2013年航天活动列表
外观
![本页使用了标题或全文手工转换](http://upload.wikimedia.org/wikipedia/commons/thumb/c/cd/Zh_conversion_icon_m.svg/35px-Zh_conversion_icon_m.svg.png)
![]() 安塔瑞斯運載火箭于2013年4月21日首飞。 | |
轨道发射 | |
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首次 | 1月15日 |
末次 | 12月28日 |
总计 | 81 |
成功 | 77 |
失败 | 3 |
部分失败 | 1 |
标识符 | 78 |
各国的首次 | |
卫星 | |
轨道发射 | ![]() ![]() |
火箭 | |
处女航 | |
退役 | |
载人航天 | |
轨道飞行次数 | 5 |
载人航天人数合计 | 15 |
舱外活动次数 | 11 |
2013年,全球有多款运载火箭完成首飞。2013年4月13日,軌道科學公司的安塔瑞斯运载火箭(编号为A-ONE)进行了首次太空飞行。[1]轨道科学公司还发射了其第一艘航天器天鹅座号货运飞船,并于2013年9月底与国际空间站对接。
2013年共尝试了81次轨道发射,其中77次成功,一次部分成功,三次失败。这一年,国际空间站宇航员还进行了11次舱外活动。今年大部分轨道发射是由俄罗斯、美国和中国进行的,分别进行了31次、19次和15次发射。
概述
[编辑]印度空间研究组织发射了该国首个火星任务——“曼加里安号”火星轨道器,它于2014年9月23日成功进入绕火轨道[2]
2013年,无人航天领域发生了许多重大里程碑,包括12月14日中国嫦娥三号着陆器成功着陆月球雨海;这是中国航天器首次尝试在地外表面实现软着陆,并首次获得成功,这也是继1976年前苏联的月球24号后首个在月球表面软着陆的探测器。
2013年共进行了五次载人轨道发射,全部成功,共将15名宇航员送入轨道。其中四次飞行是由俄罗斯联盟号飞船进行的(联盟TMA-08M、联盟TMA-09M、联盟TMA-10M和联盟TMA-11M),一次是由中国神舟载人飞船进行的(神舟十号)。
轨道发射
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
亚轨道发射
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
发射时间 (UTC) | 运载火箭 | 火箭编号 | 发射场 | 发射服务提供商 | |||
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有效载荷 (⚀ = 立方星) |
载荷用户 | 轨道 | 功能 | 再入时间 (UTC) | 结果 | ||
附注 | |||||||
26 January 22:00 |
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MDA | Suborbital | Anti-ballistic missile test | 26 January | Successful | ||
Non-intercept flight test. | |||||||
27 January ~12:10 |
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PLA | Suborbital | ABM target | 11 January | Successful | |||
Target | |||||||
27 January ~12:10 |
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PLA | Suborbital | ABM test | 11 January | Successful | |||
Interceptor, successful intercept | |||||||
28 January | ![]() |
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ISA | Suborbital | Biological | 28 January | Successful[63] | ||
Apogee: 116 kilometres (72 miles), carried a rhesus monkey | |||||||
29 January 22:50 |
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NASA GSFC | Suborbital | Atmospheric experiments | 29 January | Successful | ||
Apogee: ~130公里(81英里) | |||||||
7 February 08:21 |
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NASA GSFC | Suborbital | Auroral research | 7 February | Successful | ||
13 February 09:10 |
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FTM-20 | ![]() |
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MDA | Suborbital | ABM target | 13 February | Successful | |||
SM-3 Block 1A target | |||||||
13 February 09:15 |
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FTM-20 | ![]() |
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US Navy | Suborbital | ABM test | 13 February | Successful | |||
MRBTM interceptor, successful intercept | |||||||
15 February 16:34 |
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NASA GSFC/WFF | Suborbital | Technology demonstration | 15 February | Successful | ||
Apogee: ~130公里(81英里) ? | |||||||
25 February 05:52:31 |
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IAI/IDF | Suborbital | ABM Test | 25 February | Successful | |||
Test flight of the Arrow-III | |||||||
11 March 06:10 |
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DoD | Suborbital | Radar target | 11 March | Successful | ||
Apogee: ~300公里(190英里) | |||||||
4 April 21:55 |
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CSSAR | Suborbital | Environment monitoring | 4 April | Successful | ||
Apogee: 191公里(119英里) | |||||||
7 April 04:55 |
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Indian Army | Suborbital | Missile test | 7 April | Successful | |||
Apogee: 200公里(120英里) | |||||||
10 April | ![]() |
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ASFC | Suborbital | Test flight | 10 April | Successful | |||
Apogee: 100公里(62英里) | |||||||
12 April 04:25 |
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DLR/ESA | Suborbital | Microgravity | 12 April | Successful | ||
Apogee: 261公里(162英里) | |||||||
21 April 08:00 |
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CU Boulder | Suborbital | Astronomy | 21 April | Successful | ||
Apogee: 318公里(198英里)? | |||||||
23 April 17:30 |
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NASA GSFC | Suborbital | Solar research | 23 April | Successful | ||
Apogee: 320公里(200英里)? | |||||||
1 May 07:38 |
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NASA/Air Force Research Lab | Suborbital | Ionospheric research | 1 May | Successful | ||
Apogee: ~189公里(117英里) | |||||||
5 May 08:30 |
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DGA/Marine nationale | Suborbital | Test flight | 5 May | Launch failure | |||
7 May 07:39:00 |
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University of Illinois | Suborbital | Atmospheric | 7 May | Successful | ||
