Focus Fusion: Overview of Progress Towards p-B11 Fusion with the Dense Plasma Focus

被引:0
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作者
Eric J. Lerner
Syed M. Hassan
Ivana Karamitsos-Zivkovic
Rudolph Fritsch
机构
[1] LPPFusion Inc,
来源
Journal of Fusion Energy | 2023年 / 42卷
关键词
Dense plasma focus; Quantum magnetic field effect; Fusion energy; Aneutronic fusion; p-B; fuel;
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摘要
LPPFusion is developing a source of fusion energy using the dense plasma focus device and p-B11 fuel, a combination we call Focus Fusion. So far, this project has led to the achievement of the highest confined ion energies of any fusion experiment (> 200 keV) as well as, recently, the lowest impurities of any fusion plasma. Among privately-funded fusion efforts, our experiments have achieved the highest ratio of fusion energy generation to device energy input (wall-plug efficiency) and the highest nτT product of 3.4 × 1020 keV-s/m3. Our calculations and simulations indicate that the quantum magnetic field effect will allow a great reduction in bremsstrahlung radiation with p-B11 fuel. For commercial fusion, this approach has several major advantages. The small size and simplicity of design of the DPF can lead to 5 MW generators that are much cheaper than any existing energy source, that can be manufactured by mass production and that can be located close to loads. It shares with other p-B11 approaches a lack of neutron damage and radioactive waste. Direct energy conversion of the ion beam and x-rays produced by the device avoids the high costs associated with thermal cycles. With adequate, but still modest, financial resources we anticipate working prototype generators could be ready for production by 2026–2030.
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