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NON-LINEAR MANEUVER-ACCELERATION ANALYSIS FOR AIRBORNE GAS TURBINE ENGINES

机译:航空燃气轮机发动机的非线性操纵加速度分析

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A maneuver and acceleration analysis is a standard way to predict the structural displacements, clearance closures, and shaft and bearing loading due to aircraft turn rates and accelerations in airborne gas turbine engines. The industry standard practice is to perform these analyses assuming the acceleration and turn rates are steady-state. This gives rise to a static analysis in which the applied loads are a function of the aircraft turn rate, the aircraft translational accelerations, and the aircraft rotational accelerations. A method is presented for predicting static maneuver and acceleration lateral deflections and accompanying loads for airborne gas turbine engines with non-linear supports. The non-linear supports might include connections to ground and/or connections between various components of the rotor-structure system. These potential connections include squeeze-film-dampers (SFDs), clearance in rolling-element bearings, clearance stops in spring cages, rubs between rotors and shrouds, rubs between shafts, or supports modeled as non-linear (cubic) springs. The advantage of the method over traditional transient analysis is that the displaced shape (and accompanying shafting, bearing, and structure loads) can be found using an iterated static solution algorithm such that the transient solution is avoided. The algorithm allows for fast design trade studies when clearance closure and associated shafting/structure/bearing loads are part of the maneuver/acceleration analysis.
机译:操纵和加速度分析是预测由于飞机转弯速率和机载燃气涡轮发动机加速度引起的结构位移,间隙闭合以及轴和轴承载荷的标准方法。行业标准做法是假设加速和转弯速率处于稳态,然后执行这些分析。这引起了静态分析,其中所施加的载荷是飞机转弯速率,飞机平移加速度和飞机旋转加速度的函数。提出了一种用于预测带有非线性支撑的机载燃气涡轮发动机的静态操纵和加速度横向挠度以及伴随载荷的方法。非线性支撑件可包括接地连接和/或转子结构系统的各个部件之间的连接。这些潜在的连接包括挤压膜阻尼器(SFD),滚动轴承中的游隙,弹簧保持架中的游隙挡块,转子和导流罩之间的摩擦,轴之间的摩擦或建模为非线性(立方)弹簧的支撑。与传统的瞬态分析相比,该方法的优势在于可以使用迭代的静态解算法找到位移形状(以及伴随的轴,轴承和结构载荷),从而避免了瞬态解。当游隙闭合和相关的轴系/结构/轴承载荷是操纵/加速分析的一部分时,该算法可以进行快速的设计行业研究。

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