Published March 1992 | Version v1
Miscellaneous

K-Rankine systems for piloted and cargo Mars missions

  • 1. Rockwell International Corp., Rocketdyne Div., Canoga Park, CA (United States)

Description

Studies are performed to demonstrate the attractiveness of potassium-Rankine (K-Rankine) nuclear electric propulsion (NEP) systems for both piloted and cargo Mars missions. The key results of the piloted mission study are that a full-up piloted mission can be accomplished with a trip time of less than 390 days with an attractive initial mass in low earth orbit (IMLEO) of 700 metric tons. This is achieved by coupling two advanced cermet fuel reactors (1550 K outlet temperature) to K-Rankine power-conversion systems to produce the 46 MWe needed to power advanced ion engines. This design approach offers an alternative to a more risky split-sprint mission where comparable trip times and IMLEO can be achieved with a nearer-term reactor (SP-100 at 1350 K outlet temperature) technology. The results of the cargo-mission study indicate that a lower-power K-Rankine system (5.5 MWe) operating at SP-100 reactor conditions would best perform a representative Mars cargo transport. A round-trip mission (480 days outbound; 600 day return) to Mars requires only 225 metric tons IMLEO and permit possible system reuse. 6 refs

Availability note (English)

American Institute of Aeronautics and Astronautics (AIAA), 370 LEnfant Promenade, S.W., Washington, DC 20024 (United States).

Additional details

Publishing Information

Imprint Pagination
8 p.

Conference

Title
American Institute of Astronautics and Aeronautics (AIAA) space programs and technologies conference.
Dates
24-27 Mar 1992.
Place
Huntsville, AL (United States).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
24002590
Subject category
S21: SPECIFIC NUCLEAR REACTORS AND ASSOCIATED PLANTS;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
DESIGN; ELECTRIC POWER; ION PROPULSION; MARS PLANET; RANKINE CYCLE; SPACE PROPULSION REACTORS
Descriptors DEC
MOBILE REACTORS; PLANETS; POWER; POWER REACTORS; PROPULSION; PROPULSION REACTORS; REACTORS; SPACE POWER REACTORS; THERMODYNAMIC CYCLES

Optional Information

Notes
Research supported by Rockwell International Corp.
Secondary number(s)
AIAA-Paper--92-1549; CONF-920373--.