In this paper, a novel meshless method that can handle porous flow problems with singular source terms is developed by virtually constructing the node control domains. By defining the connectable node cloud, this novel meshless method uses the integral of the diffusion term and generalized difference operators to derive overdetermined equations of the node control volumes. An empirical method of calculating reliable node control volumes and a triangulation-based method to determine the connectable point cloud are developed. NCDMM only focuses on the volume of the node control domain rather than the specific shape, so the construction of node control domains is called virtual, which will not increase the computational cost. To our knowledge, this is the first time to construct node control volumes in the meshless framework, so this novel method is named a node control domains-based meshless method, abbreviated as NCDMM, which can also be regarded as an extended finite volume method (EFVM). Taking two-phase porous flow problems as an example, the NCDMM discrete schemes meeting local mass conservation are derived by integrating the generalized finite difference schemes of governing equations on each node control domain. Finally, existing commonly used low-order finite volume method (FVM) based nonlinear solvers for various porous flow models can be directly employed in the proposed NCDMM, significantly facilitating the general-purpose applications of the NCDMM. Four numerical cases are implemented to test the computational accuracy, efficiency, convergence, and good adaptability to the calculation domain with complex geometry and various boundary conditions.
翻译:在本文中,通过构建可连接节点控制域,可以开发出一种能够用单一源值术语处理渗漏流量问题的新颖的网状方法。 通过定义可连接节点控制域,这种新颖的网状方法通过定义可连接节点控制域云,使用扩散术语和通用差异操作器的有机体来得出节点控制量的超定方方程式。 开发了一种计算可靠的节点控制量的经验方法和一种确定可连接点云的三角定位方法。 NCDM 仅侧重于节点控制域的量,而不是特定形状,因此节点控制域的构建被称为虚拟,不会增加计算成本。 据我们了解,这是首次在无网点框架中构建节点控制量量和通用差异控制量运行方程式,因此这个新颖方法被称为一种基于网点控制的网状网状网状网状网状网状控制法,被缩略释为NCDM 。 以两阶段的松散流流流调节系统为例,通过将通用的平衡方程式的精确度差异计划与每个不直接应用的轨迹M 水平计算法,可以将现有满足当地质量保护条件的网状的网状的网状的网状系统加以调整。最后,在每一个运行中可以将常规的轨中,以采用不同的计算。