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A general concrete model in hydrocodes: Verification and validation of the Riedel-Hiermaier-Thoma model in LS-DYNA

机译:液压代码中的通用具体模型:LS-DYNA中Riedel-Hiermaier-Thoma模型的验证和确认

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摘要

The Riedel-Hiermaier-Thoma model, which is available in ANSYS Autodyn since 2000 as a description of concrete and similar geological materials in highly dynamic loading situations, has recently been implemented in the multi-purpose Finite Element code LS-DYNA. This article gives a brief overview of the physical details and verifies the new implementation by comparing single element test results with the established Autodyn code. Four real cases, ranging from low to very high pressure loading by impact, penetration and blast, are used to demonstrate thereafter the validity of the model in a wide range of applications. Simulation results from both codes are compared to experimental data at several occasions. Although slight differences between the implementations are observed, the overall agreement, both between the codes and with experiments, is very good. The systematic work in this publication demonstrates that the Riedel-Hiermaier-Thoma model is a useful addition to the LS-DYNA material library and shall motivate research to apply the model over a wide range of applications. A comprehensive, physically derived dataset is provided for a C70/85 high-strength concrete used in one validation case.
机译:Riedel-Hiermaier-Thoma模型自2000年开始在ANSYS Autodyn中提供,用于描述高动态载荷情况下的混凝土和类似地质材料,最近已在多用途有限元代码LS-DYNA中实现。本文简要介绍了物理细节,并通过将单个元素的测试结果与已建立的Autodyn代码进行比较来验证新的实现。此后,通过四个实际案例,从冲击,穿透和爆炸的低压到超高压力加载,来证明该模型在各种应用中的有效性。两种情况下,两种代码的仿真结果都与实验数据进行了比较。尽管观察到实现之间的细微差别,但是代码之间和实验之间的总体协议都非常好。该出版物中的系统工作证明了Riedel-Hiermaier-Thoma模型是LS-DYNA材料库的有用补充,并将激发研究将该模型应用于广泛的应用领域。为一个验证案例中使用的C70 / 85高强度混凝土提供了一个全面的,物理上衍生的数据集。

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