• No results found

Modeling of Heat Pulse Propagation During TESPEL Injection into the LHD Plasma

N/A
N/A
Protected

Academic year: 2020

Share "Modeling of Heat Pulse Propagation During TESPEL Injection into the LHD Plasma"

Copied!
6
0
0

Loading.... (view fulltext now)

Full text

Figure

Fig. 1Profiles of electron density (a), electron heat diffusivity(b), electron temperature (c), u(ρ) = 1/q(ρ) and i(ρ) (d),TESPEL ablation rate (e) on the normalized minor radiusρ used in ASTRA simulations
Fig. 2The measured (ECE –red) and simulated (ASTRA- blue)electron temperature (a) and ΔVol/Vol (b) at different nor-malized minor radii
Fig. 3a that although the simple function for v(ρ, t), the core
Fig. 5Correlation of simulated ΔTe/Te and ΔVol/Vol afterTESPEL injection for LHD shot
+2

References

Related documents

It is observed that the density of the fluid decreases as passes through the orifice plate and then recovers as it flow pass over the orifice section however

Despite the decrease in the unit weight of the mix (due to the lower unit weight of the rubber), the unit weight remained within the acceptable range for the total aggregate

Exposure to electrocauterization smoke within the two groups in the second and third phases caused acute inflammation and significantly increased the signs of inflammation

Therefore, here we have described DNA based molecular assay platforms that could be used for the detection of meat animal species from raw and commercial meat products

The present study evaluated the larvicidal, adulticidal and repellent potential of extracts and essential oils of Zanthoxylum delagoense, Bridelia cathartica Bertol and

Out of 52 patients, 6 patients had only Transverse sinus involvement & 6 patients had involvement of superior saggital sinus+transverse sinus in combination..

NMMHC IIA expression level in the carotid artery vascular tissue and endothelium was significantly higher, as verified by significantly enhanced fluorescence intensity (green and

In case of oxygen ion conductors, current transports due to movement of oxide ions through the crystal lattice. Oxide ion movement is controlled by oxygen ions