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ON TRANSITION PROCESS IN SEPARATED-REATTACHED FLOWS

机译:分离流的过渡过程研究

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Laminar-to-turbulent transition in shear layer of separated flows is of practical importance. A thorough understanding of transition process is crucial for its prediction and control; to delay the turbulent phase where laminar flow characteristics are desirable or to accelerate it where high mixing and heat transfer rates of turbulent flow are of interest. This paper presents a review of transition process and unsteady behavior of shear layer in separated flows. Despite decades of intensive research in this area the transition process is still not fully understood. However, significant progress has been made with the simulation tools such as Large Eddy Simulation (LES) and Direct Numerical Simulation (DNS). This paper will discuss several important issues such as instability, vortex shedding, coherent structures and so on in separated shear layer transition, trying to provide the current status of understanding and an appraisal of possible future developments.
机译:分离流的剪切层中的层流向湍流过渡具有实际意义。对过渡过程的透彻了解对其预测和控制至关重要。在需要层流特性的情况下延迟湍流相,或者在关注湍流的高混合和传热速率的情况下加速湍流相。本文介绍了分离流中剪切层的过渡过程和非稳态行为。尽管在这一领域进行了数十年的深入研究,但过渡过程仍未完全了解。但是,诸如大涡模拟(LES)和直接数值模拟(DNS)之类的模拟工具已经取得了重大进展。本文将讨论分离剪切层过渡中的一些重要问题,如不稳定性,涡旋脱落,相干结构等,以期提供当前的理解状态并评估可能的未来发展。

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