A Low Channel Number Sensing Approach for an Ethnic Specific Labour Immanency Prediction using Bio-Electromagnetism

Author(s):  
Ejay Nsugbe ◽  
Ibrahim Sanusi ◽  
Olusayo Obajemu ◽  
Oluwarotimi Williams Samuel ◽  
Mojisola Grace Asogbon ◽  
...  
Keyword(s):  
2001 ◽  
Vol 19 (11) ◽  
pp. 1759-1767 ◽  
Author(s):  
K. Motoshima ◽  
N. Suzuki ◽  
K. Shimizu ◽  
K. Kasahara ◽  
T. Kitayama ◽  
...  

Author(s):  
Y. J. Zhang ◽  
G. H. Su ◽  
S. Z. Qiu ◽  
X. B. Yang

Two-phase flow instability of the parallel multi-channel system has been studied under rolling motion condition in this paper. Based on the homogeneous flow model with considering the rolling motion condition, the parallel multi-channel model is established by using the control volume integrating method. Gear method is used to solve the system equations. The influences of the inlet and upward sections and the heating power on the flow instability under rolling motion condition have been analyzed. The marginal stability boundary (MSB) under rolling motion condition is obtained and the unstable regions occur in both low and high equilibrium quality regions. The region with low inlet subcooling is also instable. In high equilibrium quality region, the multiplied period phenomenon is found and the chaotic phenomenon appears at the MSB. The oscillation part of mass flow rate (amplitude) may be averaged into other channels so that the influence of rolling motion is weakened. But the stability of multi-channel system is independent of the channel number and the increase of the channel number could only make the amplitude more uniformity in channels.


2017 ◽  
Vol 2017 ◽  
pp. 1-13 ◽  
Author(s):  
Hao Shi ◽  
Qi Cai ◽  
Yuqing Chen

The best estimation process of AP1000 Nuclear Power Plant (NPP) requires proper selections of parameters and models so as to obtain the most accurate results compared with the actual design parameters. Therefore, it is necessary to identify and evaluate the influences of these parameters and modeling approaches quantitatively and qualitatively. Based on the best estimate thermal-hydraulic system code RELAP5/MOD3.2, sensitivity analysis has been performed on core partition methods, parameters, and model selections in AP1000 Nuclear Power Plant, like the core channel number, pressurizer node number, feedwater temperature, and so forth. The results show that core channel number, core channel node number, and the pressurizer node number have apparent influences on the coolant temperature variation and pressure drop through the reactor. The feedwater temperature is a sensitive factor to the Steam Generator (SG) outlet temperature and the Steam Generator outlet pressure. In addition, the cross-flow model nearly has no effects on the coolant temperature variation and pressure drop in the reactor, in both the steady state and the loss of power transient. Furthermore, some fittest parameters with which the most accurate results could be obtained have been put forward for the nuclear system simulation.


2012 ◽  
Vol 15 (7) ◽  
pp. 998-1006 ◽  
Author(s):  
Jiansong Sheng ◽  
Liming He ◽  
Hongwei Zheng ◽  
Lei Xue ◽  
Fujun Luo ◽  
...  

Author(s):  
Bruce Kim ◽  
Haixin Zhu ◽  
Jiping He

This paper presents a novel structure for a neural sensor using a surface micromachining technique with dry-etch benzocyclobutene selected as the substrate and packaging material. The finished device has intracortical recording sites on both sides and epidural recording sites on the front. The design doubled the total channel number of recording sites compared with the conventional single-sided electrode structure. The developed process shows reliable, high fabrication yield, and preliminary fabrication and impedance test results suggest that this newly developed neural sensor could improve the performance and efficiency of neural recording.


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