Selection note: Curated for its integrated retrospective on resource processing, consumables, power, fuel handling, propulsion, mission operations, and Earthside sustainability lessons from NASA Glenn ISRU work.

Evidence boundary: NTRS lists open full text, but this pass screened the catalog metadata and abstract rather than independently validating the report's methods, results, or present-day applicability. It is contextual discovery material, not automatic evidence for a GShips claim.

Stable record
ntrs-20150023468
Topic
manufacturing-isru
Type
Technical Memorandum (TM)
Publisher
Glenn Research Center
Authors
Hepp, A. F.; Palaszewski, B. A.; Landis, G. A.; Jaworske, D. A.; Colozza, A. J.; Kulis, M. J.; Heller, R. S.
Year
2015
Editorial state
metadata curated editorial draft
Reviewer
GShips Project editorial synthesis
Official link checked
2026-07-25

Source-supplied abstract

As humanity begins to reach out into the solar system, it has become apparent that supporting a human or robotic presence in transit andor on station requires significant expendable resources including consumables (to support people), fuel, and convenient reliable power. Transporting all necessary expendables is inefficient, inconvenient, costly, and, in the final analysis, a complicating factor for mission planners and a significant source of potential failure modes. Over the past twenty-five years, beginning with the Space Exploration Initiative, researchers at the NASA Glenn Research Center (GRC), academic collaborators, and industrial partners have analyzed, researched, and developed successful solutions for the challenges posed by surviving and even thriving in the resource limited environment(s) presented by near-Earth space and non-terrestrial surface operations. In this retrospective paper, we highlight the efforts of the co-authors in resource simulation and utilization, materials processing and consumable(s) production, power systems and analysis, fuel storage and handling, propulsion systems, and mission operations. As we move forward in our quest to explore space using a resource-optimized approach, it is worthwhile to consider lessons learned relative to efficient utilization of the (comparatively) abundant natural resources and improving the sustainability (and environment) for life on Earth. We reconsider Lunar (and briefly Martian) resource utilization for potential colonization, and discuss next steps moving away from Earth.

Abstract text has not been adopted as a GShips conclusion.

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Assumptions and limits

  • NTRS lists open full text, but this pass screened the catalog metadata and abstract rather than independently validating the report's methods, results, or present-day applicability. It is contextual discovery material, not automatic evidence for a GShips claim.
  • Source-supplied titles, abstracts, authors, and dates may require correction against the canonical full text.

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A newer or corrected version, retraction, verified duplicate, material topic mismatch, changed access state, or claim-level assessment would change this record.

People, review, and conflicts

Prepared by
GShips Project
Editorial status
metadata-curated-editorial-draft
Editorial reviewer
GShips Project editorial synthesis
Last editorial review
No editorial-review date recorded
Independent review
pending
Independent reviewer
No independent reviewer assigned
Last independent review
No independent-review date exists
Last content edit
Not recorded separately
Official source or link verified
2026-07-25

Declared conflicts

  • The maintainer intends to explore a commercial venture based on some GShips work. No entity, outside funding, customer, sponsor, or indexed-organization relationship currently exists.

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