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- W2076247493 abstract "The nuclear burn phase of a high beta beta =0.9, high density, n=1023m-3 5 keV plasma of radius rp=2.4 ralpha is studied with a one-dimensional (radial) computer program. Radial heat conduction is reduced by application of low density (1021m-3) cold plasma blanket between the hot burning core plasma and the wall. A finite length L is simulated in the code by extracting energy from the plasma at a rate corresponding to multiple mirror end losses. The calculations suggest a 450 m long plasma column can reach a scientific Q equal to two. For this particular length the radial and axial energy losses are equal. The wall loading integrated over the burn cycle amounts to 0.73 MJ m-2 on a wall of radius 0.1 m. It is verified that Q scales proportional to L2, as is expected in case of multiple mirror confinement of plasma. In case L>or=2000 m, a self sustained burning plasma column becomes possible." @default.
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- W2076247493 date "1980-03-01" @default.
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- W2076247493 title "Dynamic behaviour of linear magnetic solenoid reactor plasmas" @default.
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- W2076247493 doi "https://doi.org/10.1088/0032-1028/22/3/002" @default.
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