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Estimation of Probability Density Functions of Damage Parameter for Valve Leakage Detection in Reciprocating Pump Used in Nuclear Power Plants

机译:核电站往复泵阀泄漏检测损伤参数的概率密度函数估计。

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This paper presents an advanced estimation method for obtaining the probability density functions of a damage parameter for valve leakage detection in a reciprocating pump. The estimation method is based on a comparison of model data which are simulated by using a mathematical model, and experimental data which are measured on the inside and outside of the reciprocating pump in operation. The mathematical model, which is simplified and extended on the basis of previous models, describes not only the normal state of the pump, but also its abnormal state caused by valve leakage. The pressure in the cylinder is expressed as a function of the crankshaft angle, and an additional volume flow rate due to the valve leakage is quantified by a damage parameter in the mathematical model. The change in the cylinder pressure profiles due to the suction valve leakage is noticeable in the compression and expansion modes of the pump. The damage parameter value over 300 cycles is calculated in two ways, considering advance or delay in the opening and closing angles of the discharge valves. The probability density functions of the damage parameter are compared for diagnosis and prognosis on the basis of the probabilistic features of valve leakage.
机译:本文提出了一种先进的估计方法,用于获得往复泵气门泄漏检测损伤参数的概率密度函数。该估计方法是基于将使用数学模型模拟的模型数据与在运行中的往复泵的内部和外部测量的实验数据进行比较的基础。在先前模型的基础上进行了简化和扩展的数学模型不仅描述了泵的正常状态,而且还描​​述了由于阀泄漏引起的异常状态。气缸中的压力表示为曲轴角度的函数,由于气门泄漏而产生的额外体积流量通过数学模型中的损坏参数进行量化。在泵的压缩和膨胀模式下,由于吸气阀泄漏而引起的气缸压力曲线变化非常明显。考虑排放阀的打开和关闭角度的提前或延迟,可以通过两种方式计算超过300个循环的损坏参数值。根据阀门泄漏的概率特征,比较损伤参数的概率密度函数,以进行诊断和预测。

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