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An Inverse Interpolation Method Utilizing In-Flight Strain Measurements for Determining Loads and Structural Response of Aerospace Vehicles

机译:利用飞行中应变测量的反向插值方法,用于确定航空航天车辆的负载和结构响应

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摘要

An important and challenging technology aimed at the next generation of aerospace vehicles is that of structural health monitoring. The key problem is to determine accurately, reliably, and in real time the applied loads, stresses, and displacements experienced in flight, with such data establishing an information database for structural health monitoring. The present effort is aimed at developing a finite element-based methodology involving an inverse formulation that employs measured surface strains to recover the applied loads, stresses, and displacements in an aerospace vehicle in real time. The computational procedure uses a standard finite element model (i.e., "direct analysis") of a given airframe, with the subsequent application of the inverse interpolation approach. The inverse interpolation formulation is based on a parametric approximation of the loading and is further constructed through a least-squares minimization of calculated and measured strains. This procedure results in the governing system of linear algebraic equations, providing the unknown coefficients that accurately define the load approximation. Numerical simulations are carried out for problems involving various levels of structural approximation. These include plate-loading examples and an aircraft wing box. Accuracy and computational efficiency of the proposed method are discussed in detail. The experimental validation of the methodology by way of structural testing of an aircraft wing is also discussed.
机译:针对下一代航空航天车辆的一个重要和具有挑战性的技术是结构健康监测。关键问题是准确,可靠地和实时确定飞行中所经历的施加的负载,应力和位移,其中包括建立用于结构健康监测的信息数据库。目前的努力旨在开发一种有限的基于元素的方法,涉及使用测量表面菌株的逆制剂,以实时采用测量的表面菌株来恢复航空航天车辆中的施加的载荷,应力和位移。计算过程使用给定机场的标准有限元模型(即,“直接分析”),随后应用逆插值方法。逆插值制剂基于负载的参数逼近,进一步通过计算和测量的菌株的最小平方来构造。该过程导致线性代数方程的控制系统,提供准确地定义负载近似的未知系数。对涉及各种结构近似水平的问题进行数值模拟。这些包括板载示例和飞机翼盒。详细讨论了所提出的方法的准确性和计算效率。还讨论了飞机翼结构测试方法的实验验证。

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