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首页> 外文期刊>Periodica polytechnica >Optimization of the Operating and Design Conditions to Reduce the Power Consumption in a Vessel Stirred by a Paddle Impeller
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Optimization of the Operating and Design Conditions to Reduce the Power Consumption in a Vessel Stirred by a Paddle Impeller

机译:优化操作和设计条件,以减少桨叶轮搅拌的船舶中的功率消耗

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Design of the impeller blade is a determining factor in power consumption and mixing quality, which determines consequently the cost of the mixing operation. This study explores the flow patterns and the power required for stirring a Newtonian fluid by paddle impellers. Investigations are carried out via three dimensional (3D) numerical simulations. Effects of the blade curvature, blade diameter, blade number and Reynolds number are analyzed. The curved blade is found to be more efficient to reduce the power consumption, compared with the straight blade. A new correlation is proposed for predicting the power required with two-curved-bladed impellers. The straight and very large blade creates a dead zone in the space between the blade tip and the vertical wall of vessel. This issue may be overcome by the curved blade, which increases consequently the well-mixed region size. A wider well-mixed region may be obtained with the larger curved blade, but with an additional energy cost.
机译:叶轮叶片的设计是功耗和混合质量的决定因素,因此决定了混合操作的成本。这项研究探索了通过桨叶轮搅拌牛顿流体的流动方式和功率。研究是通过三维(3D)数值模拟进行的。分析了叶片曲率,叶片直径,叶片数和雷诺数的影响。与直刀片相比,发现弯曲刀片可更有效地降低功耗。提出了一种新的相关性,用于预测两曲线叶片叶轮所需的功率。笔直且非常大的刀片会在刀片尖端与容器垂直壁之间的空间中产生死区。该问题可以通过弯曲的叶片来克服,弯曲​​的叶片因此增加了充分混合的区域的尺寸。用较大的弯曲叶片可以获得较宽的充分混合区域,但是具有额外的能量成本。

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