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Flow patterns of pulverized coal pneumatic conveying and time-series analysis of pressure fluctuations

机译:煤粉气力输送流型及压力波动的时间序列分析

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Flow instability is a key question which needs to be solved for the development of dense-phase pneumatic conveying. Flow patterns are closely related with flow instability. There is a gap in our knowledge of gas-solid flow patterns in the dense-phase pneumatic conveying due to the lack of advanced measure technology and analysis methods. Electrical Capacitance Tomography (ECT) is an effective and advanced measure method which was used to research flow patterns in pulverized coal dense-phase pneumatic conveying with solid-gas ration of 60-560. kg/kg. With stack of ECT images in order of time, different flow patterns were defined and classified in the horizontal and vertical pneumatic conveying systems. Plug flow, fluidized flow, slug flow and stratified flow were observed in the horizontal pneumatic conveying; there were plug flow, fluidized flow, slug flow and annular flow in the vertical pneumatic conveying. The relationship between Reynolds number and Archimedes number was used to predict transition of these flow patterns. The prediction is in good agreement with experimental results in the experimental range. In addition, some analysis methods were introduced to research the flow patterns, such as the Standard Deviation (SD), Power Spectrum Density (PSD) and wavelet analysis. We found that flow stability can be represented with SD and PSD. PSD is preferred to SD for its higher resolution ratio and noise immunity. The wavelet analysis can reflect flow characteristics and energy distributions in the different scales for different flow patterns.
机译:流量不稳定性是密相气力输送发展中必须解决的关键问题。流动模式与流动不稳定性密切相关。由于缺乏先进的测量技术和分析方法,我们在密相气力输送中对气固流型的认识存在差距。电容层析成像(ECT)是一种有效而先进的测量方法,用于研究粉煤密相气力输送(固体比为60-560)的流型。千克/千克。通过按时间顺序堆叠ECT图像,在水平和垂直气动输送系统中定义和分类了不同的流型。在水平气动输送中观察到塞流,流化流,团状流和分层流。在垂直气动输送中有塞流,流化流,段塞流和环形流。雷诺数和阿基米德数之间的关系用于预测这些流型的转变。该预测与实验范围内的实验结果吻合良好。此外,还引入了一些分析方法来研究流动模式,例如标准偏差(SD),功率谱密度(PSD)和小波分析。我们发现,流动稳定性可以用SD和PSD表示。 PSD比SD更可取,因为它具有更高的分辨率和抗噪性。小波分析可以反映不同流动模式下不同尺度下的流动特性和能量分布。

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