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Design of the Subsonic Aircraft Roughness Glove Experiment (SARGE)

机译:亚音速飞机粗糙度手套实验(SARGE)设计

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The Subsonic Aircraft Roughness Glove Experiment (SARGE) is a hybrid natural laminar flow and passive laminar flow control flight test that will be carried out under the auspices of the NASA Environmentally Responsible Aviation initiative. Texas A&M has completed the initial aerodynamic design of a wing glove to be installed on a NASA Gulfstream III testbed. The primary goals of the SARGE experiment are to 1) achieve natural laminar flow to 0.60 chord on the suction side at up to 22 million chord Reynolds number and 2) at conditions of at least 22 million chord Reynolds number, demonstrate the effectiveness of passive Discrete Roughness Elements in extending laminar flow beyond the natural transition location. Computations of the flight test configuration flowfield and the initial design of a laminar flow wing glove are presented, followed by a description of the proposed flight test experiment as well as the instrumentation suite. The initial design is shown to marginally fulfill the design requirements. Efforts are underway to optimize the design to improve spanwise flow uniformity and provide better stabilization of streamwise instabilities.
机译:亚源飞机粗糙度手套实验(SARGE)是混合自然层流动和被动层流控制飞行试验,该流动控制飞行试验将在NASA环保航空倡议的主动台下进行。德州A&M已经完成了翼手套的初始空气动力学设计,以安装在NASA Gulfstream III测试平台上。 SAGGE实验的主要目标是1)在最多2200万和弦雷诺数的条件下,在高达2200万和弦雷诺数的条件下实现自然层流量为0.60百万弦雷诺数和2),证明了被动离散的有效性在延伸除了自然过渡位置之外的层流的粗糙度元素。出现了飞行试验配置流场和层流翼手套的初始设计的计算,然后描述了所提出的飞行试验实验以及仪表套件。初始设计显示为边际满足设计要求。正在进行努力来优化设计,以改善枝条流均匀性,并提供更好的流动不稳定性。

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