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Multidimensional open system for valveless pumping

机译:用于无阀泵送的多维开放系统

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In this study, we present a multidimensional open system for valveless pumping (VP). This system consists of an elastic tube connected to two open tanks filled with a fluid under gravity. The two-dimensional elastic tube model is constructed based on the immersed boundary method, and the tank model is governed by a system of ordinary differential equations based on the work-energy principle. The flows into and out of the elastic tube are modeled in terms of the source/sink patches inside the tube. The fluid dynamics of this system is generated by the periodic compress-and-release action applied to an asymmetric region of the elastic tube. We have developed an algorithm to couple these partial differential equations and ordinary differential equations using the pressure-flow relationship and the linearity of the discretized Navier-Stokes equations. We have observed the most important feature of VP, namely, the existence of a unidirectional net flow in the system. Our computations are focused on the factors that strongly influence the occurrence of unidirectional flows, for example, the frequency, compression duration, and location of pumping. Based on these investigations, some case studies are performed to observe the details of the flow features.
机译:在这项研究中,我们提出了一种用于无阀泵送(VP)的多维开放系统。该系统由一根弹性管组成,该弹性管连接到两个在重力作用下充满流体的开放式储罐中。基于沉浸边界法构造二维弹性管模型,并基于功能原理,由常微分方程组控制储罐模型。流入和流出弹性管的流是根据管内的源/汇块进行建模的。该系统的流体动力学是通过施加到弹性管的非对称区域的周期性压缩和释放作用产生的。我们已经开发了一种算法,可以使用离散的Navier-Stokes方程的压力-流量关系和线性来耦合这些偏微分方程和常微分方程。我们已经观察到VP的最重要特征,即系统中存在单向净流。我们的计算集中在对单向流动发生有重大影响的因素上,例如频率,压缩持续时间和泵送位置。基于这些调查,进行了一些案例研究以观察流动特征的细节。

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