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Modelling of DBD plasma actuator for controlling noise from a tandem cylinders configuration

机译:DBD等离子致动器的建模,用于控制来自串联气缸配置的噪声

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Aeroacoustic noise, generated by aircraft landing gears during the take-off or landing manoeuvres, is considered excessive, causing environmental concerns for the people living close to airports. Therefore, there is an increasing need to innovate new technologies to reduce landing gear noise. For noise reduction, it is primarily important to understand the mechanism of flow-induced landing-gear noise generation and, further, to adapt relevant new technologies to the system in order to reduce noise levels by means of effective manipulation of related aerodynamic flow features. Dielectric Barrier Discharge (DBD) plasma actuators have shown efficiency to control flow separation from bluff bodies, consequently, mitigating subsequent vortex motions and noise generation. In the present paper, a simplified landing-gear model represented by a tandem-cylinders configuration has been used. The airflow has been simulated using hybrid RANS/LES. Effects of the plasma actuation are modelled using two different models. These include the Suzen & Huang model, which solves for the electric field and charge density fields in order to obtain the body force, and the Greenblatt model, which simply assumes that the body force decays exponentially both downstream and normal to the actuator.
机译:飞机起落架在起飞或着陆操作过程中产生的航空声噪声被认为过大,对居住在机场附近的人们造成了环境问题。因此,越来越需要创新以降低起落架噪声的新技术。对于降噪,重要的是了解气流引起的起落架噪声产生的机理,并且进一步使相关的新技术适应该系统,以便通过有效操纵相关的空气动力学流动特性来降低噪声水平。介电势垒放电(DBD)等离子体致动器已显示出控制流体与钝体分离的效率,从而减轻了随后的涡旋运动和噪声产生。在本文中,已经使用了由双缸配置所代表的简化的起落架模型。使用混合RANS / LES模拟了气流。使用两个不同的模型来模拟等离子体致动的效果。其中包括Suzen&Huang模型(求解电场和电荷密度场以获得体力)和Greenblatt模型(仅假设体力在执行机构的下游和法向呈指数衰减)。

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