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April 17, 20260 citationsOpen Access

Hybrid Nuclear Thermal Propulsion And Multi Axis Control

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KNKarim NejjarKNKarim Nejjar

Key Points

  • The proposal aims to present a hybrid nuclear thermal propulsion system for interplanetary spacecraft, enhancing deep space mission efficiency.
  • Describes the HNTP-1 vehicle concept with stage-separated design.
  • Utilizes conventional kerosene/LOX propulsion for Earth ascent and nuclear thermal propulsion for interplanetary transit.
  • Implements multi-axis reaction control system for maneuverability and deceleration.
  • Addresses limitations of current chemical propulsion methods for deep space missions.
  • Demonstrates resource extraction necessity for Earth's energy transition, focusing on lunar He-3 and Martian water ice.
  • Quantifies resource pressure through the CR/CC coefficient model to justify interplanetary infrastructure investment.

Abstract

ABSTRACTThis proposal presents the HNTP-1 (Hybrid Nuclear Thermal Propulsion) vehicle concept, a stage-separatedinterplanetary spacecraft designed to address the critical limitations of current chemical propulsion for deepspace missions. The vehicle employs conventional kerosene/LOX propulsion for Earth ascent, transitioning tonuclear thermal propulsion (NTP) at safe orbital altitude for interplanetary transit. A multi-axis reaction controlsystem using secondary NTP thrusters enables six-degree-of-freedom maneuvering and deceleration withoutchemical propellant mass penalties.The proposal further presents a resource scarcity economic framework demonstrating the systemic necessity ofplanetary resource extraction — specifically lunar He-3, asteroidal cobalt and lithium, and Martian water ice —to sustain Earth's energy transition and advanced technology supply chains. The CR/CC coefficient modelquantifies resource pressure and provides an economic justification for accelerated interplanetary infrastructureinvestment.

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Cite This Study

Nejjar et al. (2026) studied this question.

synapsesocial.com/papers/69e1cfcb5cdc762e9d858cfbhttps://doi.org/10.5281/zenodo.19592346
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