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A Critical Review of Computational Methods and Their Application in Industrial Fan Design

机译:计算方法及其在工业风机设计中的应用的综述

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Members of the aerospace fan community have systematically developed computational methods over the last five decades. The complexity of the developed methods and the difficulty associated with their practical application ensured that, although commercial computational codes date back to the 1980s, they were not fully exploited by industrial fan designers until the beginning of the 2000s. The application of commercial codes proved to be problematic as, unlike aerospace fans, industrial fans include electrical motors and other components from which the flow will invariably separate. Consequently, industrial fan designers found the application of commercial codes challenging. The decade from 2000 to 2010 was focused on developing techniques that would facilitate converged solutions that predicted the fans’ performance characteristics over the stable part of their operating range with reasonable accuracy, using a practical computational effort. In this paper, we focus on elucidating aspects of the flow physics that one cannot easily study in a laboratory environment, discussing the challenges involved and the relative merits of the available modelling techniques. The paper ends with a discussion of the practical problems associated with the use of commercial codes in a development environment and finally the legislation that is driving the need for aerospace style computation methods.
机译:过去五年来,航空航天风扇社区的成员已经系统地开发了计算方法。所开发方法的复杂性以及与它们实际应用相关的困难确保了尽管商业计算代码可以追溯到1980年代,但直到2000年代初,工业风扇设计人员才充分利用它们。商业代码的应用被证明是有问题的,因为与航空风扇不同,工业风扇包括电动机和其他组件,气流将始终与之分离。因此,工业风扇设计师发现商业代码的应用具有挑战性。从2000年到2010年的十年间,我们专注于开发能够促进融合​​解决方案的技术,这些方法可以通过实际的计算工作,在合理范围内以合理的精度预测风扇的性能特征。在本文中,我们着重于阐明人们在实验室环境中不易研究的流动物理学方面,讨论所涉及的挑战以及可用建模技术的相对优点。本文最后讨论了与在开发环境中使用商业代码相关的实际问题,最后讨论了推动对航空航天样式计算方法的需求的立法。

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