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Numerical Simulation of Airflow Characteristics in Interlacerswith Yarn Ducts of Various Cross-Sectional Shapes

机译:异形截面纱管交错层内气流特性的数值模拟

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The aims of the present work are to discuss effects of cross-sectional shapes of yarn duct on the performance of interlacers and to propose knowledge for designing better interlacers by numerical simulations of compressible airflow in the yarn duct of interlacer. We used a commercial CFD software package ANSYS CFX where a finite volume method with an upwind difference scheme is applied. Results obtained are as follows: (1) The yarn opening and tangling action is caused by high dynamic pressure at the yarn duct center. In addition, it is important to form an airflow pattern which makes a yarn frequently go and come between high speed airflow region (jet region) and low speed airflow region (eddy regions) in the middle section of yarn duct for the purpose of producing the interlaced yarn with large number of opening and tangling parts. (2) The yarn opening is done in the region where an air jet issuing from the air jet nozzle hits a yarn directly. In contrast, the path lines of airflow in the yarn duct are spiral and this spiral flow has an effect on the yarn ballooning. (3) The high supplied air pressure makes the dynamic pressure high at the yarn duct center. However, too high supplied air pressure makes the yarn stay at the yarn duct wall opposite to the air jet nozzle for a long time, thus the number of tangles is not increased.
机译:本工作的目的是讨论纱线通道横截面形状对隔层性能的影响,并通过对隔层纱线通道中可压缩气流的数值模拟,提出有关设计更好的隔层的知识。我们使用了商业CFD软件包ANSYS CFX,其中应用了带有逆风方案的有限体积方法。得到的结果如下:(1)纱线开合和缠结是由在纱线通道中心处的高动压引起的。此外,重要的是,为了使纱线的产生,形成使纱线在纱线管的中部的高速气流区域(喷射区域)和低速气流区域(涡流区域)之间频繁往返的气流图案。具有大量开口和缠结部分的交织纱。 (2)在从喷气嘴射出的喷气直接与纱线接触的区域进行纱线的开纤。相反,在纱管中的气流的路径线是螺旋形的,并且这种螺旋形的流动对纱线起球有影响。 (3)较高的供气压力使纱管中心处的动压较高。但是,供给的气压过高会使纱线长时间停留在与空气喷嘴相反的纱线通道壁上,因此缠结的数量不会增加。

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