DocumentCode
1766559
Title
The Effect of Specific Heat Ratio on Neutron Yield
Author
Sor Heoh Saw ; Perk Lin Chong ; Rawat, R.S. ; Ching, Claudia Tan Li ; Lee, P. ; Talebitaher, A. ; Sing Lee
Author_Institution
INTI Int. Univ., Nilai, Malaysia
Volume
42
Issue
1
fYear
2014
fDate
Jan. 2014
Firstpage
99
Lastpage
104
Abstract
It is known that the radius ratio of a plasma pinch depends on the specific heat ratio γ of the pinch plasma, where radius pinch ratio is defined as: radius of plasma pinch column/radius of anode. The lower the specific heat ratio the lower would be the pinch radius ratio with corresponding increased compression and pinch density. The deuterium plasma focus pinch is invariably fully ionized and has a specific heat ratio of practically the highest possible value of 5/3. If the deuterium plasma focus could have its specific heat ratio reduced below 5/3 we might expect its radius ratio to be correspondingly reduced, increasing the pinch density, thus improving the D-D fusion neutron yield. To demonstrate this effect we run the Lee model code in deuterium but hypothetically fix the specific heat ratio, reducing it at each run. The results show that indeed the radius ratio is reduced, increasing the compression, and the neutron yield is substantially increased. The effect is used to explain the observed neutron yield enhancement when a deuterium plasma focus doped with a small amount of krypton.
Keywords
deuterium; krypton; pinch effect; plasma density; plasma focus; specific heat; D:Kr; Lee model code; anode; deuterium plasma focus pinch; deuterium-deuterium fusion neutron yield; krypton; plama pince density; plasma compression density; plasma pinch column; plasma pinch radius ratio; specific heat ratio; Deuterium; Educational institutions; Equations; Heating; Mathematical model; Neutrons; Plasmas; Deuterium; Lee model code; neutron yield; plasma pinching effect; specific heat ratio;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2013.2288945
Filename
6671457
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