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Microwave-Assisted Tunnel Boring for Lunar Subsurface Development: Integration of Rock Weakening and Strength Prediction
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0초록
This study presents an integrated approach for lunar subsurface excavation by combining Tunnel Boring Machine (TBM) technology with microwave-assisted rock weakening and machine learning-based strength prediction methods. Through comprehensive analysis of lunar environmental conditions and geological characteristics, we address the key challenges of subsurface construction on the Moon. Our machine learning models, trained on terrestrial rock data and calibrated with Apollo mission samples, provide reliable predictions of lunar rock strength. Laboratory experiments demonstrate that microwave irradiation can reduce rock strength by 19% within three minutes, significantly enhancing excavation efficiency. The integration of these techniques with TBM technology offers practical solutions for developing lunar habitats while effectively managing challenges posed by extreme temperatures, vacuum conditions, and abrasive regolith. The demonstrated 19% reduction in rock strength through microwave treatment indicates significant potential for enhancing lunar excavation efficiency, though operational implementation requires further development. Our findings indicate that this combined approach of rock weakening and strength prediction methods can substantially improve the technical and economic feasibility of lunar subsurface construction.
키워드
- 제목
- Microwave-Assisted Tunnel Boring for Lunar Subsurface Development: Integration of Rock Weakening and Strength Prediction
- 저자
- Ko, Tae Young
- 발행일
- 2025-08-19
- 유형
- Article
- 저널명
- AEROSPACE
- 권
- 12
- 호
- 8