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Detection of the minimum gas velocity region using Gaussian spectral pressure distribution in a gas-solid fluidized bed

机译:利用高斯谱压力分布在气固流化床中检测最小气体速度区域

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摘要

The undesired phenomenon of partial or complete defluidizing can occur in industrial applications involving fluidized beds That could be prevented by increasing the gas velocity,provided an adequate observation of changes in the hydrodynamic of the fluidized bed is detected early enough.Since the value of gas velocity on defluidization of bed is near the gas velocity at minimum fluidization condition it is very important to use a methodology that can promptly detect the minimum fluidization velocity region,so that shutting down the process can be avoided The literature shows that the methods to detect the region of such a velocity are limited,and in practice,the traditional method for determination of minimum fluidization velocity (pressure drop across the bed versus superficial gas velocity) is still the most used In the present work a methodology is proposed to detect the region where the minimum velocity takes place in a gas-solid fluidized bed,based on the spectral analysis of pressure fluctuation measurements using a Gaussian distribution curve.Results indicate that the method is satisfactory,and it could be used as a more practical indicator of the region where the defluidization phenomenon occurs.
机译:在涉及流化床的工业应用中可能会发生不希望的部分或完全脱液现象,可以通过提高气体流速来防止这种情况,前提是要尽早检测到流化床流体动力学变化的足够观察力。在最小流化条件下,床层的流化接近气体速度时,使用一种能够及时检测最小流化速度区域的方法非常重要,这样可以避免关闭过程。文献表明,检测该区域的方法这种速度的限制是有限的,并且在实践中,仍是最常用的确定最小流化速度(穿过床的压降与表观气体速度)的传统方法。在本工作中,提出了一种方法来检测流化床的区域。最小速度发生在气固流化床中,基于压力的光谱分析结果表明,该方法是令人满意的,可作为发生流化现象区域的更实用的指标。

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