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Computerized Approach to Updating Qualified Lives for EQ Equipment

机译:更新EQ设备合格生活的计算机化方法

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This paper reports on the development of a new computerized calculation methodology for determining the Arrhenius Time Weighted Average Temperature for the purpose of determining the qualified life of components in an EQ program. The methodology is based on the new technique published in IEEE standard 1205-2000 [4]. The project assessed numerous temperature averaging and weighting techniques to determine relative accuracy and conservatism. The selected averaging technique enhances accuracy relative to other techniques and ensures the generation of conservative results in all cases with respect to a "real time" Arrhenius average temperature. The methodology was used to process a very large quantity of containment temperature data and to produce Arrhenius Time Weighted Average Temperature curves for equipment, based both on containment elevation and activation energy. The methodology accounts for outages and seasonal temperature fluctuations, and can be periodically updated as additional temperature data becomes available.
机译:确定用于确定一个均衡的程序组件的合格寿命的目的阿伦尼乌斯时间加权平均气温上了一个新的电脑计算方法的发展提出报告。该方法基于IEEE标准1205-2000中发布的新技术[4]。该项目评估了许多温度平均和加权技术,以确定相对准确性和保守主义。所选择的平均技术可以增强相对于其他技术的精度,并确保在所有情况下都能相对于“实时”Arrhenius的平均温度产生保守结果。该方法用于处理非常大量的容纳温度数据,并基于遏制高程和激活能量产生设备的Arrhenius时间加权平均温度曲线。该方法考虑了停电和季节性温度波动,并且可以定期更新,因为额外的温度数据变得可用。

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