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Development of a general numerical methodology for CFD analyses in sliding vane machines and application on a mid-size oil injected air compressor

机译:滑动叶片机CFD分析通用数值方法的开发及其在中型喷油空气压缩机中的应用

摘要

The current work presents the development of a numerical methodology to investigate sliding vane rotary machines by means of advanced design tools such as the Computational Fluid Dynamics ones. Although highly limited in this topic, literature shows that the major constraint for the employment of such approaches is the deformation and motion of the rotor mesh, i.e. the computational grid related to the fluid volume between stator, rotor and blades of the positive displacement vane device. To address these issues, a novel grid generation approach is herein proposed and accomplished through a series of steps: geometrical 2D modeling of the machine cross section profile, boundary generation of the rotor mesh and, eventually, distribution of computational nodes using algebraic algorithms with transfinite interpolation, post orthogonalization and smoothing. This methodology was subsequently tested on an industrial vane compressor comparing the results of oil free and oil injected simulations set up in the ANSYS CFX solver. Results show angular pressure evolution inside the compressor vanes, a recirculation region induced by the clearance between the vane tip and the stator as well as the cooling effects of the oil entrained in the cells during the compression phase.
机译:当前的工作提出了一种通过先进的设计工具(例如计算流体动力学)研究滑动叶片旋转机的数值方法的方法。尽管在这个主题上受到很大的限制,但是文献表明采用这种方法的主要限制是转子网格的变形和运动,即与正排量叶片装置的定子,转子和叶片之间的流体体积相关的计算网格。 。为了解决这些问题,本文提出了一种新颖的网格生成方法,并通过一系列步骤来完成:机器横截面轮廓的几何2D建模,转子网格的边界生成以及最终使用具有超限的代数算法进行计算节点的分布插值,后正交化和平滑化。随后在工业叶片压缩机上对该方法进行了测试,比较了在ANSYS CFX求解器中设置的无油和注油模拟结果。结果表明,压气机叶片内部的角压力逐渐增大,叶片尖端与定子之间的间隙引起的再循环区域,以及在压缩阶段夹带在隔室中的机油的冷却效果。

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