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Design methodology and performance analysis of conical rotors for dry screw vacuum pumps

机译:干螺杆真空泵锥形转子的设计方法论及性能分析

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摘要

The conical rotor, as an alternative internal compression structure, has shown the potential to enhance the performance of screw vacuum pumps further. In view of no available literature examining the design of them, to fill this gap, mathematical models for the generation and analysis of conical rotors were established in this paper. The generation process was based on a design implementing a rotor profile cluster and a conical helix. The analysis model reflected the geometric characteristics and thermodynamic performance of conical rotors. The effect of key parameters in conical rotors was investigated, and the difference between conical rotors and variable-pitch rotors was revealed. Results showed that with the increase in the conical angle the internal volume index enlarged while both the specific power and pumping speed decreased. To achieve greater internal compression, more rotor stages were needed. The rotor performance could be improved by changing the distribution of the tooth width angle for the rotor profile cluster at a certain inlet pressure. In comparison with the variable-pitch rotor, the specific power was lower for the conical rotor at a close pumping speed.
机译:锥形转子作为一种替代的内部压缩结构,已显示出进一步提高螺杆真空泵性能的潜力。鉴于目前还没有研究圆锥转子设计的文献,为了填补这一空白,本文建立了圆锥转子的产生和分析的数学模型。生成过程基于实现转子轮廓簇和锥形螺旋的设计。分析模型反映了锥形转子的几何特性和热力性能。研究了锥形转子关键参数的影响,揭示了锥形转子与变桨距转子的区别。结果表明,随着锥角的增大,内体积指数增大,比功率和泵速降低。为了获得更大的内部压缩,需要更多的转子级。在一定的进口压力下,通过改变转子齿宽角的分布,可以改善转子的性能。与变桨距转子相比,在接近泵速的情况下,锥形转子的比功率较低。

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