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LARGE EDDY SIMULATION OF THE HEAT TRANSFER DUE TO SWIRLING AND NON-SWIRLING JET IMPINGEMENT

机译:由于旋流和非旋转喷射冲击引起的热传递大型涡流模拟

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Turbulent impinging jet is a complex flow phenomenon involving free jet, impingement and subsequent wall jet development zones; this makes it a difficult test case for the evaluation of new turbulence models. The complexity of the jet impingement can be further amplified by the addition of the swirl. In this paper, results of Large Eddy Simulations (LES) of swirling and non-swirling impinging jet are presented. The Reynolds number of the jet based on bulk axial velocity is 23000 and target-to-wall distance (H/D) is two. The Swirl numbers (S) of the jet are 0,0.2, 0.47. In swirling jets, the heat transfer at the geometric stagnation zone deteriorates due to the formation of conical re-circulation zone. It is found numerically that the addition of swirl does not give any improvement for the over all heat transfer at the target wall. The LES predictions are validated by available experimental data.
机译:湍流撞击射流是一种复杂的流动现象,包括自由喷射,冲击和随后的壁式喷射区域;这使得它成为评估新的湍流模型的困难的测试用例。通过添加旋流,可以进一步放大喷射冲击的复杂性。本文介绍了旋流和不旋转撞击射流的大型涡流模拟(LES)的结果。基于堆积轴向速度的射流的雷诺数是23000,靶向壁距离(H / d)是两个。喷射器的漩涡数为0,0.2,0.47。在旋转喷射时,由于形成锥形再循环区,几何停滞区的传热劣化。在数值上发现,添加旋流不会对目标壁的所有传热产生任何改进。 LES预测由可用的实验数据验证。

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