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Experimental investigation of different nozzle designs inside active chilled beams

机译:主动冷梁内部不同喷嘴设计的实验研究

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The aim of this study is to improve the performance of active chilled beams (ACB) by varying the nozzles cross section geometry. Most of the common ACB today have circular nozzles for the primary air plenum, as they are easy to produce and ensure a good performance. The amount of induced secondary air and thereby the performance of the system can be increased by improving the properties of the primary air jet. In other research fields like engine jets or air diffusers, different nozzle designs have been developed to enhance the jets mixing. In this study, a generic test bench is built to investigate different nozzle designs for ACB. The flow field is investigated with particle image velocimetry (PIV) which gives detailed information about the jet’s shape. The designed test bench ensures optical access to the flow field while the induced room air is measured via differential pressure methods. The cross-shaped nozzle achieved the best results among the investigated ones and could significantly increase the induced air amount. An elliptic opening also shows promising results but cannot reach the performance of the circular nozzle in this study. A rectangular nozzle opening turns out to be unsuitable in ACB.
机译:这项研究的目的是通过改变喷嘴的横截面几何形状来改善主动冷梁(ACB)的性能。如今,大多数常见的ACB都具有用于初级空气室的圆形喷嘴,因为它们易于生产并确保良好的性能。可以通过改善一次空气射流的特性来增加二次空气的吸入量,从而提高系统的性能。在诸如发动机喷嘴或空气扩散器的其他研究领域中,已经开发了不同的喷嘴设计以增强喷嘴的混合。在这项研究中,建立了一个通用的测试台来研究ACB的不同喷嘴设计。使用粒子图像测速(PIV)研究流场,该图像提供有关射流形状的详细信息。设计的测试台可确保通过差压法测量室内空气的同时光学进入流场。十字形喷嘴在所研究的喷嘴中获得最佳效果,并且可以显着增加进气量。椭圆形开口也显示出令人鼓舞的结果,但在这项研究中无法达到圆形喷嘴的性能。事实证明矩形喷嘴孔不适用于ACB。

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