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Frequency response analysis of nonisothermal film blowing process using transient simulations

机译:非等温吹膜过程的频率响应分析

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摘要

Frequency response of the nonisothermal viscoelastic film blowing process to the ongoing sinusoidal disturbances has been investigated using transient simulation techniques. Of the many state variables exhibiting resonant peaks with the input frequency, amplitude ratio of the film cross-sectional area at the freezeline height has been used as an indicator of the process sensitivity. The effects of operating conditions and viscoelasticity on the sensitivity have been scrutinized around the middle point of three multiple steady states under the given conditions. The sensitivity results have been interpreted through their correlation with results from linear stability analysis. Increasing draw ratio generally makes the system more sensitive to sinusoidal disturbances, whereas the cooling induces more sensitive or less sensitive system, according to the location of a steady state. Also, the viscoelasticity makes the system of extensional thickening fluids more sensitive at low Deborah number and less sensitive at high Deborah number.
机译:非瞬态粘弹性薄膜吹制过程对正在进行的正弦波扰动的频率响应已使用瞬态仿真技术进行了研究。在输入频率下出现共振峰的许多状态变量中,在冻结线高度处的薄膜横截面积的振幅比已被用作过程灵敏度的指标。在给定条件下,已考察了三个多重稳态的中点附近的操作条件和粘弹性对灵敏度的影响。通过将灵敏度结果与线性稳定性分析的结果进行相关性来解释灵敏度结果。增大的拉伸比通常会使系统对正弦波干扰更加敏感,而根据稳态的位置,冷却会导致系统更加敏感或更不敏感。而且,粘弹性使得拉伸增稠流体系统在低德博拉数下更敏感,而在高德博拉数下不那么敏感。

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