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Application of heterogeneous blading systems is the way for improving efficiency of centrifugal energy pumps

机译:异构叶片系统的应用是提高离心能泵效率的途径

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The results of independent research implemented by the teams of authors representing the Brno University of technology (Czech Republic) and Moscow Power Engineering Institute National Research University (Russia) are presented and compared. The possibilities for improving the energy efficiency of slow-speed centrifugal pumps (with a specific speed coefficient n~s < 80) widely used in power engineering—in thermal power stations, in heat electric-power stations, in nuclear power plants, and in boiler rooms—were investigated. These are supply pumps, condensate pumps, precharge pumps, etc. The pumps with such values of n~s are widely used in some technological cycles of oil-and-gas and chemical industries too. The research was focused on achieving the shape of the pump efficiency characteristics providing a significant extension of its effective working zone and increasing its integrated efficiency. The results were obtained based on new approaches to the formation of a blading system of an impeller of a slow-speed centrifugal pump different from the traditional blading system. The analytical dependences illustrating the influence of individual geometry of a blading system on the efficiency were presented. The possibilities of purposeful changing of its structure were demonstrated. It was experimentally confirmed that use of the innovative blading system makes it possible to increase the pump efficiency by 1-4% (in the experiments for the pumps with n~s = 33 and 55) and to extend its efficient working zone approximately by 15-20% (in the experiment for the pumps with n~s = 33 and 66). The latter is especially important for the supply pumps of NPP power units. The experimental results for all investigated pumps are presented in comparison with the characteristics of the efficiency provided by the blading systems designed by traditional methods.
机译:介绍并比较了代表布尔诺工业大学(捷克共和国)和莫斯科电力工程学院国家研究大学(俄罗斯)的作者团队实施的独立研究结果。在电力工程中广泛使用的提高慢速离心泵(具有特定的转速系数n〜s <80)的能效的可能性—在火力发电厂,热力发电厂,核电厂和锅炉房-已进行调查。它们是给水泵,凝结水泵,预充泵等。具有n〜s值的泵也广泛用于油气和化工行业的某些技术循环中。该研究的重点是实现泵效率特性的形状,从而显着扩展其有效工作区域并提高其综合效率。该结果是基于与传统叶片系统不同的,形成慢速离心泵叶轮叶片系统的新方法获得的。分析的依赖关系说明了叶片系统的各个几何形状对效率的影响。证明了有目的地改变其结构的可能性。实验证明,使用创新的叶片系统可以将泵的效率提高1-4%(在n〜s = 33和55的泵的实验中),并可以将其有效工作区域扩大大约15% -20%(在实验中,n〜s = 33和66的泵)。后者对于NPP动力装置的供给泵尤为重要。与所有通过传统方法设计的叶片系统所提供的效率特性相比,本文提供了所有被调查泵的实验结果。

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