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Normal Rack Grid Generation Method for Screw Machines with Large Helix Angles

机译:具有大螺旋角度的螺杆机栅格栅格生成方法

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Improving the efficiency of the screw machine is highly significant for industry.Numerical simulation is an important tool in developing these machines.The 3D computational fluid dynamic simulation can give a valuable insight into the flow parameters of screw machines.However,it is currently difficult to generate high quality computational grids required for screw rotors with large helix angle.This is mainly due to the excessively high cell skewness of the rotors with large helix angel,which would introduce errors in numerical simulation.This paper presents a novel grid generation algorithm used for the screw rotors with large helix angel.This method is based on the principles developed for the grid generation in transverse cross-section.Such mesh is generated by SCORG~TM using normal rack grid generation method which means numerical meshes are generated in a plane normal to the pitch helix line.The mesh lines are then parallel to the helix line and thus an orthogonal mesh will be produced.The main flow and leakage flow directions are orthogonal to the mesh,potentially reducing numerical diffusion.This developed algorithm could also be employed for single screw machines.
机译:提高螺丝机的效率对于工业而言非常重要.Numerical仿真是开发这些机器的重要工具。3D计算流体动态仿真可以对螺丝机的流量参数提供有价值的洞察。但是,它目前难以实现产生具有大螺旋角度的螺钉转子所需的高质量计算网格。本文主要是由于带有大螺旋天使的转子的过高的电池偏斜,这将在数值模拟中引入误差。本文提出了一种用于的新型网格生成算法具有大螺旋天使的螺钉转子。该方法基于为横截面中的网格生成开发的原理。使用普通架网格生成方法SUCH〜TM生成,这意味着在平面正常中产生数值网格。到节距螺旋线。然后网格行并行于螺旋线,因此正交网格将是prod电流和泄漏流量方向与网状物正交,可能降低数值扩散。这是开发的算法也可以用于单螺杆机。

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