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Experimental Data for Uncertainty Quantification

机译:不确定性量化的实验数据

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The propagation of parameter uncertainty through a model to obtain the uncertain vibration response is becoming more practical for industrial scale finite element models due to the increase in computing power available. In some cases the parametric uncertainty may be measured directly, for example the thickness of a panel. However the parameters for joint models (for example) must be estimated from measurements using the techniques of finite element model updating. In these cases the techniques of model updating must be extended to allow for uncertainty quantification from a series of measurements on nominally identically structures. The validation of these methods requires laboratory experiments where the uncertain parameter is measured directly and also estimated by updating. This paper outlines the results of experiments that may be used for this purpose, namely a moving mass on a free-free beam and a copper pipe with uncertain internal pressure. The data from these experiments will be freely available on the associated website at Bristol.
机译:参数不确定性通过模型的传播,以获得不确定的振动响应,因为由于可用的计算能力的增加,工业规模有限元模型变得更加实用。在一些情况下,可以直接测量参数不确定性,例如面板的厚度。然而,必须使用有限元模型更新的技术来估计联合模型(例如)的参数。在这些情况下,必须扩展模型更新的技术,以允许从标称相同的结构上的一系列测量中的不确定性量化。这些方法的验证需要实验室实验,其中不确定参数被直接测量并通过更新估计。本文概述了可用于此目的的实验结果,即无自由梁和具有不确定内压的铜管的移动质量。来自这些实验的数据将在布里斯托尔的相关网站上自由地提供。

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