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▼a 1263282276
▼a 1263743729
▼a 9780309684804
▼a 0309684803
▼a 9780309684811
▼q (electronic bk.)
▼a 0309684811
▼q (electronic bk.)
▼a 9780309684835
▼q (electronic bk.)
▼a 0309684838
▼q (electronic bk.)
▼a DOI 10.17226/25977
▼a 3024813
▼b (N$T)
▼a (OCoLC)1239727225
▼z (OCoLC)1263282276
▼z (OCoLC)1263743729
▼a DID
▼b eng
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▼d YDX
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▼d 248023
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▼d N$T
▼e rda
▼a zma----
▼a MAIN
▼a TL782
▼a 629.47/5
▼2 23
▼a National Academies of Sciences, Engineering, and Medicine (U.S.).
▼a Space nuclear propulsion for human mars exploration.
▼a Washington, DC:
▼b National Academies Press,
▼c 2021.
▼a 1 online resource (xii, 92 pages):
▼b color illustrations, color photographs.
▼a text
▼b txt
▼2 rdacontent
▼a computer
▼b c
▼2 rdamedia
▼a online resource
▼b cr
▼2 rdacarrier
▼a text file
▼b PDF
▼2 rda
▼a Consensus study reports
▼a "Prepublication copy - subject to further editorial correction"--Cover.
▼a Includes bibliographical references.
▼a Executive summary. -- 1. Introduction and baseline mission requirements. -- Introduction. -- Baseline mission to Mars: crewed opposition class missions. -- Propulsion system requirements. -- Cargo missions. -- Summary. -- 2. Nuclear thermal propulsion. -- System concept. -- Historical overview. -- State of the art. -- Technology requirements, risks, and options. -- Testing, editing, and simulation. -- Development and demonstration roadmap. -- Summary. -- 3. Nuclear electric propulsion. -- System concept. -- Historical overview. -- State of the art. -- Technology requirements, risks, and options. -- Testing, modeling, and simulation. -- Development and demonstration roadmap. -- Summary. -- 4. System and programmatic issues. -- NTP and NEP are different technologies. -- Developments common to both NTP and NEP systems. -- HEU versus HALEU. -- Industrial base. -- Lessons learned from the history of developing space nuclear systems. -- Key technical risks. -- Programmatics. -- 5. Mission applications. -- Science missions. -- Potential for higher performance space nuclear propulsion systems. -- Surface power use of NEP reactors. -- Synergies with national security missions. -- Synergies with terrestrial nuclear systems. -- Appendices.
▼a In 2020, the National Academies of Sciences, Engineering, and Medicine convened the ad hoc Space Nuclear Propulsion Technologies Committee to identify primary technical and programmatic challenges, merits, and risks for maturing space nuclear propulsion technologies of interest to a future human Mars exploration mission. Through interactions with experts from across the space propulsion community, the committee assessed the present state of the art, potential development path, and key risks for (1) a nuclear thermal propulsion (NTP) system designed to produce a specific impulse1 of at least 900 s and (2) a nuclear electric propulsion (NEP) system with at least 1 megawatt of electric (MWe) power and a mass-to-power ratio that is substantially lower than the current state of the art. As requested by NASA, each system was assessed with regard to its ability to support a particular baseline mission--an opposition-class human exploration mission to Mars with a 2039 launch date.2,3 For both NEP and NTP systems, efforts to mature the requisite technology and mitigate key technical risks were integrated into a top-level development and demonstration roadmap. Infusion of technology results, expertise, and synergy with other government programs and missions was also examined.
▼a "This activity was supported by Contract No. NNH16CD01B/80HQTR20F0059 with the National Aeronautics and Space Administration."
▼a Description based on online resource; title from PDF title page (NAP, viewed February 25, 2021).
▼a Added to collection customer.56279.3
▼a Space vehicles
▼x Propulsion systems
▼x Technological innovations.
▼a Nuclear propulsion.
▼a Exploration of outer space.
▼2 fast
▼0 (OCoLC)fst01353078
▼a Nuclear propulsion.
▼2 fast
▼0 (OCoLC)fst01040706
▼a Outer space
▼x Exploration.
▼a Mars (Planet)
▼a Mars (Planet)
▼0 (OCoLC)fst01243063
▼2 fast
▼a Outer space.
▼0 (OCoLC)fst01243437
▼2 fast
▼a Electronic books.
