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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Experimental and numerical investigation of an axisymmetric divergent dual throat nozzle
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Experimental and numerical investigation of an axisymmetric divergent dual throat nozzle

机译:轴对称发散双喉喷嘴的实验和数值研究

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The dual throat nozzle achieves higher thrust vectoring efficiencies and lesser thrust loss than other fluidic thrust-vectoring nozzles. Separation always occurs at the bottom of the cavity with complex three-dimensional characteristics for the dual throat nozzle. In this paper, by comparing the flow structure, nozzle surface static pressure distributions and skin friction lines, which are obtained by numerical simulations and wind tunnel experiments, an axisymmetric divergent dual throat nozzle is investigated in detail. The main results show the following findings. (1) The experimental schlieren photographs confirm again that the divergent nozzle configuration has the starting problem from an intuitive perspective. Meanwhile, the flow structure and nozzle surface static pressure distributions obtained by numerical simulations are consistent with the experimental results, except for the low nozzle pressure ratios. (2) The circumferential pressure difference is negligible upstream of the separation line but obvious downstream of the separation line. The skin friction lines and nozzle surface static pressure distributions of different circumferential angles obtained by experiments both prove that the actual flow in the axisymmetric divergent dual throat nozzle indeed possesses three-dimensional characteristics. Therefore, it is necessary to utilize the full three-dimensional computational domain to study the complex three-dimensional characteristics of the flow for the axisymmetric divergent dual throat nozzle thoroughly.
机译:与其他流体推力矢量喷嘴相比,双喉喷嘴实现了更高的推力矢量效率和更少的推力损失。对于双喉管喷嘴,分离总是在具有复杂三维特征的腔体底部发生。通过比较数值模拟和风洞实验获得的流动结构,喷嘴表面静压力分布和蒙皮摩擦线,对轴对称发散双喉管喷嘴进行了详细研究。主要结果表明以下发现。 (1)实验性的谢列伦照片再次证实,从直观的角度来看,发散的喷嘴配置存在起始问题。同时,通过数值模拟获得的流动结构和喷嘴表面静压力分布与实验结果一致,除了较低的喷嘴压力比。 (2)在分离线的上游,圆周压力差可以忽略不计,但在分离线的下游则明显。通过实验获得的皮肤摩擦线和不同圆周角的喷嘴表面静压力分布均证明轴对称发散双喉喷嘴的实际流动确实具有三维特征。因此,有必要利用完整的三维计算域来研究轴对称发散双喉喷嘴的复杂的三维流动特性。

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