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A Study on the Gas-Solid Particle Flows in a Needle-Free Drug Delivery Device 被引量:1

A Study on the Gas-Solid Particle Flows in a Needle-Free Drug Delivery Device
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摘要 Different systems have been used over the years to deliver drug particles to the human skin for pharmaceutical effect. Research has been done to improve the performance and flexibility of these systems. In recent years a unique system called the transdermal drug delivery has been developed. Transdermal drug delivery opened a new door in the field of drug delivery as it is more flexible and offers better performance than the conventional systems. The principle of this system is to accelerate drug particles with a high speed gas flow. Among different transdermal drug delivery systems we will concentrate on the contour shock tube system in this paper. A contoured shock tube is consists of a rupture chamber, a shock tube and a supersonic nozzle section. The drug particles are retained between a set of bursting diaphragm. When the diaphragm is ruptured at a certain pressure, a high speed unsteady flow is initiated through the shock tube which accelerates the particles. Computational fluid dynamics is used to simulate and analyze the flow field. The DPM (discrete phase method) is used to model the particle flow. As an unsteady flow is initiated though the shock tube the drag correlation proposed by Igra et al is used other than the standard drag correlation. The particle velocities at different sections including the nozzle exit are investigated under different operating conditions. Static pressure histories in different sections in the shock tube are investigated to analyze the flow field. The important aspects of the gas and particle dynamics in the shock tube are discussed and analyzed in details.
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第4期340-344,共5页 热科学学报(英文版)
基金 supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MEST) (2011-0017506)
关键词 Shock tube Drug delivery Contoured shock tube Unsteady flow BIOLISTICS 透皮给药系统 计算流体动力学模拟 粒子流 药物输送 超音速喷嘴 非定常流动 装置 气固
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