螺旋诱导轮的使用对离心泵性能和Npsh的影响

Q2 Environmental Science
Abdullah. H. I. Aboelnil, S. A. Hawash, M. A. Hashim
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引用次数: 0

摘要

摘要离心泵的能耗相当于世界总能耗的五分之一。此外,增加对淡水的需求会对河流、运河和地下水等各种来源的水位产生负面影响。正常情况下,这降低了一些泵站正常运行的可能性,通常,这是由于这些泵站的吸入水平较低。此外,一些其他泵站也受到其运行效率的影响,即性能质量下降,每个泵站都根据吸入水平的值下降。因此,离心泵吸入侧对泵性能影响最大的参数定义为净正吸入压头(NPSH)。然而,在运行泵的吸入侧使用诱导轮可以提高其性能。因此,对离心泵的NPSH行为和总性能进行了实验和数值模拟。此外,NPSH性能是通过NPSH测试确定的,在2900 rpm的转速下,在运行点使用诱导轮可提高3%,并在低排放值和高排放值下监测泵的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of helical inducer usage on both performance and Npsh For A centrifugal pump
ABSTRACT Centrifugal pumps consume the equivalent of one fifth of the total energy consumption around the world. Also, increasing the requirement for fresh water negatively affects water levels from its various sources such as rivers, canals, and groundwater. As normal, this reduces the possibility of normal operation of some pump stations, and usually, this occurs as a result of the low suction level for these stations. Moreover, some other pump stations are affected by its operation efficiency i.e. decreases performance quality, each according to the value of the suction level decreasing. Therefore, the most effect parameter on the pump performance at the suction side of the centrifugal pump is defined as the Net Positive Suction Head (NPSH). However, using inducer at the suction side of the operating pump can improve its performance. Thus, the behavior of NPSH and the total performance of a centrifugal pump are experimentally and numerically studded. In addition to, the NPSH performance is determined using the NPSH test and improved by 3% at 2900 rpm with using the inducer at the operating point, and the performance of the pump is monitored at the low and high discharges value.
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来源期刊
Water Science
Water Science Environmental Science-Ecology
CiteScore
3.00
自引率
0.00%
发文量
12
审稿时长
18 weeks
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