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Advanced Response Surface Modeling of Ares I Roll Control Jet Aerodynamic Interactions

机译:战神I侧倾控制喷气气动相互作用的高级响应面建模

摘要

The Ares I rocket uses roll control jets. These jets have aerodynamic implications as they impinge on the surface and protuberances of the vehicle. The jet interaction on the body can cause an amplification or a reduction of the rolling moment produced by the jet itself, either increasing the jet effectiveness or creating an adverse effect. A design of experiments test was planned and carried out using computation fluid dynamics, and a subsequent response surface analysis ensued on the available data to characterize the jet interaction across the ascent portion of the Ares I flight envelope. Four response surface schemes were compared including a single response surface covering the entire design space, separate sector responses that did not overlap, continuously overlapping surfaces, and recursive weighted response surfaces. These surfaces were evaluated on traditional statistical metrics as well as visual inspection. Validation of the recursive weighted response surface was performed using additionally available data at off-design point locations.
机译:“战神” I火箭使用侧倾控制喷气机。这些喷射流撞击在车辆的表面和突起上时具有空气动力学意义。射流在人体上的相互作用会导致射流本身产生的侧倾力矩增大或减小,从而增加射流效率或产生不利影响。计划并使用计算流体动力学进行了实验测试设计,随后对可用数据进行了后续响应面分析,以表征在Ares I飞行包线上升部分的射流相互作用。比较了四个响应表面方案,包括覆盖整个设计空间的单个响应表面,不重叠的独立扇区响应,连续重叠的表面以及递归加权响应表面。这些表面是根据传统的统计指标以及外观检查进行评估的。递归加权响应面的验证是使用非设计点位置上的其他可用数据进行的。

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    Favaregh Noah M.;

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  • 年度 2010
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