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AMELIA CESTOL Test: Acoustic Characteristics of Circulation Control Wing with Leading- and Trailing-Edge Slot Blowing

机译:AMELIA CESTOL测试:带有前缘和后缘狭缝吹气的循环控制翼的声学特性

摘要

The AMELIA Cruise-Efficient Short Take-off and Landing (CESTOL) configuration concept was developed to meet future requirements of reduced field length, noise, and fuel burn by researchers at Cal Poly, San Luis Obispo and Georgia Tech Research Institute under sponsorship by the NASA Fundamental Aeronautics Program (FAP), Subsonic Fixed Wing Project. The novel configuration includes leading- and trailing-edge circulation control wing (CCW), over-wing podded turbine propulsion simulation (TPS). Extensive aerodynamic measurements of forces, surfaces pressures, and wing surface skin friction measurements were recently measured over a wide range of test conditions in the Arnold Engineering Development Center(AEDC) National Full-Scale Aerodynamics Complex (NFAC) 40- by 80-Ft Wind Tunnel. Acoustic measurements of the model were also acquired for each configuration with 7 fixed microphones on a line under the left wing, and with a 48-element, 40-inch diameter phased microphone array under the right wing. This presentation will discuss acoustic characteristics of the CCW system for a variety of tunnel speeds (0 to 120 kts), model configurations (leading edge(LE) and/or trailing-edge(TE) slot blowing, and orientations (incidence and yaw) based on acoustic measurements acquired concurrently with the aerodynamic measurements. The flow coefficient, Cmu= mVSLOT/qSW varied from 0 to 0.88 at 40 kts, and from 0 to 0.15 at 120 kts. Here m is the slot mass flow rate, VSLOT is the slot exit velocity, q is dynamic pressure, and SW is wing surface area. Directivities at selected 1/3 octave bands will be compared with comparable measurements of a 2-D wing at GTRI, as will as microphone array near-field measurements of the right wing at maximum flow rate. The presentation will include discussion of acoustic sensor calibrations as well as characterization of the wind tunnel background noise environment.
机译:CALLIA,圣路易斯·奥比斯波和佐治亚理工学院的研究人员开发了AMELIA巡航高效短距起降(CESTOL)配置概念,以满足未来对减小视场长度,减少噪音和减少燃油燃烧的要求。 NASA基本航空计划(FAP),亚音速固定翼项目。新颖的配置包括前缘和后缘循环控制机翼(CCW),机翼荚式涡轮推进仿真(TPS)。最近在Arnold工程开发中心(AEDC)国家全尺寸空气动力学综合体(NFAC)40-乘80-Ft风中的各种测试条件下对力,表面压力和机翼表面蒙皮摩擦力进行了广泛的空气动力学测量隧道。对于每种配置,还通过在左翼下方的一条线上的7个固定麦克风和在右翼下方的48个直径40英寸直径的相控麦克风阵列的每种配置中,获取了模型的声学测量值。本演讲将讨论CCW系统在各种隧道速度(0至120 kts),模型配置(前缘(LE)和/或后缘(TE)狭缝吹气)和方向(入射角和偏航)时的声学特性。根据与空气动力学测量同时获得的声学测量结果,流量系数Cmu = mVSLOT / qSW在40 kts时从0到0.88,在120 kts时从0到0.15变化。这里m是缝隙质量流速,VSLOT是缝隙出口速度,q是动压力,SW是机翼表面积,将选定的1/3倍频程带上的指向性与GTRI上2D机翼的类似测量结果进行比较,就像麦克风阵列的近场测量结果一样演示将包括声学传感器校准以及风洞背景噪声环境特征的讨论。

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