用现代工程软件工具设计工业轴流风机的封闭循环

V. Martynenko
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引用次数: 0

摘要

本文简要介绍了利用现代工程软件设计工业轴流风机装置的方法,讨论了设计过程中各个阶段的技巧,并提出了一些提高计算精度、建模充分性、风机可制造性和可操作性的新方法。该方法包括飞机翼型剖面,进一步安排平面截面形成一个体积翼型,计算流体动力学计算,以及结构强度评估。平面截面计算在已有方法的基础上提供了对未来叶片形状的总体认识。叶片形成技术允许设计任何形状的风扇叶片与单一系列先前计算的平面截面。采用有限元方法对风机叶轮进行固体力学建模,保证了风机叶轮的强度和可靠性。连接的流固相互作用模型允许考虑流体和固体性质的所有影响。所有这些措施形成了设计工业风扇安装的独特封闭循环,工程师和科学家可以使用计算机辅助设计和工程工具来创建轴流风扇和压缩机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Closed Cycle of Designing an Industrial Axial Fan Using Modern Engineering Software Tools
The paper provides a brief tutorial for designing an industrial axial fan installation using modern engineering software, discusses tips and tricks at each stage of the designing process and proposes a number of new approaches which improve calculation accuracy, modelling adequacy, fan manufacturability and operability. The methodology consists of plane airfoil profiling, further arrangement of plane sections for forming a volumetric airfoil, computational fluid dynamics calculations, as well as structural strength evaluation. The plane section calculations provide the general insights of the future blade shape on the basis of the recognized approaches. The blade formation technique allows to design a fan blade of any shape with a single series of previously calculated plane sections. Applying the finite-element method to the modelling of the fan impeller solid mechanics ensures its strength and reliability. The connected fluid-structure interaction model allows taking into account all the effects of fluid and solid nature. All these measures form a unique closed cycle of designing an industrial fan installation which can be used by engineers and scientists who apply computer aided design and engineering tools for the creation of axial fans and compressors.
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