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Failure analysis of a high pressure differential regulating valve in coal liquefaction

机译:高压差压调节阀在煤液化中的失效分析

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Under harsh working conditions-high pressure differential, solid concentration and high velocity of a regulating valve in coal liquefaction, the valve plug damages easily. Its longest service life is less than 2000 h, which seriously affects the running safety. Failure analysis of valve plug is conducted via computational fluid dynamics (CFD) by using the actual physical parameters. The results show that the damage of valve plug results from a synergistic effect of cavitation erosion and abrasion. Two cavitation regions exist on the wall of valve bushing and plug, and a high-speed reflux appears on the plug head where the pressure is higher than the saturation pressure. Driven by the reflux, the cavitation bubbles and solid particles move toward the plug head, thus the most severe cavitation erosion and abrasion occur on the plug head because of the bubbles collapse and particle impacts. The decrease of valve opening tends to aggravate the valve plug damage caused by the combined effects of cavitation erosion and abrasion. Compare with the actual corrosion morphology, the accuracy of failure analysis is verified. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在苛刻的工作条件下-煤液化中调节阀的高压差,固体浓度和高速度下,阀芯容易损坏。它的最长使用寿命少于2000小时,严重影响了运行安全。阀塞的故障分析是通过使用实际物理参数通过计算流体力学(CFD)进行的。结果表明,阀芯的损坏是由于气蚀和磨损的协同作用造成的。阀衬套和阀芯的壁上存在两个空化区域,并且阀芯上的压力高于饱和压力时会出现高速回流。在回流的驱动下,空化气泡和固体颗粒向塞头移动,因此,由于气泡坍塌和颗粒撞击,最严重的空化腐蚀和磨损发生在塞头上。气门开度的减小往往会加剧由气蚀和磨蚀的综合作用引起的阀芯损坏。通过与实际腐蚀形态的比较,验证了失效分析的准确性。 (C)2015 Elsevier Ltd.保留所有权利。

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