A Computational Magnetohydrodynamic Model of a Gasdynamic Fusion Space Propulsion System
[摘要] This work advances the gasdynamic mirror (GDM) fusion space propulsion system concept by testing the potential of an advanced aneutronic fusion fuel combination of proton−11boron and evaluating GDMs operating at less than breakeven being driven with nuclear electric reactors. Finding neither option to be a panacea, the author moves forward in developing an ideal 3-D magnetohydrodynamic (MHD) computational model for simulating concept GDMs. The challenges identified and remediated include Alfven wave-speeds a few percent the speed of light with characteristic lengths on the order of a centimeter, the extreme aspect ratio of GDM systems, massive background magnetic fields, and traveling waves along the length of the GDM.Due to the remaining physical challenges of modeling the GDM system, including a slow systemic relaxation time and localized radiation losses, the computational requirements of the full 3-D MHD model remains too computationally demanding, which suggests a future approach involving a hybrid of 1-D and 3-D models.
[发布日期] [发布机构] University of Michigan
[效力级别] Gasdynamic Mirror GDM [学科分类]
[关键词] Magnetohydrodynamic MHD;Gasdynamic Mirror GDM;Fusion Space Propulsion;Aerospace Engineering;Engineering;Aerospace Engineering and Scientific Computing [时效性]