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A comparative study of truly incompressible and weakly compressible SPH methods for free surface incompressible flows

机译:真正不可压缩和弱可压缩SPH方法对自由表面不可压缩流的比较研究

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In this paper, the performance of the incompressible SPH (ISPH) method and an improved weakly compressible SPH (IWCSPH) method for free surface incompressible flows are compared and analyzed. In both methods, the Navier-Stokes equations are solved, and no artificial viscosity is used. The ISPH algorithm in this paper is based on the classical SPH projection method with common treatments on solid boundaries and free surfaces. The IWCSPH model includes some advanced corrective algorithms in density approximation and solid boundary treatment (SBT). In density approximation, the moving least squares (MLS) approach is applied to re-initialize density every several steps to obtain smoother and more stable pressure fields. An improved coupled dynamic SBT algorithm is implemented to obtain stable pressure values near solid wall areas and, thus, to minimize possible numerical oscillations brought in by the solid boundaries. Three representative numerical examples, including a benchmark test for hydrostatic pressure, a dam breaking problem and a liquid sloshing problem, are comparatively analyzed with ISPH and IWCSPH. It is demonstrated that the present IWCSPH is more attractive than ISPH in modeling free surface incompressible flows as it is more accurate and more stable with comparable or even less computational efforts.
机译:本文对自由表面不可压缩流的不可压缩SPH(ISPH)方法和改进的弱压缩SPH(IWCSPH)方法的性能进行了比较和分析。在这两种方法中,都可以求解Navier-Stokes方程,并且不使用人工粘度。本文中的ISPH算法基于经典的SPH投影方法,并对固体边界和自由表面进行了通用处理。 IWCSPH模型在密度逼近和固体边界处理(SBT)中包括一些高级的校正算法。在密度近似中,采用移动最小二乘法(MLS)方法每隔几步重新初始化一次密度,以获得更平滑,更稳定的压力场。实现了一种改进的耦合动态SBT算法,以在固体壁区域附近获得稳定的压力值,从而最大程度地减少了由固体边界带来的可能的数值振荡。使用ISPH和IWCSPH比较分析了三个代表性的数值示例,包括静水压力基准测试,溃坝问题和液体晃动问题。结果表明,在模拟自由表面不可压缩流方面,当前的IWCSPH比ISPH更具吸引力,因为它在可比或什至更少的计算量下更准确,更稳定。

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