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Probable cause analysis of cracks observed on vertical centrifugal pump

机译:立式离心泵出现裂纹的可能原因分析

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摘要

Two identical vertical centrifugal pumps are used to cool the equipment used for electricity generation by combined cycle. One of these two pumps is cracked at its elbow, unlike the second which operates under the same conditions and which displays no anomaly. These cracks whose causes remain undetermined present a serious threat to electricity produc tion. These causes may be of a mechanical nature related to the nature of material of the pump or related to the dynamic flow characteristics. The first hypothesis was excluded since both pumps are made from the same material (ductile iron (S-NC 20-2)), which leads us to analyze the second hypothesis by studying the flow occurring in the pump for partic ular operating conditions. Two scenarios are considered in this work, the first considering an improper attachment of the wheel upon its replacement, while the second deals with the possibility of a sudden closing of the valve "water hammer". We therefore propose in this work, the numerical modeling of the flow through the vertical centrifugal pump. The study was conducted using the computational code Fluent. The studied pump provides a flow of 18,100 m~3/h with a total head of 10.1 m head. Fluent simulation of the pump operation for the two selected scenarios and the comparison between the results obtained and those of the normal operation allowed us to conclude that a sudden closing of the valve is the most likely cause explaining these cracks on the one of two pumps.
机译:两个相同的立式离心泵用于通过联合循环来冷却发电设备。这两个泵中的一个在其肘部破裂,而第二个泵在相同条件下运行且没有异常。这些起因尚未确定的裂缝严重威胁着电力生产。这些原因可能是与泵的材料性质有关或与动态流动特性有关的机械性质。由于两个泵均由相同的材料(球墨铸铁(S-NC 20-2))制成,因此排除了第一个假设,这使我们可以通过研究特定条件下泵中的流量来分析第二个假设。在这项工作中考虑了两种情况,第一种情况考虑的是轮更换时轮毂安装不当,而第二种情况则涉及阀门“水锤”突然关闭的可能性。因此,我们在这项工作中提出了通过立式离心泵的流动的数值模型。该研究使用计算代码Fluent进行。所研究的泵的流量为18,100 m〜3 / h,总扬程为10.1 m。对两种选定情况的泵操作进行了流畅的模拟,并将获得的结果与正常操作的结果进行了比较,我们得出以下结论:突然关闭阀门是最有可能解释两台泵之一出现裂纹的原因。

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