首页> 外文会议>2011 IEEE International Instrumentation and Measurement Technology Conference Proceedings >Linear peristaltic pump driven by three magnetic actuators: Simulation and experimental results
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Linear peristaltic pump driven by three magnetic actuators: Simulation and experimental results

机译:由三个电磁执行器驱动的线性蠕动泵:仿真和实验结果

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A bi-directional linear peristaltic pump is presented that avoids use of a rotating step motor and rollers. Fluid displacement, flow and pump function, respectively, are achieved by means of three electro-magnetic actuators. They are electronically controlled and designed to periodically squeeze an elastic tube that contains the liquid. The device reveals a very simple construction, is maintenance free, has very low power consumption, thus accounting for very low manufacture and operation costs. Upon reducing the size of the actuators, it can be easily integrated with micro fluidic arrangements. Flow and pressure pulsation can be reduced by increasing the number of actuators. A finite element-based numerical model has been developed, using the fluid structure interaction (FSI) model. The flow dynamics inside the tube has been treated, using the coupling between the Navier-Stokes and the elastic displacement equations of the elastic tube. The appropriate and optimum timely driving sequence of the actuators, as well as the response characteristics of the physical system, were also numerically evaluated. Experimental results fully agree with the numerical simulation results. The dynamic range of the flow rate was determined as ranging from 7 00μ/min to 79ml/min, while the back pressure varies between 400 mmHg to 14 mmHg.
机译:提出了一种双向线性蠕动泵,该泵避免了使用旋转步进电机和辊子。流体排量,流量和泵功能分别通过三个电磁致动器实现。它们受到电子控制,并设计为定期挤压容纳液体的弹性管。该装置显示出非常简单的构造,免维护,具有非常低的功耗,因此占到了非常低的制造和运营成本。在减小致动器的尺寸时,它可以容易地与微流体装置集成在一起。流量和压力脉动可以通过增加执行器数量来减少。使用流体结构相互作用(FSI)模型,开发了基于有限元的数值模型。使用Navier-Stokes和弹性管的弹性位移方程之间的耦合,对管内的流动动力学进行了处理。还对执行机构的适当和最佳及时驱动顺序以及物理系统的响应特性进行了数值评估。实验结果与数值模拟结果完全吻合。流速的动态范围确定为700μ/ min至79ml / min,而背压在400 mmHg至14 mmHg之间变化。

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