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Characteristics Analysis of Dual Bell Nozzle using Computational Fluid Dynamics

机译:基于计算流体力学的双钟形喷嘴特性分析

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Space exploration and space tourism have now become a raging competition among the developed nations. For this reason, different types of advanced rocket nozzles with prospective privileges are introduced. Altitude adaptive dual bell nozzle will soon replace the conventional nozzles for the first stage rocket launcher. Indeed, this nozzle has auto adaption capability based on altitude. The major feature of a dual bell nozzle is the two bell-shaped contours separated by an inflection point. This nozzle has left rooms for researchers to test different flight conditions and transition characteristics. In this paper, a dual bell nozzle contour has been developed in MATLAB and analysed for different thermodynamic parameters. ANSYS Fluent is used in analysing flow through the nozzle. Shadowgraph imaging technique is used for measuring density gradient and compared it with fluent results. The simulations were performed by using the k-epsilon turbulence model.
机译:太空探索和太空旅游现在已经成为发达国家之间的激烈竞争。因此,引入了具有预期特权的不同类型的高级火箭喷嘴。高度自适应双钟形喷嘴将很快取代第一级火箭发射器的常规喷嘴。实际上,该喷嘴具有基于海拔高度的自动适应能力。双钟形喷嘴的主要特征是由拐点隔开的两个钟形轮廓。该喷嘴为研究人员留出了测试不同飞行条件和过渡特性的空间。在本文中,双钟形喷嘴轮廓已在MATLAB中开发,并针对不同的热力学参数进行了分析。 ANSYS Fluent用于分析通过喷嘴的流量。阴影图成像技术用于测量密度梯度,并将其与流畅的结果进行比较。通过使用k-ε湍流模型进行了仿真。

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