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Ice Accretion Modeling using an Eulerian Approach for Droplet Impingement

机译:使用欧拉方法对液滴撞击进行积冰建模

摘要

A three-dimensional Eulerian analysis has been developed for modeling droplet impingement on lifting bodes. The Eulerian model solves the conservation equations of mass and momentum to obtain the droplet flow field properties on the same mesh used in CFD simulations. For complex configurations such as a full rotorcraft, the Eulerian approach is more efficient because the Lagrangian approach would require a significant amount of seeding for accurate estimates of collection efficiency. Simulations are done for various benchmark cases such as NACA0012 airfoil, MS317 airfoil and oscillating SC2110 airfoil to illustrate its use. The present results are compared with results from the Lagrangian approach used in an industry standard analysis called LEWICE.
机译:已经开发出了一种三维欧拉分析方法,用于模拟液滴撞击提升体的过程。欧拉模型求解质量和动量守恒方程,以在CFD模拟中使用的同一网格上获得液滴流场特性。对于复杂的配置(例如完整的旋翼飞机),欧拉方法更为有效,因为拉格朗日方法需要大量播种才能准确估算收集效率。针对各种基准情况进行了仿真,例如NACA0012机翼,MS317机翼和摆动式SC2110机翼,以说明其用法。将当前结果与行业标准分析LEWICE中使用的拉格朗日方法的结果进行比较。

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