▼i Print version:,
▼z 0309684803,
▼z 9780309684804
▼w (OCoLC)1240414044
▼a Consensus study reports.
▼a NA000000
▼b 00000140
▼3 EBSCOhost
▼u https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=3024813
▼a YBP Library Services
▼b YANK
▼n 302444312
▼a ProQuest Ebook Central
▼b EBLB
▼n EBL6690673
▼a YBP Library Services
▼b YANK
▼n 17581896
▼a EBSCOhost
▼b EBSC
▼n 3024813
▼a 최영란
▼a eBook
▼a 92
▼b N$T
| 자료유형 : | eBook |
|---|---|
| ISBN : | 9780309684804 |
| ISBN : | 0309684803 |
| ISBN : | 9780309684811 |
| ISBN : | 0309684811 |
| ISBN : | 9780309684835 |
| ISBN : | 0309684838 |
| 기타표준부호 : | DOI 10.17226/25977 |
| 단체저자명 : | National Academies of Sciences, Engineering, and Medicine (U.S.). |
| 서명/저자사항 : | Space nuclear propulsion for human mars exploration. |
| 발행사항 : | Washington, DC: National Academies Press, 2021. |
| 형태사항 : | 1 online resource (xii, 92 pages): color illustrations, color photographs. |
| 총서사항 : | Consensus study reports |
| 일반주기 : | "Prepublication copy - subject to further editorial correction"--Cover. |
| 서지주기 : | Includes bibliographical references. |
| 내용주기 : | Executive summary. -- 1. Introduction and baseline mission requirements. -- Introduction. -- Baseline mission to Mars: crewed opposition class missions. -- Propulsion system requirements. -- Cargo missions. -- Summary. -- 2. Nuclear thermal propulsion. -- System concept. -- Historical overview. -- State of the art. -- Technology requirements, risks, and options. -- Testing, editing, and simulation. -- Development and demonstration roadmap. -- Summary. -- 3. Nuclear electric propulsion. -- System concept. -- Historical overview. -- State of the art. -- Technology requirements, risks, and options. -- Testing, modeling, and simulation. -- Development and demonstration roadmap. -- Summary. -- 4. System and programmatic issues. -- NTP and NEP are different technologies. -- Developments common to both NTP and NEP systems. -- HEU versus HALEU. -- Industrial base. -- Lessons learned from the history of developing space nuclear systems. -- Key technical risks. -- Programmatics. -- 5. Mission applications. -- Science missions. -- Potential for higher performance space nuclear propulsion systems. -- Surface power use of NEP reactors. -- Synergies with national security missions. -- Synergies with terrestrial nuclear systems. -- Appendices. |
| 요약 : | In 2020, the National Academies of Sciences, Engineering, and Medicine convened the ad hoc Space Nuclear Propulsion Technologies Committee to identify primary technical and programmatic challenges, merits, and risks for maturing space nuclear propulsion technologies of interest to a future human Mars exploration mission. Through interactions with experts from across the space propulsion community, the committee assessed the present state of the art, potential development path, and key risks for (1) a nuclear thermal propulsion (NTP) system designed to produce a specific impulse1 of at least 900 s and (2) a nuclear electric propulsion (NEP) system with at least 1 megawatt of electric (MWe) power and a mass-to-power ratio that is substantially lower than the current state of the art. As requested by NASA, each system was assessed with regard to its ability to support a particular baseline mission--an opposition-class human exploration mission to Mars with a 2039 launch date.2,3 For both NEP and NTP systems, efforts to mature the requisite technology and mitigate key technical risks were integrated into a top-level development and demonstration roadmap. Infusion of technology results, expertise, and synergy with other government programs and missions was also examined. |
| 기금정보주기 : | "This activity was supported by Contract No. NNH16CD01B/80HQTR20F0059 with the National Aeronautics and Space Administration." |
| 일반주제명 : | Space vehicles -- Propulsion systems -- Technological innovations. -- |
| 일반주제명 : | Nuclear propulsion. -- |
| 일반주제명 : | Exploration of outer space. -- |
| 일반주제명 : | Nuclear propulsion. -- |
| 주제명(지명) : | Outer space Exploration. |
| 주제명(지명) : | Mars (Planet) |
| 주제명(지명) : | Mars (Planet) fast |
| 주제명(지명) : | Outer space. fast |
| 기타형태 저록 : | Print version:, 0309684803, 9780309684804 |
| 언어 | 영어 |
| URL : |
|---|
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