Design optimization of a multi row disk inlet device with an optimum nose cone angle

IF 1.2 Q3 ENGINEERING, MECHANICAL FME Transactions Pub Date : 2023-01-01 DOI:10.5937/fme2301023s
J. Sinha, Sanjay Singh, O. Prakash, D. Panchal
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引用次数: 0

Abstract

The inlet is designed to compress the air and increase static pressure. In the present work, analyses have been carried out using 2D axisymmetric Reynolds averaged Navier Stokes equations (RANS) equations to capture the flow physics of the shock structure produced by the multi-row disk inlet device at different semi-cone angles. The present work involves numerical studies on the shock structure over the disk. Drag coefficient, pressure variation, and vortex behavior with separation layers have been observed with various semi-cone angles of 12°, 15°, and 20° at the steady-state condition and zero angles of attack. At the free stream Mach number 2 and turbulence model k-o SST, simulations have been carried out using commercial software. Compression through the cavity structure and the drag coefficient analysis at 20° shows better trade-off performance than the others. We also obtained that 20° is the maximum semi-cone angle for the current disk set-up and the operating conditions.
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具有最佳鼻锥角的多排圆盘进气道的优化设计
进气口的设计是为了压缩空气,增加静压。本文采用二维轴对称Reynolds平均Navier Stokes方程(RANS)对多排圆盘进气道在不同半锥角下产生的激波结构的流动物理特性进行了分析。目前的工作是对圆盘上的激波结构进行数值研究。在稳态条件和零攻角条件下,观察了不同半锥角(12°、15°和20°)下的阻力系数、压力变化和分离层的涡行为。在自由流马赫数2和湍流模式k-o海温下,利用商业软件进行了模拟。通过空腔结构的压缩和20°阻力系数分析显示出较好的权衡性能。我们还获得了20°是当前磁盘设置和操作条件下的最大半锥角。
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来源期刊
FME Transactions
FME Transactions ENGINEERING, MECHANICAL-
CiteScore
3.60
自引率
31.20%
发文量
24
审稿时长
12 weeks
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