Outflow Boundary Condition and Algorithm for Single-Phase Incompressible Flows
收藏DataCite Commons2025-12-18 更新2025-04-16 收录
下载链接:
https://purr.purdue.edu/publications/1699/1
下载链接
链接失效反馈官方服务:
资源简介:
<p>We present a robust and accurate outflow boundary condition&nbsp;and an associated numerical algorithm&nbsp;for incompressible flow simulations on&nbsp;unbounded physical domains, aiming at&nbsp;maximizing the domain truncation&nbsp;without adversely affecting&nbsp;the flow physics.&nbsp;The proposed outflow boundary condition allows&nbsp;for the influx of kinetic energy&nbsp;into the domain through the outflow&nbsp; boundaries,&nbsp;and prevents un-controlled growth in the&nbsp;energy of the&nbsp;domain in such situations. The&nbsp;numerical algorithm for the outflow boundary&nbsp;condition is developed&nbsp;on top of a rotational velocity-correction type&nbsp;strategy to de-couple the pressure and velocity&nbsp;computations,&nbsp;and a special construction in the algorithmic formulation&nbsp;prevents the numerical locking&nbsp;at the outflow boundaries for time-dependent problems.&nbsp;Extensive numerical tests for flow problems with bounded and&nbsp;semi-bounded physical domains&nbsp;demonstrate that&nbsp;this outflow boundary condition and the numerical&nbsp;algorithm produce stable and accurate simulations &nbsp;on even severely truncated computational&nbsp;domains,&nbsp;where strong vortices may be present at or exit&nbsp;the outflow boundaries. The method developed herein has the potential to&nbsp;significantly expedite simulations of incompressible&nbsp;flows involving outflow or open boundaries,&nbsp;and to enable such simulations at Reynolds numbers significantly higher&nbsp;than the state of the art.</p>
提供机构:
Purdue University Research Repository
创建时间:
2014-06-16



