Experimental data at flight-relevant Reynolds numbers remain scarce for publicly available transport aircraft standard models. This study analyses Reynolds number effects on the CHN-T1 large-aspect-ratio configuration using measurements from the cryogenic European Transonic Wind Tunnel, covering Mach 0.20–0.90 and unit Reynolds numbers from 3.6 × 106 to 37.8 × 106. A split transition strategy (fixed at low Re, free at high Re) is employed; the resulting trends are smooth and physically consistent with boundary-layer stability behaviour across the configuration change. At the cruise condition (M = 0.78), the non-induced drag coefficient CDV follows a power law CDV ∝ Re−n with n = 0.141, corresponding to about 70% of the canonical turbulent flat-plate exponent n = 1/5. At off-design Mach numbers, the exponent reduces to n = 0.126 (M = 0.60) and n = 0.125 (M = 0.85), reflecting growing pressure and wave drag contributions that scale more weakly with Reynolds number. The longitudinal static stability margin also exhibits a measurable Re dependence at the cruise condition, with the neutral point shifting aft by approximately 1% of the mean aerodynamic chord over the tested range. These findings provide quantitative benchmarks for Re scaling methodologies and CFD validation at flight-relevant conditions.
With the increasing demand for high-fidelity aerodynamic validation benchmarks for advanced civil aircraft design, this paper presents an open-access, high-Reynolds-number transonic wind tunnel dataset for the CHN-T1 standard large aircraft model, generated from systematic tests conducted in the European Transonic...
This paper presents a detailed numerical investigation of the turbulent flow structure around a NACA0012 airfoil at low Reynolds numbers using a two-fluid turbulence model implemented in the COMSOL Multiphysics environment. The study focuses on Reynolds numbers ranging from 10,000 to 30,000 at an angle of attack of...
Z. Abdulkhaev, Nilufar Kurbonova, D. Kadirova et al.· Mathematical Models in Engin...· 0 citations
This study investigates the effectiveness of surface microcavities as a passive flow-control technique for reducing drag on a NACA 0012 airfoil over a range of Reynolds numbers and angles of attack. Two-dimensional RANS and URANS simulations were performed using the SU2 solver and validated against benchmark data for t...
Wafae Lahmili, K. Bouchaâla, A. Omar et al.· Journal of Aircraft· 0 citations
In this paper, aerodynamic performance of three NACA airfoils, including NACA 2412, NACA 4412, and NACA 0012 are examined in two-dimensional CFD simulation to compare their aerodynamic performance. The current simulation is conducted at Re = 1.0 × 10
5
with turbulence model is able to predict adverse pressure gradi...
Congxiang Xue· MATEC Web of Conferences· 0 citations
Accurate prediction of aerothermal loads under hypersonic thermochemical nonequilibrium conditions is critical for the design of future atmospheric re-entry vehicles. This study presents a comprehensive numerical investigation of the aerodynamic and aerothermal performance of three representative re-entry configuration...
R. Renane, R. Allouche, Ahmed Neche et al.· International Journal of Mec...· 0 citations
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