TY - JOUR
T1 - A New Spike-Dual-Disk-Channel Concept with Openings on the Aerodisk
AU - Luo, Shenxing
AU - Fang, Shuzhou
AU - Ye, Chen
N1 - Publisher Copyright:
© 2026 SAE International.
PY - 2026/7/17
Y1 - 2026/7/17
N2 - To reduce the drag and intense heating faced by the hypersonic vehicle during flight, a novel spike-dual-disk-channel configuration is proposed, featuring a slotted channel at the head and exhaust at the second aerodisk. Numerical simulations were conducted using Fluent at 30 km and 5 Ma in free-flow. The new configuration's comprehensive aerodynamic performance were evaluated and compared to those of the single-disk and dual-disk configurations. The simulation results indicate that the new configuration exhibits superior comprehensive aerodynamic performance compared to the single-disk configuration. In contrast to the dual-disk configuration, the new configuration slightly compromises drag reduction (by approximately 1%), but achieves significantly better thermal protection (by approximately 10%).
AB - To reduce the drag and intense heating faced by the hypersonic vehicle during flight, a novel spike-dual-disk-channel configuration is proposed, featuring a slotted channel at the head and exhaust at the second aerodisk. Numerical simulations were conducted using Fluent at 30 km and 5 Ma in free-flow. The new configuration's comprehensive aerodynamic performance were evaluated and compared to those of the single-disk and dual-disk configurations. The simulation results indicate that the new configuration exhibits superior comprehensive aerodynamic performance compared to the single-disk configuration. In contrast to the dual-disk configuration, the new configuration slightly compromises drag reduction (by approximately 1%), but achieves significantly better thermal protection (by approximately 10%).
KW - channel
KW - drag reduction and thermal protection
KW - hypersonic
KW - numerical simulation
KW - spike-dual-disk
UR - https://www.scopus.com/pages/publications/105045809480
U2 - 10.4271/2026-99-1841
DO - 10.4271/2026-99-1841
M3 - Conference article
AN - SCOPUS:105045809480
SN - 0148-7191
JO - SAE Technical Papers
JF - SAE Technical Papers
T2 - 2025 International Conference on Aircraft Control and Navigation Technology, ACNT 2025
Y2 - 12 September 2025 through 14 September 2025
ER -