Turhan Burak, Jawahar Hasan Kamliya, Gautam Abhishek, Syed Shahjahan, Vakil Gaurang, Rezgui Djamel, Azarpeyvand Mahdi
Department of Aerospace Engineering, University of Bristol, Bristol BS8 1TR, United Kingdom.
Faculty of Engineering, University of Nottingham, Nottingham NG7 2RD, United Kingdom.
J Acoust Soc Am. 2024 May 1;155(5):3242-3253. doi: 10.1121/10.0025990.
This experimental study investigates the effect of blade phase angle on noise attenuation in two adjacent, electronically synchronized propellers. Acoustic measurements were performed in an aeroacoustic wind tunnel with a distributed electric propulsion system that involved the adjustment of relative phase angles of 2-bladed propellers between Δψ = 0° and 90°. Ranges of advance ratios (J = 0-0.73) were investigated at a fixed propeller rotation speed of 5000 rpm. The investigation explored the impact on noise directivity and frequency characteristics. The findings reveal significant reductions in noise directivity and tonal noise at the blade pass frequency (BPF). A relative phase angle of Δψ = 90° demonstrated the maximum noise reduction, with an 8 dB decrease at the first BPF and a 2 dB reduction in overall sound pressure level at J = 0. For in-flow conditions (J > 0), a relative phase angle of Δψ = 90° resulted in significant noise reductions of about 24 dB in the first BPF and 6 dB in overall sound pressure level, compared to Δψ = 0°. These observations offer critical insights into the use of the propeller's relative phase angle as an effective noise control method in the distributed electric propulsion system.
本实验研究探讨了叶片相位角对两个相邻的电子同步螺旋桨噪声衰减的影响。在一个配备分布式电力推进系统的航空声学风洞中进行了声学测量,该系统涉及在Δψ = 0°至90°之间调整双叶片螺旋桨的相对相位角。在5000转/分钟的固定螺旋桨转速下,研究了进速比范围(J = 0 - 0.73)。该研究探讨了对噪声指向性和频率特性的影响。研究结果表明,在叶片通过频率(BPF)处,噪声指向性和音调噪声显著降低。Δψ = 90°的相对相位角显示出最大的降噪效果,在第一个BPF处降低了8分贝,在J = 0时总声压级降低了2分贝。对于流入条件(J > 0),与Δψ = 0°相比,Δψ = 90°的相对相位角在第一个BPF处导致约24分贝的显著降噪,在总声压级方面降低了6分贝。这些观察结果为在分布式电力推进系统中使用螺旋桨的相对相位角作为一种有效的噪声控制方法提供了关键见解。