DocumentCode :
3593176
Title :
Experimental study on shock tube flows for the application of needle-free drug delivery
Author :
Guang Zhang ; Jinouk Park ; Gyuwan Kim ; Heuy Dong Kim
Author_Institution :
Dept. of Mech. Eng., Andong Nat. Univ., Andong, South Korea
fYear :
2014
Firstpage :
1
Lastpage :
5
Abstract :
Recently, an innovative drug delivery system has been developed to deliver drug particles to the human shin without using any external needles. In order to obtain enough momentum, drug particles are accelerated by means of high speed gas produced in a Contoured Shock Tube (CST), so that particles can penetrate through the outer layer of the skin. The CST system consists of a classical shock tube with two diaphragms and an expanded supersonic nozzle. Schlieren visualization technique was used to observe shock waves in a CST of needle-free drug delivery system. The visualization of density gradient between the front and the behind of the shock wave is obtained from 2D density stratified flow in the shock tube. The structure and propagation of Shock waves were obviously observed in present schlieren images. In the pressure measurement, six high sensitive pressure transducers are used to record the pressure change as the shock wave moves through the test section, from which data on shock wave propagation was obtained.
Keywords :
acoustic wave propagation; confined flow; diaphragms; drug delivery systems; flow visualisation; nozzles; pipe flow; pressure transducers; schlieren systems; shock waves; supersonic flow; 2D density stratified flow; CST system; contoured shock tube; density gradient visualization; diaphragms; drug particles; expanded supersonic nozzle; high sensitive pressure transducers; high speed gas; human shin; innovative drug delivery system; needle-free drug delivery system; schlieren images; schlieren visualization technique; shock wave propagation; shock wave structure; Contoured Shock Tube; Schlieren Visualization Technique; Shock Wave Propagation; Supersonic Nozzle; Unsteady Flow;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Fluid Machinery and Fluid Engineering, 2014 ISFMFE - 6th International Symposium on
Print_ISBN :
978-1-84919-907-0
Type :
conf
DOI :
10.1049/cp.2014.1230
Filename :
7124151
Link To Document :
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