Apogee: ~350公里(220英里) ? | |||||||
7 May 07:40:30 |
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University of Illinois | Suborbital | Atmospheric | 7 May | Successful | ||
Apogee: ~350公里(220英里) ? | |||||||
9 May 07:23 |
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NASA/Air Force Research Lab | Suborbital | Ionospheric research | 9 May | Successful | ||
Apogee: ~189公里(117英里) | |||||||
11 May 05:00 |
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JHU | Suborbital | Astronomy | 11 May | Successful | ||
Apogee: 280公里(170英里)? | |||||||
13 May 12:58 |
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CNSA | Suborbital | Magnetospheric research | 13 May | Successful | ||
Apogee: 10,000公里(6,200英里) | |||||||
16 May 03:25 |
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FTM-19 | ![]() |
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MDA | Suborbital | ABM target | 16 May | Successful | |||
SM-3 Block 1B target | |||||||
16 May 03:30 |
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FTM-19 | ![]() |
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US Navy | Suborbital | ABM test | 16 May | Successful | |||
ARAV-C interceptor, successful intercept | |||||||
22 May 13:27 |
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U.S. Air Force | Suborbital | Test flight | 22 May | Successful | |||
GT207GM, Apogee: ~1,300公里(810英里) ? | |||||||
5 June 07:00 |
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Sounding Rocket VIII | ![]() |
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NSPO/NCU | Suborbital | Technology test | 5 June | Successful | ||
Apogee: 279公里(173英里) | |||||||
6 June 03:05 |
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Caltech | Suborbital | Astronomy | 6 June | Successful | ||
Apogee: 577公里(359英里) | |||||||
6 June 17:45 |
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RVSN | Suborbital | Missile test | 6 June | Successful | |||
20 June 09:30 |
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CU Boulder | Suborbital | Student experiments | 20 June | Successful | ||
Apogee: 118公里(73英里) | |||||||
21 June 13:57 |
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NASA | Suborbital | Student experiments | 21 June | Successful | ||
Mission SL-7, Apogee: 119公里(74英里), successfully recovered | |||||||
27 June 23:52 |
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DLR | Suborbital | Atmospheric | 27 June | Successful | ||
Apogee: 115公里(71英里), 12 Super Loki meteorological rockets were also launched | |||||||
4 July 14:31:00 |
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NASA GSFC | Suborbital | Geospace | 4 July | Successful | ||
Apogee: 135公里(84英里) | |||||||
4 July 14:31:15 |
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NASA GSFC | Suborbital | Geospace | 4 July | Successful | ||
Apogee: 160公里(99英里) | |||||||
5 July 18:29 |
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FTG-07 | ![]() |
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MDA | Suborbital | ABM target | 5 July | Successful | |||
5 July 18:35 |
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FTG-07 | ![]() |
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MDA | Suborbital | ABM test | 5 July | Spacecraft failure | |||
UMG-96 Trident I interceptor, intercept failed, EKV likely failed to separate from booster | |||||||
12 July | ![]() |
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Israeli Air Force | Suborbital | Missile test | 12 July | Successful | |||
15 July 05:53 |
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DLR | Suborbital | Technology demonstration | 15 July | Successful | ||
Apogee: 151公里(94英里) | |||||||
20 July 14:00:00 |
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JAXA/KU/HU/KUT/TU/TPU/ TU/UT/NU/CU/GSFC |
Suborbital | Ionospheric research | 20 July | Successful | |||
Apogee: 139公里(86英里) | |||||||
20 July 14:57:00 |
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JAXA/KU/HU/KUT/TU/TPU/ TU/UT/NU/CU/GSFC |
Suborbital | Ionospheric research | 20 July | Successful | |||
Apogee: 316公里(196英里) | |||||||
8 August 18:10 |
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NRL | Suborbital | Solar research | 8 August | Successful | ||
Apogee: 280公里(170英里)? | |||||||
12 August 03:45 |
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DRDO | Suborbital | Missile test | 12 August | Successful | |||
Apogee: ~100公里(62英里) | |||||||
13 August 10:00 |
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NASA | Suborbital | Student experiments | 13 August | Successful | ||
Apogee: 151公里(94英里)? | |||||||
3 September 06:16 |
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Israeli Air Force | Suborbital | ABM target | 3 September | Successful | |||
