流入
流出
光滑粒子流体力学
机械
边值问题
边界(拓扑)
计算流体力学
流体动力学中不同类型的边界条件
雷诺数
流量(数学)
可压缩流
领域(数学分析)
无滑移条件
地质学
数学
压缩性
几何学
物理
数学分析
气象学
边界层厚度
湍流
作者
Martin Lastiwka,Mihai Basa,Nathan J. Quinlan
摘要
Abstract Inflow and outflow boundary conditions are essential for the application of computational fluid dynamics to many engineering scenarios. In this paper we present a new boundary condition implementation that enables the simulation of flow through permeable boundaries in the Lagrangian mesh‐free method, smoothed particle hydrodynamics (SPH). Each permeable boundary is associated with an inflow or outflow zone outside the domain, in which particles are created or removed as required. The analytic boundary condition is applied by prescribing the appropriate variables for particles in an inflow or outflow zone, and extrapolating other variables from within the domain. Characteristic‐based non‐reflecting boundary conditions, described in the literature for mesh‐based methods, can be implemented within this framework. Results are presented for simple one‐dimensional flows, quasi‐one‐dimensional compressible nozzle flow, and two‐dimensional flow around a cylinder at Reynolds numbers of 40 and 100 and a Mach number of 0.1. These results establish the capability of SPH to model flows through open domains, opening a broad new class of applications. Copyright © 2008 John Wiley & Sons, Ltd.
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