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Fluid flow reconstruction modeling with application to liquid molding processes

机译:流体重构建模及其在液体成型工艺中的应用

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摘要

A unique mathematical reconstruction technique is coupled with discrete experimental flow front detection data to provide continuous fluid flow analysis. A fully finite element based methodology for the construction of surfaces from scattered and sparse data is presented and applied to experimental observations derived from a new class of sensors enlisted as monitors of the resin transfer molding (RTM) process. The basic numerical technique is shown to yield interpolant models capable of flow front position and fluid flow velocity reconstruction. The extrapolative/predictive performance is enhanced through the introduction of a new hybrid procedure. Two-dimensional and quasi-three-dimensional examples are used to demonstrate the effectiveness of the techniques.
机译:独特的数学重建技术与离散的实验流锋检测数据相结合,可提供连续的流体流分析。介绍了一种基于零散和稀疏数据构造表面的基于完全有限元的方法,并将其应用于实验观察,该实验结果源自新型传感器,该传感器被选作树脂传递模塑(RTM)过程的监控器。基本的数值技术显示出能够生成流前位置和流体流速重构的内插模型。通过引入新的混合过程,可以增强外推/预测性能。二维和准三维示例用于说明该技术的有效性。

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