Arrow-3 tracking target, Apogee: ~150公里(93英里) | |||||||
6 September 05:20 |
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VMF | Suborbital | Missile test | 6 September | Launch failure | |||
Second stage failure | |||||||
10 September | ![]() |
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US Navy | Suborbital | Test flight | 10 September | Successful | |||
Follow-on Commander's Evaluation Test ? | |||||||
10 September | ![]() |
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US Navy | Suborbital | Test flight | 10 September | Successful | |||
Follow-on Commander's Evaluation Test ? | |||||||
10 September | ![]() |
C-17 Globemaster III, Pacific Ocean | ![]() | ||||
MDA/IMDO | Suborbital | ABM target | 10 September | Successful | |||
Target for THAAD, successful intercept | |||||||
10 September | ![]() |
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MDA/IMDO | Suborbital | ABM target | 10 September | Successful | |||
Target for SM-3, successful intercept | |||||||
10 September | ![]() |
FTO-01 | ![]() |
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US Navy | Suborbital | ABM test | 10 September | Successful | |||
Intercepted target missile | |||||||
10 September | ![]() |
FTO-01 | ![]() |
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US Army/MDA | Suborbital | ABM test | 10 September | Successful | |||
Intercepted target missile | |||||||
10 September | ![]() |
FTO-01 | ![]() |
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US Army/MDA | Suborbital | ABM test | 10 September | Successful | |||
Back-up interceptor for SM-3 | |||||||
12 September | ![]() |
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US Navy | Suborbital | Test flight | 12 September | Successful | |||
Follow-on Commander's Evaluation Test ? | |||||||
12 September | ![]() |
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US Navy | Suborbital | Test flight | 12 September | Successful | |||
Follow-on Commander's Evaluation Test ? | |||||||
15 September 09:20 |
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DRDO | Suborbital | Test flight | 15 September | Successful | |||
Apogee: 800公里(500英里), second flight of Agni-V | |||||||
18 September 11:15 |
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University of Queensland | Suborbital | Technology demonstration | 18 September | Launch failure | ||
Hypersonic research experiment, first stage failure of launch vehicle | |||||||
19 September 00:30 |
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FTM-21 | ![]() |
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MDA | Suborbital | ABM target | 19 September | Successful | |||
SM-3 Block 1B target | |||||||
19 September 00:32 ? |
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FTM-21 | ![]() |
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US Navy | Suborbital | ABM test | 19 September | Successful | |||
ARAV-C++ interceptor, successful intercept | |||||||
19 September 00:32 ? |
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FTM-21 | ![]() |
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US Navy | Suborbital | ABM test | 19 September | Successful | |||
ARAV-C++ back-up interceptor | |||||||
22 September 10:01 |
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US Air Force | Suborbital | Test flight | 22 September | Successful | |||
GT209GM, Apogee: ~1,300公里(810英里) ? | |||||||
26 September 10:33 |
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U.S. Air Force | Suborbital | Test flight | 26 September | Successful | |||
GT208GM, Apogee: ~1,300公里(810英里) ? | |||||||
4 October 05:33 |
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FTM-22 | ![]() |
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MDA | Suborbital | ABM target | 4 October | Successful | |||
SM-3 Block 1B target | |||||||
4 October 05:37 ? |
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FTM-22 | ![]() |
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US Navy | Suborbital | ABM test | 4 October | Successful | |||
ARAV-ER interceptor, successful intercept | |||||||
7 October 03:45 |
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DRDO | Suborbital | Missile test | 7 October | Successful | |||
Apogee: ~100公里(62英里) | |||||||
8 October 06:50 |
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DRDO | Suborbital | Missile test | 8 October | Successful | |||
Apogee: ~100公里(62英里) | |||||||
10 October 13:39 |
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RVSN | Suborbital | Missile test | 10 October | Successful | |||
Test of a new experimental reentry vehicle | |||||||
21 October 10:00[64] |
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CU Boulder | Suborbital | SDO calibration | 21 October | Successful | ||
