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Flow mapping of multiphase flows using a novel single stem endoscopic particle image velocimetry instrument

机译:使用新型单茎内窥镜颗粒图像测速仪测量多相流

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摘要

Particle image velocimetry (PIV) is a successful flow mapping technique which can optically quantify large portions of a flow regime. This enables the method to be completely non-intrusive. The ability to be non-intrusive to any flow has allowed PIV to be used in a large range of industrial sectors for many applications. However, a fundamental disadvantage of the conventional PIV technique is that it cannot easily be used with flows which have no or limited optical access. Flows which have limited optical access for PIV measurement have been addressed using endoscopic PIV techniques. This system uses two separate probes which relay a light sheet and imaging optics to a planar position within the desired flow regime. This system is effective in medical and engineering applications. The present study has been involved in the development of a new endoscopic PIV system which integrates the illumination and imaging optics into one rigid probe. This paper focuses on the validation of the images taken from the novel single stem endoscopic PIV system. The probe is used within atomized spray flow and is compared with conventional PIV measurement and also pitot-static data. The endoscopic PIV system provides images which create localized velocity maps that are comparable with the global measurement of the conventional PIV system. The velocity information for both systems clearly show similar results for the spray characterization and are also validated using the pitot-static data.
机译:粒子图像测速(PIV)是一种成功的流量映射技术,可以光学量化流态的大部分。这使得该方法是完全非侵入性的。对任何流量都无干扰的能力使PIV可以在许多工业领域中用于许多应用。然而,传统的PIV技术的基本缺点是不能轻易地将其用于没有光学通路或光学通路受限的流。使用内窥镜PIV技术已经解决了用于PIV测量的光学通道有限的流程。该系统使用两个单独的探头,这些探头将光片和成像光学元件中继到所需流态内的平面位置。该系统在医疗和工程应用中有效。本研究涉及一种新的内窥镜PIV系统的开发,该系统将照明和成像光学器件集成到一个刚性探头中。本文着重于从新型单茎内窥镜PIV系统拍摄的图像的验证。该探头用于雾化喷雾流中,并与常规PIV测量以及皮托管静态数据进行比较。内窥镜PIV系统提供的图像可创建与传统​​PIV系统的整体测量结果可比的局部速度图。两个系统的速度信息清楚地显示了喷雾特性的相似结果,并且还使用皮托管的静态数据进行了验证。

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