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CENTRIFUGAL COMPRESSOR VOLUTE DESIGN SOFTWARE

机译:离心式压缩机蜗壳设计软件

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Volutes are widely used in centrifugal compressors for industrial processes, refrigeration systems, small gas turbines and gas pipelines. However, large costs associated with the volute design and analysis process can be reduced with the introduction of a software design system that ties together both geometry creation and mesh generation having the ultimate intent of improving stage efficiency. Computational Fluid Dynamics (CFD) has become an integral part of engineering design. High quality grids need to be produced as part of the analysis process. Engineers of different expertise may be required to determine volute design constraints and parameters, produce the geometry, and generate a high quality grid. The current research aims to develop and demonstrate a volute design tool that allows design engineers the ability to easily and efficiently generate volute geometry and automate grid generation by means of geometrical constraints using functional relationships. The approach was outlined in [1]. Visualization of volute geometry can be in two-dimensional (2D) or three-dimensional (3D) modes. Control of the diffuser upstream of the scroll, the scroll itself and the conic are totally integrated in the design system. The user can position the conic anywhere in space and control the shape of the conic centroid curve, therefore having complete control over the development of the tongue region. The program will output data for automated grid generation where user can control resulting grid properties. Once the desired design configuration has been determined, the users can output the geometry surfaces and wireframes to a Computer Aided Design (CAD) package for production. Every little detail is also incorporated into the software from volute draft angle, discharge conic centroid shape, to cross section fillet radii. Upon entering all the required constraints and parameters of the volute, the geometry is created in seconds. Grids can be generated in minutes accommodating geometrical changes thus reducing the bottlenecks associated with geometry/grid generation for CFD applications
机译:蜗壳广泛应用于用于工业过程,制冷系统,小型燃气轮机和燃气管道的离心压缩机。然而,通过引入一个软件设计系统,可以减少与蜗壳设计和分析过程相关的大量成本,这些系统在一起与提高阶段效率的最终意图的几何创作和网格生成。计算流体动力学(CFD)已成为工程设计的组成部分。需要生产高质量的网格作为分析过程的一部分。可能需要不同专业知识的工程师来确定蜗壳设计约束和参数,产生几何形状,并产生高质量的网格。目前的研究旨在开发和展示蜗壳设计工具,允许设计工程师通过使用功能关系的几何约束来轻松有效地生成蜗壳几何形状和自动化网格生成。该方法在[1]中概述。蜗壳几何形状的可视化可以是二维(2D)或三维(3D)模式。控制滚动的上游的扩散器,滚动本身和圆锥完全集成在设计系统中。用户可以在空间的任何地方定位圆锥形并控制圆锥质心曲线的形状,因此可以完全控制舌部区域的发展。该程序将输出用于自动网格生成的数据,其中用户可以控制产生的网格属性。一旦确定了所需的设计配置,用户可以将几何表面和线框输出到计算机辅助设计(CAD)封装以进行生产。每一个细节也被纳入软件,从蜗杆触角,排出圆锥形形状,横截面圆角半径。在输入蜗壳的所有所需约束和参数时,几何形状将以秒为单位创建。可以在容纳几何变化的几分钟内产生网格,从而减少与CFD应用程序的几何/网格生成相关的瓶颈

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