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Optimal control of boundary layers under body forces

机译:体力下边界层的最佳控制

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Streamwise vortices developing in flows due to the interaction of viscous and body forces are important to study both for the basic insight into the laminar-turbulent transition phenomenon, and for practical applications dealing with transport processes in boundary layers. Matched numerical and experimental studies based on the Goertler stability theory and receptivity to induced longitudinal vortices enabled to observe the vortical structure evolution across the boundary layer thickness and downstream (or in time) and to formulate a logically stipulated approach to the vortex dynamics management. The basic idea proposed for optimal flow control is the utilization of an inherent dominating structure (streamwise vortices) of the flow under body forces. Being generated strictly according to the basic flow parameters, the streamwise vortices were shown either to stabilize the flow situation (extending a stage of the laminar-turbulent transition) or to intensify mixing processes near the wall (e.g. delaying flow separation or enhancing heat transfer).
机译:由于粘性和体力的相互作用而在流动中发育的流动涡流对于研究层压湍流过渡现象的基本洞察以及处理边界层中的运输过程的实际应用来说是重要的。基于Goerller稳定性理论和接受性的匹配数值和实验研究诱导纵向涡旋,使得在边界层厚度和下游(或时间)上观察涡流结构演变,并配制涡流动力量管理的逻辑上规定的方法。所提出的最佳流量控制的基本思想是利用体力下流的固有的主导结构(流动涡流)。严格地根据基本流量参数产生,示出了流动涡流,以稳定流动情况(延长层流湍流过渡的阶段)或强化墙壁附近的混合过程(例如延迟流动分离或增强传热) 。

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