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Multimegawatt Nuclear Electric Propulsion with Gaseous and Vapor Core Reactors with MHD

机译:具有MHD的气态和蒸气芯反应器的多重川核电推进

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This study investigated the development of a system concept for space power generation and nuclear electric propulsion based on a fissioning plasma core reactor (FPCR) with magnetohydrodynamic (MHD) power conversion system, coupled to a magnetoplasmadynamic (MPD) thruster. The FPCR is a liquid-vapor core reactor concept operating with metallic uranium or uranium tetrafluoride (UF_4) vapor as the fissioning fuel and alkali metals or their fluorides as working fluid in a closed Rankine cycle with MHD energy conversion. Candidate working fluids include K, Li, Na, KF, LiF, NaF, etc. The system features core outlet temperatures of 3000 to 4000 K at pressures of about 1 to 10 MPa, MHD temperatures of 2000 to 3000 K, and radiator temperatures of 1200 to 2000 K. This combination of parameters offers the potential for low total system specific mass in the range of 0.4 to 0.6 kg/kWe. The MHD output could be coupled with minimal power conditioning to the variable specific impulse magnetoplasma rocket (VASIMR), MPD thrusters or other types of thruster for producing thrust at very high specific impulse (I_(sp) = 1500 to 10,000 s).
机译:本实验研究的系统概念空间发电以及基于裂变等离子体芯电抗器(FPCR)与磁流体(MHD)功率转换系统的核电力推进,耦合到magnetoplasmadynamic(MPD)推进器的发展。 FPCR是一种液体蒸气核心反应器概念,其与金属铀或四氟化铀(UF_4)蒸气运行,作为裂变燃料和碱金属或其氟化物作为与MHD能量转化的闭合兰氏藻循环中的工作流体。候选工作流体包括K,Li,Na,Kf,LiF,NAF等。该系统在约1至10MPa,MHD温度为2000至3000K的压力下,系统具有3000至4000k的核心出口温度,以及散热器温度1200至2000 K.这种参数的组合提供了低总系统特异性质量的潜力,范围为0.4至0.6千克/克。 MHD输出可以与最小功率调理相结合,可变特定的脉冲磁导体火箭(VASIMR),MPD推进器或其他类型的推进器,用于在非常高的特定脉冲处产生推力(I_(SP)= 1500至10,000 s)。

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