论文标题
通过旋转板通过流量调制的通风腔中混合对流传热增强
Mixed Convective Heat Transfer Enhancement in a Ventilated Cavity by Flow Modulation via Rotating Plate
论文作者
论文摘要
本研究通过数值探索了通过旋转板的主动流量调制的差异加热的通风正方形腔中的混合对流现象。通过保持外部流体流穿过左腔壁底部的开口,同时使其穿过右腔壁的另一个开口,从而实现了腔中的强制对流流。腔中心的逆时针旋转板充当活跃的流量调节器。移动网格方法用于板的旋转,并使用任意的拉格朗日 - 欧拉(ALE)有限元配方实现数值解决方案,并具有四边形离散方案。基于最大入口流速速度,固定的雷诺数(RE)对旋转板的各种频率进行了瞬态参数模拟,而理查森数(RI)则保持在统一性。已经根据空间平均的努塞尔(Nusselt)数量评估了传热性能,并沿加热壁的努塞尔(Nusselt)数量平均。从快速傅立叶变换(FFT)分析获得的频域中的功率谱分析表明,热频率和板频率以较高的速度比值开始彼此偏差(> 4)。
The present study numerically explores the mixed convection phenomena in a differentially heated ventilated square cavity with active flow modulation via a rotating plate. Forced convection flow in the cavity is attained by maintaining an external fluid flow through an opening at the bottom of the left cavity wall while leaving it through another opening at the right cavity wall. A counter-clockwise rotating plate at the center of the cavity acts as active flow modulator. Moving mesh approach is used for the rotation of the plate and the numerical solution is achieved using Arbitrary Lagrangian-Eulerian (ALE) finite element formulation with a quadrilateral discretization scheme. Transient parametric simulations have been performed for various frequency of the rotating plate for a fixed Reynolds number (Re) of 100 based on maximum inlet flow velocity while the Richardson number (Ri) is maintained at unity. Heat transfer performance has been evaluated in terms of spatially averaged Nusselt number and time-averaged Nusselt number along the heated wall. Power spectrum analysis in the frequency domain obtained from the fast Fourier transform (FFT) analysis indicates that thermal frequency and plate frequency start to deviate from each other at higher values of velocity ratio (> 4).