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Study on mathematical model to predict aerated power consumption in a gas-liquid stirred tank

机译:预测气液搅拌罐充气功率的数学模型研究

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The aerated power consumption characteristics in a transparent tank with diameter of 0.3?m and flat bottom stirred by a Rushton impeller were investigated by means of experimental measurement. The test fluid used was tap water as liquid and air as gas. Based on Weibull model, the complete correlation of aerated power with aerated flow number was established through non-linear fit analysis. The effects of aerated rate and impeller speed on aerated power consumption were made an exploration. Results show that the changeable trend of the aerated power consumption is found to be similar under different impeller speeds and impeller diameters, i.e. the aerated power is close to dropping linear at the beginning of gas input, and then the drop tendency decreases as the aerated rate increases, at the end, the aerated power is a constant on the whole as the aerated rate reaches up the loading state. The non-linear fit curve is done using the software Origin based on the experimental data. The fairly high precision of data fit is obtained, which indicates that the mathematical model established can be used to accurately predict the aerated power consumption, comparatively. The proposed research provides a valuable instruction and reference for the design and enlargement of stirred vessel.
机译:通过实验测量研究了直径为0.3?m的透明罐中的充气功率消耗特性,并通过Rushton叶轮搅拌了平底。所用的测试流体是自来水(液体)和空气(气体)。基于Weibull模型,通过非线性拟合分析,建立了充气功率与充气流量的完全相关性。探索了充气速率和叶轮速度对充气功耗的影响。结果表明,在不同叶轮转速和叶轮直径下,充气功耗的变化趋势相似,即在进气开始时,充气功率接近线性下降,然后随着充气速率下降趋势减小。最终,当充气速率达到负载状态时,充气功率总体上是恒定的。非线性拟合曲线是使用Origin软件根据实验数据完成的。获得了相当高的数据拟合精度,这表明所建立的数学模型可用于比较准确地预测充气功耗。这项研究为搅拌容器的设计和扩大提供了有价值的指导和参考。

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