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Electrical resistance tomography-assisted analysis of dispersed phase hold-up in a gas-inducing mechanically stirred vessel

机译:电阻层析成像辅助分析在诱导气体的机械搅拌容器中的分散相滞留

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摘要

Tomographic analysis of the hydrodynamic attributes of the gas-liquid-solid mixing in a 1-l capacity stirred-tank equipped with a 4-blade gas-entrainment impeller has been used to obtain the dispersed phase hold-up distribution as a function of stirring speed (impeller Reynolds Number, ReI) and solid particle loading. Although the liquid phase stirring was turbulent, both gas and solid flows went through different hydrodynamic regimes and experienced radial hold-up gradient over the range of impeller speed employed. Global solid phase hold-up profile exhibited a sigmoid-shape with respect to the impeller Reynolds number indicative of three solid suspension regimes across the stirring range (1.0≤Re_I≤6.25×10~4) investigated. The solid phase hold-up distribution was adequately captured by, e{open}_s=e{open}_(s,max)[1-exp(-τ_(spp)Re_I)]~γ with e{open}_(s,max) and γ dependent on solid loading. An analogous expression was also obtained for the radial solid phase hold-up distribution and has enabled the proposition of a criterion for existence of radial transport gradient in gas-induced stirred tanks (GIST). Additionally, correlations for estimating the mixing time and power number for gas-induced mechanical agitators also gave good agreement with the empirical data.
机译:对配备有4叶片夹气叶轮的容量为1升的搅拌罐中气液固混合的流体力学属性的层析成像分析已用于获得搅拌引起的分散相滞留分布转速(叶轮雷诺数,ReI)和固体颗粒负荷。尽管液相搅拌是湍流的,但是气流和固体流都经历了不同的流体力学状态,并且在所采用的叶轮速度范围内经历了径向滞留梯度。相对于叶轮雷诺数,整体固相滞留曲线呈S形,表明在所研究的搅拌范围(1.0≤Re_I≤6.25×10〜4)内有三种固体悬浮状态。通过e {open} _({e {open} _s = e {open} _(s,max)[1-exp(-τ_(spp)Re_I)]〜γ可以充分捕获固相滞留分布s,max)和γ取决于固体载荷。还获得了径向固相滞留分布的类似表达式,并为气体诱导搅拌罐(GIST)中存在径向传输梯度的判据提出了建议。另外,用于估计气体诱导的机械搅拌器的混合时间和功率数的相关性也与经验数据很好地吻合。

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