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Statistical Comparison and Improvement of Methods for Combining Random and Harmonic Loads

机译:统计比较和随机荷载和谐波荷载组合方法的改进

摘要

Structures in many environments experience both random and harmonic excitation. A variety of closed-form techniques has been used in the aerospace industry to combine the loads resulting from the two sources. The resulting combined loads are then used to design for both yield ultimate strength and high cycle fatigue capability. This paper examines the cumulative distribution function (CDF) percentiles obtained using each method by integrating the joint probability density function of the sine and random components. A new Microsoft Excel spreadsheet macro that links with the software program Mathematics is then used to calculate the combined value corresponding to any desired percentile along with a curve fit to this value. Another Excel macro is used to calculate the combination using a Monte Carlo simulation. Unlike the traditional techniques, these methods quantify the calculated load value with a Consistent percentile. Using either of the presented methods can be extremely valuable in probabilistic design, which requires a statistical characterization of the loading. Also, since the CDF at high probability levels is very flat, the design value is extremely sensitive to the predetermined percentile; therefore, applying the new techniques can lower the design loading substantially without losing any of the identified structural reliability.
机译:许多环境中的结构都会经历随机和谐波激励。在航空航天工业中,已经使用了多种封闭形式的技术来组合两种源所产生的载荷。然后将所得的组合载荷用于屈服极限强度和高循环疲劳能力的设计。本文研究了通过整合正弦和随机分量的联合概率密度函数,使用每种方法获得的累积分布函数(CDF)百分位数。然后使用与软件程序Mathematics链接的新Microsoft Excel电子表格宏来计算与任何所需百分位数相对应的组合值以及与该值拟合的曲线。另一个Excel宏用于使用Monte Carlo模拟来计算组合。与传统技术不同,这些方法以一致的百分位数量化计算的负载值。使用所提出的方法中的任何一种在概率设计中都非常有价值,因为概率设计需要统计负荷特征。而且,由于CDF处于高概率水平时非常平坦,因此设计值对预定百分位数极为敏感;因此,应用新技术可以大大降低设计负荷,而不会失去任何已确定的结构可靠性。

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