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Aerodynamic and mass transfer characteristics of an annular bistable impinging jet with a fluidic flip―flop control

机译:带有流体触发器控制的环形双稳态撞击射流的气动和传质特性

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摘要

An annular nozzle has been designed on the basis of fluidic principles. The nozzle forms actively controlled air jet. Numerical and experimental investigations were performed in several subsequent steps, namely numerical simulation (using a commercial CFD code FLUENT), geometry adaptation, models manufacturing, flow visualization, hot-wire measurement, and mass transfer (naphthalene sublimation) experiment. A "jet switching" possibility has been discussed, an undesirable hysteresis effect has been suppressed. Present collaborative numerical and experimental investigations have resulted in a better understanding of mechanisms involved in controlled impinging jets, as well as in a further improvement of the particular nozzle geometry.
机译:根据流体原理设计了环形喷嘴。喷嘴形成主动控制的空气射流。在随后的几个步骤中进行了数值和实验研究,即数值模拟(使用商业CFD代码FLUENT),几何适应,模型制造,流动可视化,热线测量和传质(萘升华)实验。已经讨论了“喷射切换”的可能性,抑制了不希望的磁滞效应。当前的协作数值和实验研究已经使人们更好地理解了与受控冲击射流有关的机制,并进一步改进了特定的喷嘴几何形状。

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