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Shock and Current Layer Structure in an Electromagnetic Shock Tube

 

作者: George C. Vlases,  

 

期刊: Physics of Fluids(00319171)  (AIP Available online 1967)
卷期: Volume 10, issue 11  

页码: 2351-2359

 

ISSN:0031-9171

 

年代: 1967

 

DOI:10.1063/1.1762043

 

出版商: AIP

 

数据来源: AIP

 

摘要:

The problem of separation of the shock wave and current sheet in magnetically driven shock tubes is examined. Experiments were performed in cold, unmagnetized hydrogen in a large, fast inverse pinch shock tube in which the simple ``skin‐depth criterion'' for obtaining separation was satisfied. Direct measurements of the shock by piezoelectric gauges, and the current sheet by magnetic probes, show that separation nevertheless did not occur. Although the shock wave was located at the very front of the current layer, the layer became much thicker at low pressures than predicted by the skin depth theory. Various mechanisms involved in the emergence of a shock from a current layer, and in the thickening of this layer, are discussed.

 

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