首页> 外文会议>IEEE Conference on Decision and Control >Input-output analysis of the 2D/3C model in channel flows of viscoelastic fluids
【24h】

Input-output analysis of the 2D/3C model in channel flows of viscoelastic fluids

机译:粘弹性液通道流动中的2D / 3C模型的输入 - 输出分析

获取原文

摘要

Energy amplification in streamwise constant channel flows of viscoelastic fluids is studied from an input-output point of view by analyzing the responses of the velocity components to spatio-temporal body forces. These inputs into governing equations are assumed to be harmonic in spanwise direction and stochastic in the wall-normal direction and in time. An explicit Reynolds number scaling of frequency responses from different input to different output components is developed. It is found that some of the components of frequency response peak at nonzero temporal frequencies. This is in contrast to the Newtonian fluids, where peaks are always observed at zero frequency, suggesting that viscoelastic effects introduce additional timescales and promote development of flow patterns with smaller time constants than in Newtonian fluids. The frequencies, corresponding to the peaks in the components of frequency response, decrease with an increase in viscosity ratio and show maximum for non-zero elasticity number. At low Reynolds numbers, the energy density decreases monotonically when the elasticity number is sufficiently small, but shows a maximum when the elasticity number becomes sufficiently large, suggesting that elasticity can amplify disturbances even when inertial effects are weak.
机译:通过分析速度分量与时空体力的响应来研究粘弹性流体的流动恒定通道流动的能量放大。假设这些输入在控制方程中以跨越方向和随机在壁正方体方向上的谐波。开发了从不同输入到不同输出组件的频率响应的显式雷诺数缩放。发现非零时间频率下频率响应峰的一些组件。这与牛顿流体形成对比,其中始终以零频率观察到峰值,表明粘弹性效果引入额外的时间尺度,并促进流动模式的发展,而不是牛顿流体较小的时间常数。对应于频率响应组件中的峰值的频率,随着粘度比的增加而减小,并且显示非零弹性数的最大值。在低雷诺数时,当弹性数量足够小时,能量密度单调地减小,但是当弹性数量变得足够大时,最大值显示出最大值,表明弹性即使在惯性效应较弱时也可以放大干扰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号