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Modulation of viscoelastic fluid response to external body force

机译:黏弹性流体对体外力的响应调制

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摘要

Transient flow responses of viscoelastic fluids to different external body forces are studied. As a non-Newtonian fluid, the viscoelastic fluid exhibits significant elastic response which does not raise in Newtonian fluid. Here, we investigate the transient response of a viscoelastic Poiseuille flow in a two-dimensional channel driven by external body forces in different forms. The velocity response is derived using the Oldroyd-B constitutive model in OpenFOAM. Responses in various forms like damped harmonic oscillation and periodic oscillation are induced and modulated depending on the fluid intrinsic properties like the viscosity and the elasticity. The external body forces like constant force, step force and square wave force are applied at the inlet of the channel. Through both time domain and frequency domain analysis on the fluid velocity response, it is revealed that the oscillation damping originates from the fluid viscosity while the oscillation frequency is dependent on the fluid elasticity. The velocity response of the applied square waves with different periods shows more flexible modulation signal types than constant force and step force. An innovative way is also developed to characterize the relaxation time of the viscoelastic fluid by modulating the frequency of the square wave force.
机译:研究了粘弹性流体对不同外力的瞬态流动响应。作为非牛顿流体,粘弹性流体表现出显着的弹性响应,而在牛顿流体中不会升高。在这里,我们研究了由外力以不同形式驱动的二维通道中粘弹性泊瓦流的瞬态响应。速度响应是使用OpenFOAM中的Oldroyd-B本构模型得出的。根据流体的固有特性(如粘度和弹性),可以感应和调制各种形式的响应,如阻尼谐波振荡和周期性振荡。诸如恒定力,步进力和方波力之类的外部力施加在通道的入口。通过对流体速度响应的时域和频域分析,发现振动阻尼起因于流体的黏度,而振动频率则取决于流体的弹性。与恒定力和步进力相比,不同周期施加的方波的速度响应显示出更灵活的调制信号类型。还开发了一种创新方法,通过调制方波力的频率来表征粘弹性流体的弛豫时间。

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