Apogee: 273公里(170英里) | |||||||
30 October | ![]() |
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RVSN | Suborbital | Missile test | 30 October | Successful | |||
30 October | ![]() |
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RVSN | Suborbital | Missile test | 30 October | Successful | |||
30 October | ![]() |
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VMF | Suborbital | Missile test | 30 October | Successful | |||
30 October | ![]() |
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VMF | Suborbital | Missile test | 30 October | Successful | |||
3 November 09:25 |
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X-ray Quantum Calorimeter | UW-Madison | Suborbital | X-ray astronomy | 3 November | Successful | ||
Apogee: 278公里(173英里) | |||||||
8 November | ![]() |
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IDRDL | Suborbital | Missile test | 8 November | Successful | |||
Apogee: ~500公里(310英里)? | |||||||
12 November 16:15 |
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NASA | Suborbital | Six technology experiments | 12 November | Successful | ||
Mission SL-8, Apogee: 116公里(72英里), successfully recovered | |||||||
20 November 11:40 |
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JHU | Suborbital | UV astronomy | 20 November | Successful | ||
Studied spectra of comet ISON, apogee: 277公里(172英里) | |||||||
27 November 03:50[65] |
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Boston University | Suborbital | UV astronomy | 27 November | Successful | ||
Venus Spectral Rocket Experiment, apogee: 280公里(170英里) | |||||||
3 December | ![]() |
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DRDO | Suborbital | Missile test | 3 December | Successful | |||
Apogee: ~100公里(62英里) | |||||||
14 December | ![]() |
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ISA | Suborbital | Biological | 14 December | Successful | ||
Apogee: 120 kilometres (72 miles), carried a rhesus monkey | |||||||
17 December 12:36 |
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US Air Force | Suborbital | Test flight | 17 December | Successful | |||
GT210GM, Apogee: ~1,300公里(810英里) ? | |||||||
23 December 11:28 |
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Indian Army | Suborbital | Missile test | 23 December | Successful | |||
Apogee: 350公里(220英里) | |||||||
24 December 07:00 |
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RVSN | Suborbital | Missile test | 24 December | Successful | |||
27 December 17:30 |
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RVSN | Suborbital | Missile test | 27 December | Successful |
深空机动
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
日期 (UTC) | 航天器 | 事件 | 备注 |
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16 February | Cassini | 90th flyby of Titan | Closest approach: 1,978公里(1,229英里). |
9 March | Cassini | 4th flyby of Rhea | Closest approach: 997公里(620英里). Last Cassini flyby of Rhea. |
5 April | Cassini | 91st flyby of Titan | Closest approach: 1,400公里(870英里). |
12 April | Cassini | Flyby of Polydeuces | Closest approach: 115,000公里(71,000英里). |
23 May | Cassini | 92nd flyby of Titan | Closest approach: 970公里(600英里). |
10 July | Cassini | 93rd flyby of Titan | Closest approach: 964公里(599英里). |
26 July | Cassini | 94th flyby of Titan | Closest approach: 1,400公里(870英里). |
12 September | Cassini | 95th flyby of Titan | Closest approach: 1,400公里(870英里). |
6 October | LADEE | Injection into Selenocentric orbit | Preliminary orbit was 269公里(167英里) x 15,772公里(9,800英里), inclined 157 deg to the equator. |
9 October | Juno | Flyby of Earth | Gravity assist, closest approach: 552公里(343英里). |
13 October | Cassini | 96th flyby of Titan | Closest approach: 961公里(597英里). |
30 November | Cassini | 97th flyby of Titan | Closest approach: 870公里(540英里). |
6 December | Chang'e 3 | Injection into Selenocentric orbit | Preliminary orbit was 100公里(62英里), reduced to 15公里(9.3英里) on 10 December. |
14 December | Chang'e 3 | Landing at Mare Imbrium | First Chinese lunar soft lander and rover, coordinates 44°07′17″N 19°30′42″W / 44.1214°N 19.5116°W. |
28 December | Mars Express | Flyby of Phobos | Closest approach: 45公里(28英里). |
舱外活动
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
开始时间 | 持续时间 | 结束时间 | 航天器 | 乘组 | 备注 |
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19 April 14:03 |
6 hours 38 minutes |
20:41 | Expedition 35/36 | ![]() |
Installed the Obstanovka plasma waves and ionosphere experiment to the exterior of the Zvezda service module. Also replaced a faulty retro-reflector device used as navigational aids for the Automatic Transfer Vehicle and retrieved the Biorisk microbe exposure experiment. An attempt to retrieve the Vinoslivost materials sample experiment failed when it was accidentally dropped while being taken back to the Pirs module airlock.[66][67] |
