播种方法通常会导致虚假结果。基于稀释相气体颗粒流动的理论,已经完成了对上述问题的系统调查。结果表明,只要速度梯度存在,示踪剂颗粒必须具有与流体的滑移,即使颗粒足够加速,并且它对具有高速梯度的流场的PIV测试结果的可靠性严重影响了它们(和)较大的示踪剂颗粒尺寸。由颗粒和流体的滑动引起的相对误差与粒子尖顶时间和粒子速度梯度成比例,但与斯托克斯 - 拖曳力的校正因子相反成比例。上述结论可用于判断和校正测量误差或为非均匀流场选择合适的示踪剂颗粒。在示踪剂颗粒的播种方法的研究期间,示踪剂颗粒的拖曳气流和主气流RE / RE的雷诺数比被认为是拖曳气流对主气流的扰动强度尺度。研究了不同RE / RE的衰减过程和衰减距离。可以基于不同RE / RE的衰减距离的数据来选择最佳播种位置。

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