Smoothed Particle Hydrodynamics (SPH) methods are advantageous in simulations of fluids in domains with free boundary. Special SPH methods have also been developed to simulate solids. However, there are situations where the matter behaves partly as a fluid and partly as a solid, for instance, the solidification front in 3D printing, or any system involving both fluid and solid phases. We develop an SPH-like method that is suitable for both fluids and solids at the same time. Instead of the typical discretization of hydrodynamics, we discretize the Symmetric Hyperbolic Thermodynamically Compatible equations (SHTC), which describe both fluids, elastic solids, and visco-elasto-plastic solids within a single framework. The resulting SHTC-SPH method is then tested on various benchmarks from the hydrodynamics and dynamics of solids and shows remarkable agreement with the data.
翻译:平滑粒子流体动力学(SPH)方法有利于在有自由边界的领域模拟流体,还开发了特别的SPH方法模拟固体,然而,有些情况下,物质部分作为流体,部分作为固体,例如,3D印刷中的固化面,或任何涉及流体和固态阶段的系统。我们开发了一种既适合流体又适合同一时间的流体和固体的类似SPH方法。我们不使用典型的流体分解法,而是分解对称的超偏热动力可比较方程式(SHTC),在单一框架内描述液体、弹性固态和粘弹性塑胶固态固态,由此产生的SHTC-SPH方法随后根据流体动力和固体动态的不同基准进行测试,并显示与数据有显著一致。