11 May 12:44 |
5 hours 30 minutes |
18:14 | Expedition 35/36 | ![]() |
Replaced the 2B Pump Flow Control Subassembly (PFCS) on the Port 6 truss in attempting to locate the source of an ammonia coolant leak on the Port 6 truss Photo Voltaic Thermal Control System (PVTCS).[68][69] |
24 June 13:32 |
6 hours 34 minutes |
20:06 | Expedition 36/37 | ![]() |
Replaced a fluid flow regulator on the Zarya module, testing of the Kurs docking system on the station ahead of the arrival of a new Russian module, installing the "Indicator" experiment, installing gap spanners on to the outside of the station and photographing the multilayer insulation (MLI) protecting the Russian segment from micrometeoroids and taking samples from the exterior surface of the pressure hull underneath the MLI to identify signs of pressure hull material microscopic deterioration.[70][71] |
9 July 12:02 |
6 hours 7 minutes |
18:09 | Expedition 36/37 | ![]() |
Replaced a failed Space-to-Ground Transmitter Receiver Controller and the Mobile Base Camera Light Pan-Tilt Assembly, retrieved the MISSE-8 and ORMatE-III experiments, photographed the AMS-02, moved two Radiator Grapple Bars to either sides of the truss, routed power cables to support the addition of the new Russian MLM and installed a multi-layer insulation cover to protect the docking interface of PMA-2.[72][73] |
16 July 11:57 |
1 hours 32 minutes |
13:29 | Expedition 36/37 | ![]() |
Installed a Y-bypass jumper on power lines on the Z1 truss, routing 1553 data cables for a grapple fixture and Ethernet cables for a future Russian station module. The spacewalk was then cut short after Parmitano reported excess water leaking inside his helmet.[74][75][76] |
16 August 14:36 |
7 hours 29 minutes |
22:05 | Expedition 36/37 | ![]() |
Routed power and Ethernet cables for later attachment to the future Nauka module. Also installed connectors between modules and a material science experiment.[77][78] |
22 August 11:34 |
5 hours 58 minutes |
17:32 | Expedition 36/37 | ![]() |
Removed a laser communication and installed an EVA work station and camera pointing platform outside the Zvezda service module, inspection and tightening of various antenna covers on Zvezda, and installed new spacewalk aids.[79][80] |
9 November 14:34 |
5 hours 50 minutes |
20:24 | Expedition 37/38 | ![]() |
Took the Olympic torch for the 2014 Winter Olympic Games to the outside of ISS. They also continued work on an extravehicular activity workstation and biaxial pointing platform by removing launch brackets and bolts, as well as retrieving an experimental package. The planned installation of a foot restraint on the mounting seat of the workstation was deferred to a future spacewalk after the spacewalkers noticed some issues with its alignment.[81][82] |
21 December 12:01 |
5 hours 28 minutes |
17:29 | Expedition 38/39 | ![]() |
Removed ammonia fluid lines from Active Thermal Control System pump module; removed pump module from starboard truss and stowed it on Payload Orbital Replacement Unit Accommodation.[83] |
24 December 11:53 |
7 hours 30 minutes |
19:23 | Expedition 38/39 | ![]() |
Retrieved spare ammonia pump module, installed it on starboard truss, and connected it to Loop A of Active Thermal Control System.[84][85] |
27 December 13:00 |
8 hours 7 minutes |
21:07 | Expedition 38/39 | ![]() |
Attempted installation of 2 HD cameras for commercial Earth observation on the outside of the Zvezda module, cancelled after one of the cameras failed to provide data to the ground during testing. Also installed and jettisoned experimental equipment outside the Russian segment. Longest Russian EVA in history.[86][87] |
轨道发射统计
[编辑]按国家(区域)
[编辑]就本章节的主旨而言,每次航天飞行所属的国家以火箭的原产国为准,而不是发射服务提供商或发射场所在国。例如,西欧阿丽亚娜空间公司在南美洲圭亚那航天中心发射的联盟号火箭应视作俄罗斯的发射,因为联盟2号是俄罗斯火箭。
- 中国: 15
- 欧洲: 5
- 印度: 3
- 日本: 3
- 韩国: 1
- 俄罗斯: 31
- 乌克兰: 4
- 美国: 19
国家(区域) | 发射数 | 成功数 | 失败数 | 部分 失败数 |
备注 | |
---|---|---|---|---|---|---|
![]() |
15 | 14 | 1 | 0 | ||
![]() |
5 | 5 | 0 | 0 | ||
![]() |
3 | 3 | 0 | 0 | ||
![]() |
3 | 3 | 0 | 0 | ||
![]() |
1 | 1 | 0 | 0 | 俄罗斯提供协助 | |
![]() |
31 | 28 | 2 | 1 | 包括阿丽亚娜空间公司从圭亚那航天中心发射的两次欧洲联盟号火箭。 | |
![]() |
4 | 4 | 0 | 0 | ||
![]() |
19 | 19 | 0 | 0 | ||
总计 | 81 | 77 | 3 | 1 |
按火箭
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
By family
[编辑]Family | Country | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|
Angara | ![]() |
1 | 1 | 0 | 0 | |
Antares | ![]() |
2 | 2 | 0 | 0 | Maiden flight |
Ariane | ![]() |
4 | 4 | 0 | 0 | |
Atlas | ![]() |
8 | 8 | 0 | 0 | |
Delta | ![]() |
3 | 3 | 0 | 0 | |
Epsilon | ![]() |
1 | 1 | 0 | 0 | Maiden flight |
Falcon | ![]() |
3 | 3 | 0 | 0 | |
H-II | ![]() |
2 | 2 | 0 | 0 | |
Kuaizhou | ![]() |
