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THREE-DIMENSIONAL CFD ANALYSIS OF MESHING LOSSES IN A SPUR GEAR PAIR

机译:试齿轮对啮合损耗的三维CFD分析

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The reduction of fluid-dynamic losses in high speed gearing systems is nowadays increasing importance in the design of in-novative aircraft propulsion systems, which are particularly focused on improving the propulsive efficiency. Main sources of fluid-dynamic losses in high speed gearing systems are windage losses, inertial losses resulting by impinging oil jets used for jet lubrication and the losses related to the compression and the subsequent expansion of the fluid trapped between gears teeth. The numerical study of the latter is particularly challenging since it faces high speed multiphase flows interacting with moving surfaces, but it paramount for improving knowledge of the fluid behavior in such regions. The current work aims to analyze trapping losses in a gear pair by means of three-dimensional CFD simulations. In order to reduce the numerical effort, an approach for restricting computational domain was defined, thus only a portion of the gear pair geometry was discretized. Transient calculations of a gear pair rotating in an oil-free environment were performed, in the context of conventional eddy viscosity models. Results were compared with experimental data from the open literature in terms of transient pressure within a tooth space, achieving a good agreement. Finally, a strategy for meshing losses calculation was developed and results as a function of rotational speed were discussed.
机译:如今,高速齿轮系统中的流体动力损失的降低越来越重要,在新型飞机推进系统的设计中,特别关注提高推进效率。高速齿轮系统中的流体动力损失的主要来源是风盘损失,通过冲击用于喷射润滑的油喷射和与压缩相关的损失以及齿轮齿之间的流体的损失产生的惯性损失。后者的数值研究特别具有挑战性,因为它面向与移动表面相互作用的高速多相流,但是对于提高这些区域中的流体行为的知识至关重要。目前的工作旨在通过三维CFD仿真分析齿轮对中的捕获损耗。为了减少数值努力,定义了一种限制计算域的方法,因此仅离散化齿轮对几何形状的一部分。在常规涡粘度模型的背景下,进行旋转在无油环境中旋转的齿轮对的瞬态计算。将结果与来自牙齿空间内的瞬态压力的开放文献的实验数据进行了比较,实现了良好的一致性。最后,开发了一种造型损失计算的策略,并讨论了作为转速的函数的结果。

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