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Modelling a Moving Propeller System in a Stratified Fluid Using OpenFOAM

机译:使用OpenFoam在分层流体中建模移动螺旋桨系统

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Moving propeller systems can introduce significant disturbances in stratified environments by mixing the surrounding fluid. Restorative buoyancy forces subsequently act on this region/patch of mixed fluid, causing it to eventually collapse vertically and spread laterally in order to recover the original stratification. This work describes the use of an OpenFOAM solver, modified using existing functionality, to simulate a moving propeller system in a stratified environment. Its application considers a rotating KCD-32 propeller in a laboratory-scale wave tank which mimics published experiments on mixed patch collapse. The numerically-predicted collapse behaviour is compared with empirical data and scaling laws. The results agree closely, both qualitatively and quantitatively, thereby representing a successful step towards the validation of the numerical model.
机译:移动螺旋桨系统可以通过混合周围的流体来引入分层环境中的显着干扰。恢复性浮力力随后在该区域/混合液的斑片上作用,使其最终垂直坍塌并横向膨胀以恢复原始分层。这项工作描述了使用OpenFoam求解器,使用现有功能进行修改,以模拟分层环境中的移动螺旋桨系统。其应用在实验室鳞片波罐中考虑了旋转的KCD-32螺旋桨,这些波舱在模仿公开的混合补丁崩溃实验。将数值预测的崩溃行为与经验数据和缩放法进行了比较。结果与定性和定量相似,从而代表了朝向数值模型的验证的成功步骤。

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