scholarly journals The use of negative pressure wave treatment in athlete recovery

Author(s):  
A Jansen van Rensburg ◽  
DC Janse van Rensburg ◽  
HE van Buuren ◽  
CC Grant ◽  
L Fletcher
2015 ◽  
Vol 47 ◽  
pp. 14-15
Author(s):  
Dina Christina Janse van Rensburg ◽  
Audrey Jansen van Rensburg ◽  
Hannah Oguz ◽  
Lizelle Fletcher ◽  
Catharina C. Grant

2015 ◽  
Vol 47 ◽  
pp. 574
Author(s):  
Dina Christina Janse van Rensburg ◽  
Audrey Janse van Rensburg ◽  
Hannah Oguz ◽  
Lizelle Fletcher ◽  
Catharina C. Grant

Author(s):  
Dongliang Yu ◽  
Laibin Zhang ◽  
Liang Wei ◽  
Zhaohui Wang

The appearance of a rupture, leak or damage in the long-distance oil & gas pipeline, which could cause a leak, usually generates a non-linear & chaotic negative pressure wave signal. By properly interpreting the negative pressure wave signature, it is possible to detect a leak along the pipeline. Most traditional noise reduction methods are established based on the linear system, which are not in line with the actual non-linear & chaotic situation. Therefore, the weak negative pressure wave signals, generated by small leaks, are often filtered out and cause false alarm and failure alarm. In order to resolve the problem, this paper uses the non-linear projective algorithm for noise reduction. First, the weak negative pressure wave signal series would be reconstructed using delay coordinates, in the high dimensional phase space, the background signal, the negative pressure wave signal and the noise signal are separated into different sub-spaces. Through the reconstruction of sub-spaces, the weak pressure wave signal can be isolated from the background signal as well as the random noise component reduced.


2013 ◽  
Vol 313-314 ◽  
pp. 1225-1228 ◽  
Author(s):  
Chun Xia Hou ◽  
Er Hua Zhang

Pipeline leak lead to huge economic losses and environmental pollution. Leak detection system based on single sensor negative pressure wave often causes false alarm. In this paper the double sensor method is adopted to exclude false alarm by determining the propagation direction of the pressure wave. In order to remove the inverse coherent interference caused by pump running, the phase difference of primary low frequency component is used to identify the sign of the time delay between the double sensors. The experiment shows the mothod is effective.


Sign in / Sign up

Export Citation Format

Share Document