论文标题
基于liutex的修改后纳维尔 - 斯托克斯方程
Liutex-based Modified Navier-Stokes Equation
论文作者
论文摘要
作为流体动力学的管理方程,Navier-Stokes(NS)部分微分方程基于零体积的粒子。在这种情况下,动量时刻的保护定律会自动满足,因此NS方程仅包含质量,动量和能量的保护。由于很难获得NS方程的分析解决方案,因此科学家开发了有限元方法(FEM)和有限体积方法(FVM)来获得近似解决方案。但是,这些方法取决于有限体积的大小,该大小不是零。考虑到有限体积的大小,不再自动满足动量时刻的保护定律,因此有必要开发一个新的控制方程式以考虑动量的生效。在本文中,互惠剪切应力的新关系来自动量时刻的保护定律,新的本构关系和修改的NS方程也是如此。基于liutex的NS方程可能是层流和湍流的通用等方程,它以涡流为主,并且必须满足动量的保护。
The Navier-Stokes (NS) partial differential equations, as the governing equation of fluid dynamics, are based on particles with zero volume. In such a condition, conservation law of moment of momentum is automatically satisfied, and thus NS equations only contain conservation of mass, momentum and energy. Because of the difficulty to get an analytical solution of NS equations, scientists develop finite element method (FEM) and finite volume method (FVM) to obtain approximate solutions. However, these methods are dependent on the size of finite volumes, which is not zero. Considering the size of the finite volume, conservation law of moment of momentum is no longer automatically satisfied and it is necessary to develop a new control equation to take effect of momentum into account. In this paper, new relations of reciprocal shear stresses are derived from conservation law of moment of momentum, and so are new constitutive relations and modified NS equations. The Liutex based NS equation may be the universal governing equations for both laminar and turbulent flow which is dominated by vortices and conservation of moment of momentum must be satisfied.