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DEVELOPMENT AND VALIDATION OF FLUID-SOLID INTERACTION ANALYSIS FOR CRASHWORTHINESS STUDIES

机译:流体动力学研究的流固耦合分析方法的建立和验证

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Improved numerical analysis of fluid-solid interaction of rigid wedge water entry with multiple deadrise angles was conducted. This involved the coupling of fluid flow and structural mechanics, normally analyzed through separate numerical platforms. To capture the subtleties of water behavior in detail using finite elements, an advanced gradient meshing technique involving meshed and meshless Lagrangian elements was developed. The gradients varied particle spacing to maximize the resolution at the area of impact while reducing computation time. The properties of water, incorporating compressibility, were simulated and used in small and full scale analysis models. Results of multiple converging gradient schemes were compared to existing models, physical experiments, and analytical representations. The advanced gradient mesh schemes were able to capture the qualitative and quantitative essences of the event. Further experimental trials are needed to establish the predicting capabilities of the developed model when examining large scale fluid-solid interactive systems.
机译:进行了具有多个死角的刚性楔入水流固耦合的数值分析。这涉及流体流动和结构力学的耦合,通常通过单独的数值平台进行分析。为了使用有限元详细捕获水行为的细微差别,开发了一种先进的梯度网格划分技术,该技术包括网格化和非网格化的拉格朗日元素。梯度改变了粒子间距,以最大程度提高撞击区域的分辨率,同时减少了计算时间。结合了可压缩性的水的特性被模拟并用于小型和大型分析模型。将多个收敛梯度方案的结果与现有模型,物理实验和分析表示进行了比较。先进的渐变网格方案能够捕获事件的定性和定量本质。当检查大型流固交互系统时,需要进一步的实验试验来建立已开发模型的预测能力。

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