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Investigation of the relationship between internal fluid leakage through a valve and the acoustic emission generated from the leakage

机译:研究通过阀的内部流体泄漏与泄漏产生的声发射之间的关系

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The detection of acoustic emission (AE) signals produced by liquid and gas leakage through valves can be related directly to the qualitative leakage rate. This allows for cost estimation of losses in processes for several industries. However, to find out the relationship between qualitative leakage rate and AE signal large amounts of experimental data is needed. This paper presents a theoretical investigation of the acoustic emission to detect the internal leakage rate through a valve and experimental validation. The AE signals generated by internal liquid and gas leakage through valves were characterised. The effect of the influenced factors of leakage rates, inlet pressure levels, valve sizes and valve types, on AE parameter, AE_(RMS), were studied and explained. The results of theoretical and experimental showed that AE signal power computed from the power spectral density (PSD) correlated well with influenced factors of leakage rates. Finally, a novel and inexpensive AE instrument has been invented for predicting qualitative leakage rate using a micro processor and derived relationship.
机译:通过阀门的液体和气体泄漏产生的声发射(AE)信号的检测可以直接与定性泄漏率相关。这允许对多个行业的过程中的损失进行成本估算。但是,要找出定性泄漏率与AE信号之间的关系,需要大量的实验数据。本文对声发射进行了理论研究,以通过阀门检测内部泄漏率并进行了实验验证。表征了通过阀门内部液体和气体泄漏产生的AE信号。研究并解释了泄漏率,入口压力水平,阀尺寸和阀类型的影响因素对AE参数AE_(RMS)的影响。理论和实验结果表明,由功率谱密度(PSD)计算出的AE信号功率与泄漏率的影响因素密切相关。最终,发明了一种新颖且廉价的AE仪器,用于使用微处理器和推导的关系预测定性泄漏率。

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