1 | 1 | 0 | 0 | Maiden flight |
Long March | ![]() |
14 | 13 | 1 | 0 | |
Minotaur | ![]() |
2 | 2 | 0 | 0 | |
Pegasus | ![]() |
1 | 1 | 0 | 0 | |
PSLV | ![]() |
3 | 3 | 0 | 0 | |
R-7 | ![]() |
16 | 16 | 0 | 0 | |
R-36 | ![]() |
2 | 2 | 0 | 0 | |
Universal Rocket | ![]() |
15 | 13 | 1 | 1 | |
Vega | ![]() |
1 | 1 | 0 | 0 | |
Zenit | ![]() |
2 | 1 | 1 | 0 |
By type
[编辑]Rocket | Country | Family | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|---|
Antares 100 | ![]() |
Antares | 2 | 2 | 0 | 0 | Maiden flight |
Ariane 5 | ![]() |
Ariane | 4 | 4 | 0 | 0 | |
Atlas V | ![]() |
Atlas | 8 | 8 | 0 | 0 | |
Delta IV | ![]() |
Delta | 3 | 3 | 0 | 0 | |
Dnepr | ![]() |
R-36 | 2 | 2 | 0 | 0 | |
Epsilon | ![]() |
Epsilon | 1 | 1 | 0 | 0 | Maiden flight |
Falcon 9 | ![]() |
Falcon | 3 | 3 | 0 | 0 | |
H-IIA | ![]() |
H-II | 1 | 1 | 0 | 0 | |
H-IIB | ![]() |
H-II | 1 | 1 | 0 | 0 | |
Kuaizhou 1 | ![]() |
Kuaizhou | 1 | 1 | 0 | 0 | Maiden flight |
Long March 2 | ![]() |
Long March | 5 | 5 | 0 | 0 | |
Long March 3 | ![]() |
Long March | 3 | 3 | 0 | 0 | |
Long March 4 | ![]() |
Long March | 6 | 5 | 1 | 0 | |
Minotaur I | ![]() |
Minotaur | 1 | 1 | 0 | 0 | |
Minotaur V | ![]() |
Minotaur | 1 | 1 | 0 | 0 | |
Naro | ![]() ![]() |
Angara | 1 | 1 | 0 | 0 | Final flight |
Pegasus | ![]() |
Pegasus | 1 | 1 | 0 | 0 | |
PSLV | ![]() |
PSLV | 3 | 3 | 0 | 0 | |
Proton | ![]() |
Universal Rocket | 10 | 9 | 1 | 0 | |
Soyuz | ![]() |
R-7 | 8 | 8 | 0 | 0 | |
Soyuz-2 | ![]() |
R-7 | 8 | 8 | 0 | 0 | |
UR-100 | ![]() |
Universal Rocket | 5 | 4 | 0 | 1 | |
Vega | ![]() |
Vega | 1 | 1 | 0 | 0 | |
Zenit | ![]() |
Zenit | 2 | 1 | 1 | 0 |
By configuration
[编辑]Rocket | Country | Type | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|---|
Antares 110 | ![]() |
Antares | 2 | 2 | 0 | 0 | Maiden flight |
Ariane 5 ECA | ![]() |
Ariane 5 | 3 | 3 | 0 | 0 | |
Ariane 5 ES | ![]() |
Ariane 5 | 1 | 1 | 0 | 0 | |
Atlas V 401 | ![]() |
Atlas V | 5 | 5 | 0 | 0 | |
Atlas V 501 | ![]() |
Atlas V | 1 | 1 | 0 | 0 | |
Atlas V 531 | ![]() |
Atlas V | 1 | 1 | 0 | 0 | |
Atlas V 551 | ![]() |
Atlas V | 1 | 1 | 0 | 0 | |
Delta IV Medium+ (5,4) | ![]() |
Delta IV | 2 | 2 | 0 | 0 | |
Delta IV Heavy | ![]() |
Delta IV | 1 | 1 | 0 | 0 | |
Dnepr | ![]() |
Dnepr | 2 | 2 | 0 | 0 | |
Epsilon | ![]() |
Epsilon | 1 | 1 | 0 | 0 | Maiden flight |
Falcon 9 v1.0 | ![]() |
Falcon 9 | 1 | 1 | 0 | 0 | Final flight |
Falcon 9 v1.1 | ![]() |
Falcon 9 | 2 | 2 | 0 | 0 | Maiden flight |
H-IIA 202 | ![]() |
H-IIA | 1 | 1 | 0 | 0 | |
H-IIB | ![]() |
H-IIB | 1 | 1 | 0 | 0 | |
Kuaizhou 1 | ![]() |
Kuaizhou 1 | 1 | 1 | 0 | 0 | Maiden flight |
Long March 2C | ![]() |
Long March 2 | 2 | 2 | 0 | 0 | |
Long March 2D | ![]() |
Long March 2 | 2 | 2 | 0 | 0 | |
Long March 2F | ![]() |
Long March 2 | 1 | 1 | 0 | 0 | |
Long March 3B/E | ![]() |
Long March 3 | 3 | 3 | 0 | 0 | |
Long March 4B | ![]() |
Long March 4 | 2 | 1 | 1 | 0 | |
Long March 4C | ![]() |
Long March 4 | 4 | 4 | 0 | 0 | |
Minotaur I | ![]() |
Minotaur I | 1 | 1 | 0 | 0 | |
Minotaur V | ![]() |
Minotaur V | 1 | 1 | 0 | 0 | Maiden flight |
Naro-1 | ![]() ![]() |
Naro | 1 | 1 | 0 | 0 | Final flight |
Pegasus-XL | ![]() |
Pegasus | 1 | 1 | 0 | 0 | |
PSLV-CA | ![]() |
PSLV | 1 | 1 | 0 | 0 | |
PSLV-XL | ![]() |
PSLV | 2 | 2 | 0 | 0 | |
Proton-M / Briz-M | ![]() |
Proton | 9 | 9 | 0 | 0 | |
Proton-M / Blok DM-03 | ![]() |
Proton | 1 | 0 | 1 | 0 | |
Rokot / Briz-KM | ![]() |
UR-100 | 4 | 3 | 0 | 1 | |
Soyuz-2.1a | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | |
Soyuz-2.1a / Fregat-M | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | |
Soyuz-2.1b | ![]() |
Soyuz-2 | 2 | 2 | 0 | 0 | |
Soyuz-2.1b / Fregat-M | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | |
Soyuz ST-B / Fregat-MT | ![]() |
Soyuz-2 | 2 | 2 | 0 | 0 | |
Soyuz-2-1v / Volga | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | Maiden flight |
Soyuz-FG | ![]() |
Soyuz | 4 | 4 | 0 | 0 | |
Soyuz-U | ![]() |
Soyuz | 4 | 4 | 0 | 0 | |
Strela | ![]() |
UR-100 | 1 | 1 | 0 | 0 | |
Vega | ![]() |
Vega | 1 | 1 | 0 | 0 | |
Zenit-3SL | ![]() |
Zenit | 1 | 0 | 1 | 0 | |
Zenit-3SLB | ![]() |
Zenit | 1 | 1 | 0 | 0 |
按发射场
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
5
10
15
20
25
30
China
France
India
International waters
Japan
Kazakhstan
South Korea
Russia
United States
Site | Country | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|
Baikonur | ![]() |
23 | 22 | 1 | 0 | |
Cape Canaveral | ![]() |
10 | 10 | 0 | 0 | |
Dombarovsky | ![]() |
2 | 2 | 0 | 0 | |
Kourou | ![]() |
7 | 7 | 0 | 0 | |
Jiuquan | ![]() |
7 | 7 | 0 | 0 | |
MARS | ![]() |
4 | 4 | 0 | 0 | |
Naro | ![]() |
1 | 1 | 0 | 0 | |
Ocean Odyssey | ![]() |
1 | 0 | 1 | 0 | |
Plesetsk | ![]() |
7 | 6 | 0 | 1 | |
Satish Dhawan | ![]() |
3 | 3 | 0 | 0 | |
Tanegashima | ![]() |
