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A Real-Time Method for Estimating Viscous Forebody Drag Coefficients

机译:一种估计粘性前体阻力系数的实时方法

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摘要

This paper develops a real-time method based on the law of the wake for estimating forebody skin-friction coefficients. The incompressible law-of-the-wake equations are numerically integrated across the boundary layer depth to develop an engineering model that relates longitudinally averaged skin-friction coefficients to local boundary layer thickness. Solutions applicable to smooth surfaces with pressure gradients and rough surfaces with negligible pressure gradients are presented. Model accuracy is evaluated by comparing model predictions with previously measured flight data. This integral law procedure is beneficial in that skin-friction coefficients can be indirectly evaluated in real-time using a single boundary layer height measurement. In this concept a reference pitot probe is inserted into the flow, well above the anticipated maximum thickness of the local boundary layer. Another probe is servomechanism-driven and floats within the boundary layer. A controller regulates the position of the floating probe. The measured servomechanism position of this second probe provides an indirect measurement of both local and longitudinally averaged skin friction. Simulation results showing the performance of the control law for a noisy boundary layer are then presented.
机译:本文提出了一种基于尾流定律的实时方法来估计前体的皮肤摩擦系数。不可压缩的苏醒定律方程在边界层深度上进行数值积分,以开发一种工程模型,该模型将纵向平均的皮肤摩擦系数与局部边界层厚度相关联。提出了适用于具有压力梯度的光滑表面和具有可忽略的压力梯度的粗糙表面的解决方案。通过将模型预测与先前测得的飞行数据进行比较来评估模型的准确性。该积分定律程序的优势在于,可以使用单个边界层高度测量值间接实时评估皮肤摩擦系数。在此概念中,将参考皮托管探头插入流中,该高度远高于预期的局部边界层的最大厚度。另一个探针是伺服机制驱动的,并在边界层内浮动。控制器调节浮动探针的位置。第二个探头测得的伺服机构位置可间接测量局部和纵向平均皮肤摩擦力。仿真结果显示了控制规则对嘈杂边界层的性能。

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