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Numerical Simulation of Flow Field in Air-Jet Loom Main Nozzle

机译:喷气织机主喷嘴流场的数值模拟

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To improve airflow injection capacity of the main nozzle and decrease backflow phenomenon, a new main nozzle structure with two throats is designed. Negative pressure value and negative pressure zone length are first proposed evaluating the strength of backflow phenomenon. Commercial computational fluid dynamic (CFD) code “Fluent” is performed to simulate the flow field inside and outside the main nozzle. Exit velocity increases about 10 m/s in new main nozzle. Airflow core length of the new main nozzle is 35% higher than that of commonly used main nozzle. Smaller negative pressure value and shorter negative pressure zone length mean a weaker backflow phenomenon in the new main nozzle. Bigger air drag force indicates stronger weft insertion ability in the new main nozzle.
机译:为了提高主喷嘴的气流注入能力并减少回流现象,设计了一种新的带有两个喉管的主喷嘴结构。首先提出了负压值和负压区长度,以评估回流现象的强度。执行商业计算流体力学(CFD)代码“ Fluent”以模拟主喷嘴内部和外部的流场。在新的主喷嘴中,出口速度提高了约10 m / s。新主喷嘴的气流芯长度比常用主喷嘴长35%。较小的负压值和较短的负压区长度意味着在新的主喷嘴中较弱的回流现象。更大的空气阻力表示新主喷嘴中的引纬能力更强。

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