Session

Poster Session 2

Location

Salt Palace Convention Center, Salt Lake City, UT

Abstract

  • Earth observation (EO) satellites represent the largest and fastest growing segment of the satellite industry [1].
  • Higher imaging resolution can be achieved either by enlarging the optical system-which increases satellite dry mass-or by lowering operational altitude, where increased atmospheric drag demands continuous propulsive orbit maintenance[2].
  • At Low Earth Orbit (LEO) and Very Low Earth Orbit (VLEO), atmospheric drag increases significantly, requiring a dedicated propulsion system for sustained orbit maintenance.
  • Hydrazine (N2H4) has been the conventional propellant choice, but its high toxicity incurs substantial handling costs, and its low vapor pressure necessitates a separate pressurant tank.
  • Nitrous Oxide Fuel Blends (NOFBs), which utilize nitrous oxide (N2O) as an oxidizer, have emerged as a promising alternative, offering non-toxicity, self-pressurization, and comparable specific impulse.
  • This study conceptually compares Hydrazine and NOFB propulsion systems by estimating propellant mass, tank volume, and system mass for an EO satellite mission.

Document Type

Event

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Aug 24th, 12:00 AM

Feasibility Study of NOFB Propulsion Systems for Multi-Altitude Earth Observation Missions

Salt Palace Convention Center, Salt Lake City, UT

  • Earth observation (EO) satellites represent the largest and fastest growing segment of the satellite industry [1].
  • Higher imaging resolution can be achieved either by enlarging the optical system-which increases satellite dry mass-or by lowering operational altitude, where increased atmospheric drag demands continuous propulsive orbit maintenance[2].
  • At Low Earth Orbit (LEO) and Very Low Earth Orbit (VLEO), atmospheric drag increases significantly, requiring a dedicated propulsion system for sustained orbit maintenance.
  • Hydrazine (N2H4) has been the conventional propellant choice, but its high toxicity incurs substantial handling costs, and its low vapor pressure necessitates a separate pressurant tank.
  • Nitrous Oxide Fuel Blends (NOFBs), which utilize nitrous oxide (N2O) as an oxidizer, have emerged as a promising alternative, offering non-toxicity, self-pressurization, and comparable specific impulse.
  • This study conceptually compares Hydrazine and NOFB propulsion systems by estimating propellant mass, tank volume, and system mass for an EO satellite mission.