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首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Experimental Investigation of the Effect of Air Injection on Performance and Detection of Cavitation in the Centrifugal Pump Based on Vibration Technique
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Experimental Investigation of the Effect of Air Injection on Performance and Detection of Cavitation in the Centrifugal Pump Based on Vibration Technique

机译:空气喷射对基于振动泵的离心泵性能和检测的实验研究

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摘要

Cavitation is a problem that occurs in any pump and contributes highly towards the deterioration in the performance of the pump. In industrial applications, it is vital to detect and minimize the effect of cavitation in pumps. The use of various techniques, such as vibration analyses, can provide a more robust detection of cavitation in the pump. In this work, the effect of air injection at the inlet of the pump on its performance has been focused by detecting and diagnosing the cavitation using vibration technique. The results obtained for vibration signal in time and frequency domains were analysed in order to achieve a better understanding regarding detection of cavitation. The effects of different operating conditions related to the cavitation were investigated in this work using different statistical features in time domain. Moreover, fast Fourier transform technique for frequency domain was also applied. The results showed that there is no significant change between both cases (with and without air injection) when the pump works under low flow operating conditions. However, there is a slight difference between both cases after 300(l/min) and drop in the pump head for air injection was noticed as compared to without air injection condition. Moreover, the development of cavitation starts at higher design flow and it will increase when flow rate is increased more than 350(l/min). The trend of vibration signal amplitude was more random with high peaks when compared with normal operating conditions (without cavitation).
机译:空化是在任何泵中发生的问题,并且高度朝向泵的性能的劣化产生贡献。在工业应用中,检测和最小化空化在泵中的效果至关重要。使用各种技术,例如振动分析,可以在泵中提供更强大的空化空化。在这项工作中,通过使用振动技术检测和诊断空化,通过检测和诊断空化来对泵入口处的空气喷射对其性能的影响。分析了用于时间和频域的振动信号获得的结果,以便在检测空化的情况下实现更好的理解。在这项工作中使用不同的统计特征在时间域中研究了不同操作条件的影响。此外,还应用了用于频域的快速傅里叶变换技术。结果表明,当泵在低流量运行条件下工作时,两种情况(带和无空气喷射)之间没有显着变化。然而,在300(L / min)之后,两种情况之间存在轻微的差异,并且与没有空气喷射条件相比,注意到喷头的泵头中掉落。此外,空化的发展在更高的设计流动时开始,当流速增加超过350(L / min)时,它会增加。与正常操作条件(无空化)相比,振动信号幅度的趋势更随高峰。

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