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ROTATING BLADE TRAILING-EDGE NOISE: EXPERIMENTAL VALIDATION OF ANALYTICAL MODEL

机译:旋转叶片尾缘噪声:分析模型的实验验证

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This paper deals with the experimental validation of an analytical trailing-edge model dedicated to low-speed fans operating in free field. The model is intrinsically related to the aerodynamics of the blades and should lead to a useful fast-running tool to be included in a blade-design process in an industrial context. The investigations are made on a two-bladed low-speed axial fan without shroud, installed inside an anechoic room. The blades are instrumented with two sets of embedded small-size microphones (2.5 mm diam), and the wall-pressure signals are acquired via a slip ring mounted on the fan axis. The chord-based Reynolds number is about 200,000, and the tip Mach number about 0.07. The data base is completed by far-field measurements made with a single microphone on a moving support. The analytical model is based on a previously published extension of Amiet's trailing-edge noise theory. A blade is split into several strips in the spanwise direction, and the model is applied to each strip. For this the input data are interpolated from the measurements performed with the aforementioned sets of microphones. The trailing-edge noise model is more reliable for observer positions within ±30° from the fan-rotation plane.
机译:本文涉及专用于在自由场中运行的低速风扇的分析后缘模型的实验验证。该模型本质上与叶片的空气动力学相关,并且应该导致一种有用的快速运行工具被包含在工业环境中的叶片设计过程中。研究是对安装在消声室内的无护罩的两叶低速轴流风扇进行的。叶片上装有两组嵌入式小型麦克风(直径2.5毫米),并且通过安装在风扇轴上的滑环获取壁压信号。基于和弦的雷诺数约为200,000,尖端马赫数约为0.07。该数据库是通过在移动支架上使用单个麦克风进行的远场测量来完成的。该分析模型基于先前发布的Amiet后缘噪声理论的扩展。将刀片沿翼展方向分割为几个条带,然后将模型应用于每个条带。为此,从使用上述麦克风组进行的测量中内插输入数据。对于距风扇旋转平面±30°内的观察者位置,后缘噪声模型更为可靠。

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