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Method for evaluating the durability of aircraft piston engines

机译:评估飞机活塞发动机耐久性的方法

摘要

A significant issue in aircraft engines is quantifying residual life to overhaul. The algorithm described in this paper calculates with a good level of reliability the residual life of a petrol piston engine. The method was tested on small, latest-generation, naturally-aspirated aircraft and racing piston engines, and has been effective in several experiments. This method is implemented directly on the electronic control system of the engine with very few lines of C-code. The method can also be used in many industrial engines. This innovative method assumes that only two main factors (power level and wear) affect engine durability or time between overhauls. These two factors are considered as separate and combined with worst case criteria. The wear is assumed to follow a logarithmic law and a formula similar to the Miner’s law for material fatigue is used, making it possible to calculate the power-level curve with knowledge of only two points. The wear-curve is also related to elapsed engine cycles. The algorithm is very simple and can be implemented with just a few lines of software code accessing data collected from existing sensors. The system is currently used to evaluate actual residual life of racing engines.
机译:飞机发动机中的一个重要问题是量化要修理的剩余寿命。本文描述的算法以很高的可靠性计算出汽油活塞发动机的剩余寿命。该方法已经在最新一代的自然吸气小型飞机和赛车活塞发动机上进行了测试,并且在多个实验中均有效。这种方法可以直接用很少的C代码行在发动机的电子控制系统上实现。该方法还可用于许多工业发动机。这种创新方法假定只有两个主要因素(功率水平和磨损)会影响发动机的耐用性或大修之间的时间。这两个因素被认为是分开的,并与最坏情况的标准结合在一起。假定磨损遵循对数定律,并且使用类似于矿工定律的材料疲劳公式,从而可以仅了解两点即可计算出功率水平曲线。磨损曲线还与经过的发动机循环有关。该算法非常简单,只需几行软件代码即可实现,该代码可访问从现有传感器收集的数据。该系统目前用于评估赛车发动机的实际剩余寿命。

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