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Operating characteristics of the variable frequency speed-regulating system for a single pump in a closed system

机译:封闭系统中单泵变频调速系统的工作特性

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This study experimentally investigated the operating characteristics of the variable frequency speed-regulating system of a water pump in a closed system. The test data for the variable frequency water pump under various conditions were obtained by changing the water pump frequency and the opening setting of a regulator valve in the system. This study revealed that the total power ratio of the water pump system before and after the frequency adjustment did not exhibit cubic correlations with its rotational speed ratio as defined by the affinity law, especially in areas other than the high-efficiency area of pump operation. The equations that express the correlations between the frequency ratio and the total power ratio under the full range of operating conditions were obtained in this study by using the data fitting method. The test confirmed that the fitted characteristic equations had a higher precision and a wider scope of applicability than the existing equations when the water pump, motor, and variable frequency drive were considered as a whole. Practical application: The variable frequency speed-regulating system of a water pump was used in cooling, cooled and heating systems. However, the water pump power was calculated by the standard cube law, and its energy-saving potential was exaggerated. This study revealed a new energy model of a water pump system that can more accurately calculate the total power of the variable frequency water pump in practical engineering.
机译:本研究通过实验研究了封闭系统中水泵变频调速系统的运行特性。通过更改系统中的水泵频率和调节阀的开度设置,可获得各种条件下变频水泵的测试数据。这项研究表明,在频率调节前后,水泵系统的总功率比与它的转速比没有显示出三次相关性,亲和力定律定义了它的转速比,特别是在泵操作的高效区域以外的区域。通过使用数据拟合方法,在本研究中获得了表达频率比与总功率比之间相关关系的方程式。测试证实,当将水泵,电动机和变频驱动器作为一个整体来考虑时,拟合特征方程具有比现有方程更高的精度和更广泛的适用范围。实际应用:在冷却,冷却和加热系统中使用水泵变频调速系统。但是,水泵功率是根据标准立方定律计算的,其节能潜力被夸大了。这项研究揭示了一种水泵系统的新能源模型,该模型可以在实际工程中更准确地计算变频水泵的总功率。

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