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Computational analysis of multi row disk inlet

机译:多排圆盘进水口的计算分析

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This work presents the computational investigation of the Multi Row Disk Inlet design. The Multi Row Disk Inlet concept design by Hiroaki Kobayashi comprises of a tip cone and following disks. Centrebody geometry is variable by changing space between the disks, hence air compression ratio and mass capture ratio can be controlled independently of each other. To consider the effect of conical cavities on the flow field computations were performed using Gambit and Fluent. The computations were performed over various cavity configurations of the inlet. It was observed from the simulations that the boundary layer profile for different number of cavities did not vary significantly from the boundary layer profile of the reference inlet. The dominant factor affecting the boundary layer profile was the cavity length. Similarly, the boundary layer profile downstream of the cavities for the expanded body configuration did not vary significantly from that of the reference inlet. The static pressure rise at the rear wall of the conical cavity led to generation of flow vortices which may lead to instability.
机译:这项工作提出了多行磁盘入口设计的计算研究。小林浩明(Hiroaki Kobayashi)的“多行磁盘入口”概念设计包括一个顶锥和随后的磁盘。通过改变圆盘之间的空间,中心体的几何形状是可变的,因此可以彼此独立地控制空气压缩率和质量捕获率。为了考虑锥形腔对流场的影响,使用Gambit和Fluent进行了计算。在入口的各种腔结构上进行了计算。从仿真中观察到,不同数量腔体的边界层轮廓与参考入口的边界层轮廓没有显着变化。影响边界层轮廓的主要因素是空腔长度。类似地,用于膨胀体构造的腔体下游的边界层轮廓与参考入口的边界层轮廓没有明显变化。圆锥形腔体后壁处的静压上升导致流动涡流的产生,这可能导致不稳定。

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