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Design and simulation of pulsatile blood flow energy harvester for powering medical devices

机译:医疗设备动力脉动血流能量采集器的设计与仿真

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In this work, the design and simulation of a novel way to harvest energy from blood flow in superior vena cava (SVC) vein to power impeded medical devices connected with wires like the pacemaker is introduced. The concept depends on the pulsatile blood flow inside SVC to deform micro-piezoelectric beams integrated into the medical device wires. This deformation induced by blood flow generates electrical charges in the piezoelectric beams which could be stored to power or recharge the medical device's battery. The harvesting process is simulated using finite element and MATLAB software. The first part of the simulation is done by a finite element package with fluid-solid interaction (FSI) module to simulate the deformation of the piezoelectric beams due to fluid forces (in this case the blood pressure and velocity profile). In the second part, the deformation of the piezoelectric beams is fed to MATLAB to translate this deformation into electrical charge. The shape and number of the harvester beams are selected so that the blood pressure drop is within the allowed range. Results show that a power of 9 mu W can be generated with 8 harvesters with an area of 2 x 8 mm(2) and arranged at 120 degrees spacing between harvesters. The harvested energy is enough to power the implanted devices and avoid additional battery replacement surgery and infection problems.
机译:在这项工作中,介绍了一种新颖的方法的设计和仿真,该方法可以从上腔静脉(SVC)的静脉血流中获取能量,从而为与起搏器等电线相连的受阻医疗设备供电。该概念取决于SVC内部的脉动血流,以使集成到医疗设备导线中的微压电束变形。血流引起的这种变形会在压电束中产生电荷,这些电荷可以存储以为医疗设备的电池供电或为其充电。使用有限元和MATLAB软件模拟收割过程。模拟的第一部分是通过带有流固耦合(FSI)模块的有限元软件包完成的,以模拟由于流体力(在这种情况下为血压和速度分布)而引起的压电梁的变形。在第二部分中,压电梁的变形被馈送到MATLAB,以将这种变形转化为电荷。选择采集束的形状和数量,使血压下降在允许范围内。结果表明,使用8个面积为2 x 8 mm(2)的收割机,收割机之间的间距为120度,可以产生9μW的功率。收集到的能量足以为植入的设备供电,并避免了额外的电池更换手术和感染问题。

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