基于DNS的多臂撞击射流流动与传热特性研究

Kentaro Echigo, K. Tsujimoto, T. Shakouchi, T. Ando
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摘要

单个撞击射流在撞击壁面的撞击位置附近产生较高的换热率,而随着距离撞击位置的增加,传热性能下降。因此,为了克服SIJ的缺点,即壁面热分布不均匀和受热区域狭窄,通常引入多碰撞射流(MIJ),但传热仍然存在不均匀性。因此,为了进一步提高换热均匀性,需要新的射流控制观点。另一方面,在进口速度剖面上轴向和螺旋激励叠加的情况下,会发生喷流。喷流的特征是沿分离气流的分支运动的涡环。在前人的研究中,发现喷花射流在轴向与螺旋频率比不同的情况下会改变其流型,并改变其混合和扩散特性。然而,目前还没有对喷淋射流的传热性能进行观察的研究。本文对撞击壁面的喷淋射流进行了直接数值模拟,研究了喷淋射流的流动特性和传热性能。作为一个控制参数,与壁的距离是变化的。从旋涡结构和速度大小的角度,揭示了喷流控制是如何调节流动现象的产生的。为了进一步量化开花过程的传热,研究了平均局部努塞尔数的分布。与不受控制的射流相比,证实了射流的传热均匀性得到改善,表明喷淋射流可用于改善冲击射流的均匀传热性能。
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Flow and Heat Transfer Characteristics of Multi-Armed Impinging Jet Using DNS
A single impinging jet (SIJ) produces a high heat transfer rate around an impinging position on an impinging wall, while the heat transfer performance (HTP) decays increasing the distance from the impinging position. Thus in order to overcome the shortcoming of SIJ: the occurrence of both inhomogeneous heat distribution on the wall and the narrow heating area, multiple impinging jets (MIJ) are generally introduced, however, nonuniformity of heat transfer still occurs. Therefore, the viewpoint of new jet control is required in order to further improvement of the uniformity of heat transfer. On the other hand, blooming jets occur with superimposition of axial and helical excitations on the inlet velocity profile. Blooming jets are characterized by vortex rings moving along branches of separate streams. In previous studies, it is observed that blooming jets change its flow pattern with different frequency ratio of axial to helical, and its mixing and diffusion characteristics. However, there are no studies that observe heat transfer performance of the blooming jet. In this study, we conduct a direct numerical simulation of blooming jet that impinges upon the wall, and investigate its flow characteristics and heat transfer performance. As a control parameter, the distance from the wall is varied. From the view of vortex structures and velocity magnitude, it reveals how the generation of flow phenomena are modulated through the blooming control. Further in order to quantify the heat transfer of the blooming, distributions of mean local Nusselt Number are examined. Compared to the uncontrolled jet, it is confirmed that the uniformity of heat transfer is improved, suggesting that the blooming jets can be expected to be useful for the improvement of uniform heat transfer performance of impinging jets.
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