2 | 2 | 0 | 0 | |
Taiyuan | ![]() |
5 | 4 | 1 | 0 | |
Uchinoura | ![]() |
1 | 1 | 0 | 0 | |
Vandenberg | ![]() |
5 | 5 | 0 | 0 | Includes Pegasus-XL launch whose carrier aircraft took off from Vandenberg |
Xichang | ![]() |
3 | 3 | 0 | 0 | |
Total | 81 | 77 | 3 | 1 |
按轨道
[编辑]
已隱藏部分未翻譯内容,歡迎參與翻譯。
10
20
30
40
50
- Transatmospheric
- Low Earth
- Low Earth (ISS)
- Low Earth (SSO)
- Low Earth (retrograde)
- Medium Earth
- Geosychronous
(transfer) - Inclined GSO
- High Earth
- Heliocentric
Orbital regime | Launches | Successes | Failures | Accidentally achieved |
Remarks |
---|---|---|---|---|---|
Transatmospheric | 0 | 0 | 0 | 0 | |
Low Earth | 48 | 47 | 1 | 0 | 12 to ISS, 1 to Tiangong-1 |
Medium Earth / Molniya | 4 | 3 | 1 | 0 | |
Geosynchronous / GTO | 24 | 23 | 1 | 0 | |
High Earth / Lunar transfer | 3 | 3 | 0 | 0 | MOM was initially placed in a highly elliptical Earth orbit and performed Trans-Mars injection under its own power |
Heliocentric / Planetary transfer | 2 | 2 | 0 | 0 | |
Total | 81 | 78 | 3 | 0 |
参考
[编辑]- 中国国家航天局
- 中国探月网
- Encyclopedia Astronautica
- Gunter's Space Page - Chronology of Space Launches
- 日本宇宙航空研究開發機構
- Jonathan's Space Report(SatCat.txt与Launchlog.txt两项)
- Mission Set Database (NASA GFC)
- NASA
- NASA SpaceFlight.com
- Orbital Report News Agency's Launch Logs
- Space Calander (NASA JPL)
- Southwest Space Archive
- SPACE.com Launch Forecast
- SpaceFlightNow
- Steven Pietrobon's Space Archive
- U.S. Space Objects Registry
引用
[编辑]- ^ Bergin, Chris. Stars align for Orbital's Antares – A-One debut set for mid-April. NASA Spaceflight. 17 March 2013 [22 April 2013].
- ^ Thomas, Arun. Mangalyan. CNN.
- ^ Russia Launches Three Military Satellites. RIA Novosti. 15 January 2013 [16 January 2013]. (原始内容存档于18 January 2013). 已忽略未知参数
|df=
(帮助) - ^ IGS 8B (DEMO). N2YO.com. [9 December 2019].
- ^ STSAT 2C. N2YO.com. [9 December 2019].
- ^ Sea Launch's Intelsat-27 FROB Report Complete. Sea Launch. [6 July 2013]. (原始内容存档于9 May 2013).
- ^ OSSI 1. N2YO.com. [9 December 2019].
- ^ Press Release: Break-up of Russian-owned space object. U.S. Space Command. 27 June 2024 [14 January 2024].
- ^ Спутник "Ресурс-П" №1 вывели из состава группировки после отказа бортовой аппаратуры [Satellite "Resurs-P" No. 1 was withdrawn from the group after the failure of on-board equipment]. TASS. 18 January 2022 [20 January 2022] (俄语).
- ^ COSMOS 2487. N2YO.com. 29 November 2022 [18 December 2022].
- ^ Vladimir Kirillov. Russia on the Market of High Resolution Space Images. Moscow Defense Brief. [2008-05-07]. (原始内容存档于21 September 2008).
- ^ Zak, Anatoly. Russia's Proton crashes with a trio of navigation satellites. RussianSpaceWeb.com. [11 December 2013]. (原始内容存档于12 August 2015).
- ^ Detailed Mission Data. [2012-03-22]. (原始内容存档于17 February 2013). 已忽略未知参数
|df=
(帮助) - ^ About Epsilon Launch Vehicle. JAXA. [14 August 2021].
- ^ Completed: More than 10 years of observations. ISAS/JAXA. [8 December 2023].
- ^ Barbosa, Rui C. Kuaizhou – China secretly launches new quick response rocket. NASASpaceflight.com. 25 September 2013.
- ^ KUAIZHOU-1. N2YO.com. [9 December 2019].
- ^ CASSIOPE. MDA Corporation. [28 August 2013]. (原始内容存档于2 October 2013).
- ^ 19.0 19.1 19.2 19.3 19.4 Messier, Doug. A Preview of Falcon 9′s Flight From Vandenberg. Parabolic Arc. 2013-09-10 [2013-09-11].
- ^ Jonathan McDowell [@planet4589]. The Jianbing-7 03 radar satellite, cover name Yaogan 18, reentered at 0035 UTC Apr 7 over the South Atlantic. It was launched in Oct 2013, operated until Feb 2019, and had its orbit lowered from Apr-Jul 2020; it underwent uncontrolled decay since 2020 Jul 7. (推文). 8 April 2021 –通过Twitter.
- ^ India to launch Mars Orbiter Mission on November 5. The Times of India. 22 October 2013 [4 October 2019].
- ^ MAVEN official site
- ^ Rawcliffe, Britt. ORS-3 and Minotaur 1 launch tiny CubeSats full of big promise. SpaceFlight Insider. 20 November 2013 [4 October 2019].
- ^ MINOTAUR R/B. N2YO.com. [10 December 2019].
- ^ STPSAT-3. N2YO.com. 11 March 2023 [30 March 2023].
- ^ ORSES. N2YO.com. [10 December 2019].
- ^ ORS TECH 1. N2YO.com. [10 December 2019].
- ^ ORS TECH 2. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-1. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-2. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-3. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-4. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-5. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-6. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-7. N2YO.com. [10 December 2019].
- ^ PROMETHEUS 1-8. N2YO.com. [10 December 2019].
- ^ SENSE SV1. N2YO.com. [10 December 2019].
- ^ SENSE SV2. N2YO.com. [10 December 2019].
- ^ FIREFLY. N2YO.com. [10 December 2019].
- ^ HORUS. N2YO.com. [10 December 2019].
