Simultaneous flow and particle measurements for multiphase flows in hydraulic engineering: A review and synthesis of current state

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL
Siamak Seyfi , Shooka Karimpour , Ram Balachandar
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引用次数: 0

Abstract

While multiphase flows are abundant in both natural environments and engineering applications, their analysis and quantification present challenges. In particular, simultaneously measuring the flow field and quantifying particle behavior pose many challenges. Methods based on Particle Image Velocimetry (PIV) and Particle Tracking Velocimetry (PTV) principles have been used in the last two decades to measure flow fields and dispersed (particle) phases, respectively. Despite the extensive application of these principles to multiphase flow, there are numerous approaches and techniques used to synchronize and combine PIV and PTV measurements. Combined PIV and PTV data acquisition also requires consideration of phase discrimination to obtain distinct data for the fluid and dispersed phases. In the literature, various methods have been proposed and applied to achieve phase discrimination. This review paper aims to consolidate and classify various phase discrimination techniques used in specialized applications in hydraulic engineering. These methods are categorized into optical (spectral, temporal, and hybrid) and post-processing methods, with a particular emphasis on their applicability within the realm of hydraulic engineering. Moreover, this review expands on several emerging PIV/PTV technologies and applications, where the combination of equipment and algorithms has led to significant strides in the non-intrusive measurement of multiphase flow. By consolidating and critically evaluating current methods for particle discrimination, this paper aims to enhance the scientific community's understanding of simultaneous phase velocity measurements, thereby setting the stage for advancements in multiphase flow visualization techniques.

Abstract Image

水利工程中多相流的同步流量和颗粒测量:现状综述
虽然多相流在自然环境和工程应用中都很常见,但对其进行分析和量化却面临着挑战。特别是,同时测量流场和量化粒子行为会带来许多挑战。过去二十年来,基于粒子图像测速仪(PIV)和粒子跟踪测速仪(PTV)原理的方法已分别用于测量流场和分散(粒子)相。尽管这些原理已广泛应用于多相流,但仍有许多方法和技术用于同步和组合 PIV 和 PTV 测量。结合 PIV 和 PTV 数据采集还需要考虑相位区分,以获得流体相和分散相的不同数据。文献中提出并应用了各种方法来实现相位区分。本综述旨在对水力工程专业应用中使用的各种相位判别技术进行整合和分类。这些方法分为光学方法(光谱、时间和混合)和后处理方法,并特别强调了它们在水利工程领域的适用性。此外,本综述还扩展了几种新兴的 PIV/PTV 技术和应用,在这些技术和应用中,设备和算法的结合在多相流的非侵入式测量方面取得了重大进展。通过整合和批判性评估当前的颗粒辨别方法,本文旨在加强科学界对同步相速度测量的理解,从而为多相流可视化技术的进步奠定基础。
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来源期刊
Flow Measurement and Instrumentation
Flow Measurement and Instrumentation 工程技术-工程:机械
CiteScore
4.30
自引率
13.60%
发文量
123
审稿时长
6 months
期刊介绍: Flow Measurement and Instrumentation is dedicated to disseminating the latest research results on all aspects of flow measurement, in both closed conduits and open channels. The design of flow measurement systems involves a wide variety of multidisciplinary activities including modelling the flow sensor, the fluid flow and the sensor/fluid interactions through the use of computation techniques; the development of advanced transducer systems and their associated signal processing and the laboratory and field assessment of the overall system under ideal and disturbed conditions. FMI is the essential forum for critical information exchange, and contributions are particularly encouraged in the following areas of interest: Modelling: the application of mathematical and computational modelling to the interaction of fluid dynamics with flowmeters, including flowmeter behaviour, improved flowmeter design and installation problems. Application of CAD/CAE techniques to flowmeter modelling are eligible. Design and development: the detailed design of the flowmeter head and/or signal processing aspects of novel flowmeters. Emphasis is given to papers identifying new sensor configurations, multisensor flow measurement systems, non-intrusive flow metering techniques and the application of microelectronic techniques in smart or intelligent systems. Calibration techniques: including descriptions of new or existing calibration facilities and techniques, calibration data from different flowmeter types, and calibration intercomparison data from different laboratories. Installation effect data: dealing with the effects of non-ideal flow conditions on flowmeters. Papers combining a theoretical understanding of flowmeter behaviour with experimental work are particularly welcome.
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