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Optimisation of a Low-Speed Wind Tunnel. Analysis and Redesign of Corner Vanes.

机译:低速风洞的优化。角叶片的分析和重新设计。

摘要

This paper includes the experimental study, analysis, redesign and subsequent test of the parts of a closed circuit, low speed wind tunnel which are relevant in terms of total pressure loss. The objective is to lower the energy consumption of this system for given conditions in test chamber, so as to reduce the operational costs. In order to achieve this objective, several tasks were performed as the text shows in its different parts. For these tasks, the ETSIAE wind tunnel was used, although the results of this work can be extrapolated to any wind tunnel with the same characteristics. Part II presents a theoretical previous study of the general running of a closed circuit, low speed wind tunnel, as well as the followed procedure to conduct experimental tests for obtaining the total pressure loss in its parts. Results from these tests and their analysis are included in this part. In part III, the analysis of the influence of corner 1 on the pressure loss takes place. As it is said in this part, corner 1 has great importance in the total pressure loss of the wind tunnel. Therefore, it is the first part that should be modified in order to improve the performances of the wind tunnel. During part IV, an optimised guide vane is designed in order to reduce the pressure loss in corner 1 of the wind tunnel. Software MISES is used to achieve this goal by means of selecting the optimum guide vane. In order to introduce the new guide vane in wind tunnels with affordable costs, the easily constructable criterion is kept during design. For this reason, the guide vane will consist of simple aerodynamic contours. Part V includes some possible improvements for the proposed guide vane, in order to evaluate if there is room for improvement in its design. Finally, part VI includes the tests that were conducted in the wind tunnel with the new guide vane cascade and the analysis of their results, in order to asses whether the proposed design fulfills the requirement of lowering the total pressure loss in the wind tunnel. Part VII gathers the main ideas resulting from the whole work.
机译:本文包括对封闭回路,低速风洞中与总压力损失有关的零件的实验研究,分析,重新设计和后续测试。目的是在给定条件下在测试室内降低该系统的能耗,从而降低运营成本。为了实现此目标,如文本不同部分所示,执行了一些任务。对于这些任务,使用了ETSIAE风洞,尽管这项工作的结果可以推断到具有相同特征的任何风洞中。第二部分介绍了闭路,低速风洞的一般运行的理论上的先前研究,以及随后的过程以进行实验测试以获得其各部分的总压力损失。这些测试的结果及其分析包括在本部分中。在第三部分中,对转角1对压力损失的影响进行了分析。如本部分所述,拐角1在风洞的总压力损失中非常重要。因此,这是为了提高风洞性能而需要修改的第一部分。在第四部分中,设计了优化的导向叶片,以减少风洞拐角1处的压力损失。 MISES软件通过选择最佳的导向叶片来实现此目标。为了以可承受的成本在风洞中引入新的导流叶片,在设计过程中要保持易于构造的标准。因此,导叶将由简单的空气动力学轮廓组成。第五部分对建议的导流叶片进行了一些可能的改进,以评估其设计是否还有改进的余地。最后,第六部分包括使用新型导叶叶栅在风洞中进行的测试及其结果分析,以评估所提出的设计是否满足降低风洞中总压力损失的要求。第七部分收集了整个工作的主要思想。

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