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CONDUIT FLOW CONTROL THROUGH MAGNETORHEOLOGY

机译:通过磁流变学进行流量控制

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摘要

In this paper it is addressed the problem of flow stability in conduits when an essentially steady flow is perturbed by undesirable fluctuations of the pressure gradient. This problem may arise when working conditions in conduit systems induce sporadic or permanent oscillations of the pressure at the end of some conduits. In cases where the flow occurs in closed circuits and it is important to reduce or eliminate flow fluctuations, it is possible to impose flow control by making use of the magnetorheological properties of some fluids. An analytical model is presented in which the working fluid is assumed to be affected by a magnetic field whose strength is proportional to the instantaneous rate of flow. In this way, it is shown that oscillatory perturbations of an otherwise constant pressure gradient can be damped away through the synchronized oscillations of the yield stress generated in the fluid by the magnetic field. The paper includes the solution of the analytical model and several examples of applications.
机译:在本文中,解决了当压力梯度的不期望波动干扰基本稳定的流量时导管中的流量稳定性问题。当导管系统中的工作条件引起某些导管末端的压力偶发性或永久性波动时,可能会出现此问题。在闭环中发生流动并且减少或消除流动波动很重要的情况下,可以通过利用某些流体的磁流变特性来施加流动控制。提出了一个分析模型,其中假定工作流体受到磁场的影响,该磁场的强度与瞬时流量成正比。以这种方式表明,通过磁场在流体中产生的屈服应力的同步振荡,可以抑制原本恒定的压力梯度的振荡扰动。本文包括分析模型的解决方案和一些应用示例。

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