- ^ BLACK KNIGHT. N2YO.com. [10 December 2019].
- ^ NPS-SCAT. N2YO.com. [10 December 2019].
- ^ DRAGONSAT. N2YO.com. [10 December 2019].
- ^ COPPER. N2YO.com. [10 December 2019].
- ^ CHARGERSAT. N2YO.com. [10 December 2019].
- ^ TJ3SAT. N2YO.com. [10 December 2019].
- ^ TRAILBLAZER. N2YO.com. [10 December 2019].
- ^ VERMONT LUNAR. N2YO.com. [10 December 2019].
- ^ SWAMPSAT. N2YO.com. [10 December 2019].
- ^ CAPE-2. N2YO.com. [10 December 2019].
- ^ HO OPONOPONO 2. N2YO.com. 26 August 2021 [30 March 2023].
- ^ KYSAT II. N2YO.com. [10 December 2019].
- ^ PHONESAT 2.4. N2YO.com. [10 December 2019].
- ^ Graham, William. Russian Dnepr conducts record breaking 32 satellite haul. NASASpaceFlight. 21 November 2013 [9 December 2019].
- ^ BEAKERSAT 1. N2YO.com. [9 December 2019].
- ^ 50 SAT. N2YO.com. [9 December 2019].
- ^ Chang'e-3: China To Launch First Moon Rover In 2013. Asian Scientist. 7 March 2012.
- ^ China's Chang'e-3 to land on moon next year. China Daily. 11 November 2012.
- ^ AEROCUBE 5A. N2YO.com. 19 April 2023 [2 December 2023].
- ^ AEROCUBE 5B. N2YO.com. 23 November 2022 [18 December 2022].
- ^ Jonathan McDowell [@planet4589]. Unlike the two later sats, Kosmos-2491 did not change its orbit. It appeared to end its mission in 2014. However, at about 1321 UTC on 2019 Dec 23, the satellite made a 1.5m/s orbit change and 10 debris objects have now been cataloged. (推文). 11 January 2020 [8 February 2023] –通过Twitter.
- ^ Berger, Eric. Mysterious Russian satellites are now breaking apart in low-Earth orbit. Ars Technica. 8 February 2023 [8 February 2023].
- ^ Iran Says It Sent Monkey Into Space and Back. abc. [29 January 2013].
- ^ Sounding Rocket to Calibrate NASA's SDO Instrument
- ^ Venus Spectral Rocket Experiment. NASA. [2013-11-27]. (原始内容存档于31 August 2014). 已忽略未知参数
|df=
(帮助) - ^ Pete Harding. Cosmonauts successfully conclude Russian spacewalk. 2013-04-19 [2013-04-19].
- ^ NASA. Spacewalkers Deploy Plasma Experiment, Install Navigational Aid. 2013-04-19 [2013-04-19].
- ^ Pete Harding and Chris Bergin. Successful EVA likely to have resolved ammonia leak. 2013-05-11 [2013-05-13].
- ^ NASA. Astronauts Complete Spacewalk to Repair Ammonia Leak. 2013-05-11 [2013-05-12].
- ^ Chris Bergin. Russian duo complete ambitious ISS spacewalk. 2013-06-24 [2013-06-25].
- ^ NASA. Cosmonauts Complete Spacewalk to Prepare Station for New Russian Lab. 2013-06-24 [2013-06-25].
- ^ Chris Bergin. EVA-22: Cassidy and Parmitano complete ISS spacewalk. 2013-07-09 [2013-07-10].
- ^ NASA. Station Astronauts Complete First of Two July Spacewalks. 2013-07-09 [2013-07-10].
- ^ Miriam Kramer. NASA Cuts Spacewalk Short After Water Leak Inside Astronaut's Spacesuit. Space.com. 2013-07-16 [2013-07-16].
- ^ Pete Harding. EVA-23 terminated due to Parmitano EMU issue. 2013-07-16 [2013-07-17].
- ^ NASA. Tuesday Spacewalk Ended Early. 2013-07-16 [2013-07-17].
- ^ Chris Bergin. Russian EVA breaks record – EMU troubleshooting continues. 2013-08-16 [2013-08-16].
- ^ NASA. Spacewalkers Wire Up Station for Future Lab. 2013-08-16 [2013-08-16].
- ^ Chris Bergin. Russian duo complete EVA-35 – Luca recalls EVA drama. 2013-08-22 [2013-08-22].
- ^ NASA. Spacewalkers Install Camera Platform, Inspect Station. 2013-08-22 [2013-08-22].
- ^ Chris Bergin. Troublesome ISS EVA conducts Olympic torch relay in space. 2013-11-09 [2013-11-11].
- ^ NASA. Olympic Torch Highlights Station Spacewalk. 2013-11-09 [2013-11-11].
- ^ NASA. Space Station Crew Removes Ammonia Pump; Next Spacewalk Set for Tuesday. 2013-12-21 [2013-12-21].
- ^ NASA. Spacewalkers Complete Installation of Ammonia Pump Module. 2013-12-24 [2013-12-24].
- ^ Robert Z. Pearlman. Spacewalking Astronauts Gift Space Station with Christmas Eve Cooling Pump Fix. Space.com. 2013-12-24 [2013-12-24].
- ^ NASA. Station Cosmonauts Complete Spacewalk to Deploy Cameras. 2013-12-27 [2013-12-28].
- ^ Chris Bergin. Russian duo break EVA record – Main task suffers issue. 2013-12-27 [2013-12-28].