A Fault Diagnosis Method For Hydraulic End Of Drilling Pump Based On Dynamic Fault Tree

Xu He, Bo Li, Tao Hong
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Abstract

As the heart of drilling engineering, drilling pump affects drilling engineering. Because of its working environment and nature, it is prone to failure. In order to avoid the decrease of work efficiency and the increase of cost caused by faults, it is necessary to diagnose faults quickly and accurately. At present, the traditional method of drilling pump fault diagnosis is fault tree analysis. However, the fault tree cannot represent the fault of a certain part of the drilling pump in a fixed order, resulting in inaccurate diagnosis results. Therefore, dynamic logic gate is introduced and dynamic fault tree is established to solve the dynamic problem of drilling pump fault. To improve the reliability and accuracy of the diagnosis results, the dynamic fault tree diagnosis model is studied and improved. Taking the hydraulic end of drilling pump as an example, the diagnosis results are consistent with the actual situation, which proves the effectiveness of the improved algorithm.
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基于动态故障树的钻井泵液压端故障诊断方法
钻井泵作为钻井工程的心脏,影响着钻井工程。由于其工作环境和性质,它容易发生故障。为了避免故障造成的工作效率的降低和成本的增加,有必要快速准确地诊断故障。目前,传统的钻井泵故障诊断方法是故障树分析法。但是,故障树不能按照固定的顺序表示钻井泵某一部分的故障,导致诊断结果不准确。为此,引入动态逻辑门,建立动态故障树,解决钻井泵故障的动态性问题。为了提高诊断结果的可靠性和准确性,对动态故障树诊断模型进行了研究和改进。以钻井泵液压端为例,诊断结果与实际情况一致,证明了改进算法的有效性。
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