首页> 美国卫生研究院文献>Journal of Engineering for Gas Turbines and Power >Effects of Cavity on the Performance of Dual Throat Nozzle During the Thrust-Vectoring Starting Transient Process
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Effects of Cavity on the Performance of Dual Throat Nozzle During the Thrust-Vectoring Starting Transient Process

机译:推力矢量启动瞬态过程中空腔对双喉喷嘴性能的影响

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摘要

The dual throat nozzle (DTN) technique is capable to achieve higher thrust-vectoring efficiencies than other fluidic techniques, without compromising thrust efficiency significantly during vectoring operation. The excellent performance of the DTN is mainly due to the concaved cavity. In this paper, two DTNs of different scales have been investigated by unsteady numerical simulations to compare the parameter variations and study the effects of cavity during the vector starting process. The results remind us that during the vector starting process, dynamic loads may be generated, which is a potentially challenging problem for the aircraft trim and control.
机译:与其他流体技术相比,双喉喷嘴(DTN)技术能够实现更高的推力矢量化效率,而不会在矢量化操作期间显着降低推力效率。 DTN的出色性能主要归因于凹腔。本文通过非稳态数值模拟研究了两个不同尺度的DTN,以比较参数变化并研究矢量启动过程中空腔的影响。结果提醒我们,在矢量启动过程中,可能会产生动态载荷,这对于飞机的调整和控制来说是一个潜在的挑战性问题。

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