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Novel vistas on the foundations of peridynamics

机译:基于周边动力学的新颖远景

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摘要

The main objective of this presentation is to develop a novel continuum-kinematics-inspired approach for peridynamics (PD), and to revisit PD's thermodynamic foundations. We distinguish between three types of interactions, namely, one-neighbour interactions, two-neighbour interactions and three-neighbour interactions. While one-neighbour interactions are equivalent to the bond-based interactions of the original PD formalism, two- and three-neighbour interactions are fundamentally different to state-based interactions in that the basic elements of continuum kinematics are preserved exactly. In addition, we propose that an externally prescribed traction on the boundary of the continuum body emerges naturally and need not vanish. This is in contrast to, but does not necessarily violate, standard PD. We investigate the consequences of the angular momentum balance and provide a set of appropriate arguments for the interactions accordingly. Furthermore, we elaborate on thermodynamic restrictions on the interaction energies and derive thermodynamically-consistent constitutive laws through a Coleman-Noll-like procedure. Notably, we show that various choices for temperature or coldness satisfy the dissipation inequality and provide meaningful temperature or coldness evolution equations together with Fourier-like conduction equations.
机译:本次演讲的主要目的是开发一种新颖的以连续运动学为灵感的围动力学(PD)方法,并重新审视PD的热力学基础。我们区分三种类型的交互,即一邻居交互,二邻居交互和三邻居交互。虽然一邻居的交互作用等同于原始PD形式主义的基于键的交互作用,但是二和三邻居的交互作用与基于状态的交互作用从根本上不同之处在于,连续运动学的基本要素得以精确保留。此外,我们建议,在连续体边界上自然会出现外部规定的牵引力,因此不必消失。这与标准PD相反,但不一定违反。我们研究了角动量平衡的结果,并为相互作用提供了一组适当的论据。此外,我们阐述了对相互作用能的热力学限制,并通过类Coleman-Noll程序推导了热力学一致的本构定律。值得注意的是,我们表明,温度或冷度的各种选择都可以满足耗散不等式,并提供有意义的温度或冷度演化方程以及类似傅立叶的传导方程。

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  • 会议地点 Cape Town(ZA)
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    Glasgow Computational Engineering Centre School of Engineering University of Glasgow Glasgow UK Applied Mechanics University of Erlangen-Nuremberg Erlangen Germany;

    Glasgow Computational Engineering Centre School of Engineering University of Glasgow Glasgow UK;

    Department of Mechanical Engineering Bilkent University Ankara Turkey;

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