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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Vector Flow Imaging of a Highly Laden Suspension in a Zinc-Air Flow Battery Model
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Vector Flow Imaging of a Highly Laden Suspension in a Zinc-Air Flow Battery Model

机译:锌空气流动电池模型中高载量悬架的矢量流成像

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Flow batteries using suspension electrodes, e.g., zinc-air flow batteries (ZABs), have recently gained renewed interest as potential candidates for grid energy storage or mobile applications. The performance of ZABs depends on the local flow conditions of the suspension in the electrochemical cell, which acts as an electrode. Hence, it is crucial to measure and understand the complex flow characteristics of such solid-liquid suspensions. The investigated suspension electrode is an opaque slurry that consists of microscopic zinc particles and an aqueous potassium hydroxide electrolyte. Commonly, ultrasound Doppler velocimetry is used for flow imaging in opaque fluids. However, due to the high particle concentration in the suspension electrode, strong scattering and wavefront distortions of the ultrasound are introduced. In this paper, we show that this results in an increased measurement uncertainty for Doppler-based velocity estimation. Instead, ultrasound image velocimetry is applied to measure the 2-D and two-component flow field in the zinc-electrolyte suspension. This is possible by adapting the measurement system to the suspension with a calibration setup. The total measurement uncertainties of 4.1% and 2.5% for the axial and lateral flow components are derived from the calibration measurements. For the first time, the flow field of such a suspension could be measured in a scaled fluidic model of a ZAB. The comparison of the estimated flow rates from the velocity profiles showed good agreement to a gravimetric reference. A significant difference in the flow characteristics of a macroscopically homogeneous electrolyte and the same electrolyte loaded with 8 vol.-% zinc particles, i.e., the suspension electrode, was found. Along with the demonstration of the measurement technique for opaque, concentrated suspensions, the measurement data will be used to calibrate and validate numerical models for comparable multiphase fluids.
机译:使用悬架电极的液流电池,例如锌-空气液流电池(ZAB),最近已重新引起人们的兴趣,成为电网储能或移动应用的潜在候选者。 ZAB的性能取决于作为电极的电化学池中悬浮液的局部流动条件。因此,测量和理解这种固液悬浮液的复杂流动特性至关重要。研究的悬浮电极是一种不透明的浆液,由微观的锌颗粒和氢氧化钾水溶液组成。通常,超声多普勒测速仪用于不透明流体的流动成像。然而,由于悬浮电极中的高颗粒浓度,导致超声的强散射和波前畸变。在本文中,我们表明,这导致基于多普勒速度估计的测量不确定性增加。取而代之的是,使用超声图像测速仪来测量锌电解质悬浮液中的二维和二维流场。这可以通过使用校准设置使测量系统适应悬架来实现。轴向和横向流量分量的总测量不确定度分别为4.1%和2.5%,这可从校准测量得出。首次可以在ZAB的比例射流模型中测量这种悬浮液的流场。从速度曲线估计流量的比较显示出与重力参考的一致性。发现在宏观上均匀的电解质和负载有8体积%的锌颗粒的相同电解质,即悬浮电极,的流动特性上存在显着差异。除了演示不透明浓缩悬浮液的测量技术外,还将使用测量数据来校准和验证可比较的多相流体的数值模型。

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