The safety of rotorcraft operating in cold environments is jeopardised by the possibility of ice accretion on the rotor blades. Eventually, ice can shed from the blade due to the high centrifugal forces and impact other parts of the rotorcraft or unbalance the rotor. To establish the shedding time and location for rotorcraft, a robust and efficent numerical multi-step icing simulations tool is presented here for predicting the shedding phenomenon. A volume-mesh based approach is used to allow for representing the ice shape. In order to increase the robustness of the method, an interpolation procedure is implemented which establishes the possible occurrence of the shedding event and restricts the search domain. Ice shapes along the blades are computed by means of two-dimensional ice accretion simulations: ice shapes are then interpolated over the blade span. Numerical results compares fairly well, in terms of shedding time and location, to the experimental ones obtained in the AERTS test facility, thus demonstrating the soundness of the present approach.
翻译:在寒冷环境中运行的旋翼轮船的安全因螺旋桨上可能出现冰积而受到损害。最终,由于离心力高,或对转子的其他部分产生影响,冰可能会从刀片中流出。为确定转子车的停产时间和位置,在此提出一个强大而精准的多步数字化模拟工具,以预测抛出现象。采用了以体积为单位的方法来代表冰的形状。为了提高方法的稳健性,采用了一种内插程序,确定可能发生的舍入事件,并限制搜索范围。刀片上的冰形通过二维冰弧形模拟方法计算:然后在刀片上插入冰形。从时间和位置看,数字结果与AERTS测试设施获得的实验结果相比相当好,从而显示了目前方法的健全性。