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首页> 外文期刊>Journal of Chemical Engineering of Japan >Flow Regime Identification in Three Multiphase Reactors Based on Kolmogorov Entropies Derived from Gauge Pressure Fluctuations
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Flow Regime Identification in Three Multiphase Reactors Based on Kolmogorov Entropies Derived from Gauge Pressure Fluctuations

机译:基于表压波动的Kolmogorov熵确定三个多相反应器的流态

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摘要

The hydrodynamics of three multiphase reactors (spouted beds, fluidized bed and bubble column) have been studied in order to identify the main transition velocities U_(trans). The Kolmogorov entropy (KE) algorithm is applied to gauge pressure fluctuations as a universal method for U_(trans) identification. The local KE minima are used as transition indicators. It has been found that the boundaries of the main hydrodynamic regimes (packed bed, stable spouting and unstable spouting) in two spouted beds (0.076 and 0.152 m i.d.) could be identified easily by this method. In the smaller bed the U_(trans) values (0.783 and 0.885m·s~(-1)) tend to be higher than the ones (0.563 and 0.631 m·s~(-1)) in the bigger bed. In the case of the fluidized bed (0.14m i.d.), the minimum fluidization velocity was identified at U_G=0.121 m·s~(-1). At U_G = 0.151 and 0.377m·s~(-1), both the fast bubble and slow bubble sub-regimes of bubbling fluidization were identified. At U_G = 0.83 m·s~(-1), the turbulent fluidization regime was established. The KE values in a bubble column (0.14 m i.d.) are capable of identifying four U_(trans) values (0.016,0.03,0.04 and 0.046 m·s~(-1)). The boundaries of a gas maldistribution zone, bubbly flow regime, two transition sub-regimes and churn-turbulent flow regime are thereby delineated.
机译:为了确定主要的转变速度U_(trans),已经研究了三个多相反应器(喷射床,流化床和鼓泡塔)的流体力学。作为通用的U_(trans)识别方法,将Kolmogorov熵(KE)算法应用于测量压力波动。本地KE最小值用作过渡指示符。已经发现,通过该方法可以容易地识别出两个喷出床(0.076和0.152m i.d.)中主要流体力学状态(填充床,稳定喷出和不稳定喷出)的边界。在较小的床中,U_(trans)值(0.783和0.885m·s〜(-1))往往要比在较大的床中的U_(trans)值(0.563和0.631 m·s〜(-1))高。在流化床(内径为0.14m)的情况下,最小流化速度确定为U_G = 0.121m·s〜(-1)。在U_G = 0.151和0.377m·s〜(-1)时,可以识别出鼓泡流化的快气泡和慢气泡两个子区域。在U_G = 0.83 m·s〜(-1)时,建立了湍流流态。鼓泡塔(0.14 m i.d.)中的KE值能够识别四个U_(trans)值(0.016、0.03、0.04和0.046 m·s〜(-1))。从而描绘出气体分布不均,气泡流状态,两个过渡子状态和搅动湍流状态的边界。

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