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首页> 外文期刊>Journal of mechanics in medicine and biology >CFD MODELING OF HIGH SPEED LIQUID JETS FROM AN AIR-POWERED NEEDLE-FREE INJECTION SYSTEM
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CFD MODELING OF HIGH SPEED LIQUID JETS FROM AN AIR-POWERED NEEDLE-FREE INJECTION SYSTEM

机译:空针无针注射系统高速液体射流的CFD建模

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摘要

A liquid jet injector is a biomedical device intended for drug delivery. Medication is delivered through a fluid stream that penetrates the skin. This small diameter liquid stream is created by a piston forcing a fluid column through a nozzle. These devices can be powered by springs or compressed gas. In this study, a CFD simulation is carried out to investigate the fluid mechanics and performance of needle free injectors powered specifically by compressed air. The motion of the internal mechanisms of the injector which propels a liquid jet through an orifice is simulated by the moving boundary method and the fluid dynamics is modeled using LES/VOF techniques. In this paper, numerical results are discussed by comparing the fluid stagnation pressures of the liquid jet with previously published experimental measurements obtained using a custom-built prototype of the air-powered needle free liquid injector. Performance plots as a function of various injector parameters are presented and explained.
机译:液体喷射注射器是旨在用于药物输送的生物医学装置。药物通过渗透皮肤的流体流传递。这种小直径的液体流是由活塞迫使流体柱通过喷嘴产生的。这些设备可以由弹簧或压缩气体驱动。在这项研究中,进行了CFD模拟,以研究专门由压缩空气驱动的无针注射器的流体力学和性能。通过移动边界方法模拟了推动液体喷射通过孔口的喷射器内部机构的运动,并使用LES / VOF技术对流体动力学进行了建模。在本文中,通过将液体射流的流体停滞压力与使用气动无针液体注射器的定制原型获得的先前发表的实验测量值进行比较,讨论了数值结果。给出并说明了各种喷射器参数的性能曲线。

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