Colagrossi Andrea, Antuono Matteo, Souto-Iglesias Antonio, Le Touzé David
CNR-INSEAN, The Italian Ship Model Basin, Via di Vallerano 139, I-00128 ROMA, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Aug;84(2 Pt 2):026705. doi: 10.1103/PhysRevE.84.026705. Epub 2011 Aug 26.
The theoretical formulation of the smoothed particle hydrodynamics (SPH) method deserves great care because of some inconsistencies occurring when considering free-surface inviscid flows. Actually, in SPH formulations one usually assumes that (i) surface integral terms on the boundary of the interpolation kernel support are neglected, (ii) free-surface conditions are implicitly verified. These assumptions are studied in detail in the present work for free-surface Newtonian viscous flow. The consistency of classical viscous weakly compressible SPH formulations is investigated. In particular, the principle of virtual work is used to study the verification of the free-surface boundary conditions in a weak sense. The latter can be related to the global energy dissipation induced by the viscous term formulations and their consistency. Numerical verification of this theoretical analysis is provided on three free-surface test cases including a standing wave, with the three viscous term formulations investigated.
由于在考虑自由表面无粘流时会出现一些不一致性,光滑粒子流体动力学(SPH)方法的理论公式推导需要格外谨慎。实际上,在SPH公式中,通常假设:(i)插值核支持边界上的表面积分项被忽略;(ii)自由表面条件被隐含地验证。在本工作中,针对自由表面牛顿粘性流对这些假设进行了详细研究。研究了经典粘性弱可压缩SPH公式的一致性。特别地,使用虚功原理在弱意义下研究自由表面边界条件的验证。后者可能与粘性项公式引起的全局能量耗散及其一致性有关。针对包括驻波在内的三个自由表面测试案例,对三种粘性项公式进行了研究,提供了该理论分析的数值验证。