论文标题

降低维度替代建模,以表征复合/金属结构的损伤耐受性

Reduced-Dimension Surrogate Modeling to Characterize the Damage Tolerance of Composite/Metal Structures

论文作者

Arndt, Corey, Crusenberry, Cody, Heng, Bozhi, Butler, Rochelle, TerMaath, Stephanie

论文摘要

复杂的工程模型通常是计算要求的,并由高维参数空间定义,挑战了参数效应和设计优化的全面探索。为了克服这一维度的诅咒并最大程度地减少计算资源需求,本研究展示了一种用户友好的方法来制定减少维度替代模型,该模型代表了高维,高保真源模型。这种方法是专门为使用市售工具的非专家开发的。在这种方法中,高保真源模型的复杂身体行为分为单个,相互作用的身体行为。为每种行为创建一个单独的减少维替代模型,然后将所有概括以制定代表源模型的降低维替代模型。除了大大降低计算资源和可比精度外,该方法还提供了每种单个行为的表征,从而提供了对源模型行为的更多见解。该方法涵盖了实验测试,有限元分析,替代建模和灵敏度分析,并通过为铝板的损伤耐受性降低了差异替代模型来证明。

Complex engineering models are typically computationally demanding and defined by a high-dimensional parameter space challenging the comprehensive exploration of parameter effects and design optimization. To overcome this curse of dimensionality and to minimize computational resource requirements, this research demonstrates a user-friendly approach to formulating a reduced-dimension surrogate model that represents a high-dimensional, high-fidelity source model. This approach was developed specifically for a non-expert using commercially available tools. In this approach, the complex physical behavior of the high-fidelity source model is separated into individual, interacting physical behaviors. A separate reduced-dimension surrogate model is created for each behavior and then all are summed to formulate the reduced-dimension surrogate model representing the source model. In addition to a substantial reduction in computational resources and comparable accuracy, this method also provides a characterization of each individual behavior providing additional insight into the source model behavior. The approach encompasses experimental testing, finite element analysis, surrogate modeling, and sensitivity analysis and is demonstrated by formulating a reduced-dimension surrogate model for the damage tolerance of an aluminum plate reinforced with a co-cured bonded E-glass/epoxy composite laminate under four-point bending.

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