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2012年航天活動列表
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2012年,航天領域發生了許多重大事件。商業軌道運輸服務的前兩次補給任務分別在5月和10月進行,SpaceX貨運龍飛船由此成為第一艘與國際太空站對接的私人太空船;6月,中國發射了神舟九號載人飛船,朝鮮則於12月成功實現了首次軌道發射。2012年,中國成功完成首次小行星探測任務,美國宇航局的『好奇號探測器』則成功登陸火星。歐空局的織女星和朝鮮的銀河3號運載火箭於2012年首次飛行,而俄羅斯航太的質子K型則進行了最後一次飛行。
快速預覽 軌道發射, 首次 ...
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軌道發射 | |
---|---|
首次 | 1月9日 |
末次 | 12月19日 |
總計 | 77 |
成功 | 72 |
失敗 | 2 |
部分失敗 | 3 |
識別碼 | 75 |
各國的首次 | |
衛星 | ![]() ![]() ![]() ![]() ![]() |
軌道發射 | ![]() |
火箭 | |
處女航 | |
退役 | |
載人太空飛行 | |
軌道飛行次數 | 5 |
載人太空飛行人數合計 | 15 |
艙外活動次數 | 5 |
關閉
2012年共嘗試了77次軌道發射,其中72次成功,3次部分成功,2次失敗。2012年共進行了5次載人軌道任務,全部成功,共將15名太空人送入軌道。這一年還進行了5次國際太空站太空人艙外活動。2012年的大部分軌道發射是由俄羅斯、中國和美國進行的,分別進行了29次、19次和13次發射。全年共發射通訊導航衛星、貨運飛船、科學探測器等載荷139個。此外,科研和軍事組織還發射了大量亞軌道探空火箭和彈道導彈。
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軌道級航天活動概述
2012年共嘗試了77次軌道發射,其中72次宣布成功,共發射了139個載荷。[1]發射記錄中最成功的三個國家分別是俄羅斯,共發射29次,其中27次成功;中國,發射19次,全部成功;美國,發射13次,其中12次成功,1次部分失敗。[1]歐洲國家進行了8次軌道發射,全部成功,而印度和日本各進行了2次軌道發射,也均取得成功。2012年,伊朗和朝鮮均成功進行了一次軌道發射,也均遭遇了一次發射失敗。
2012年共進行了五次載人軌道發射,全部成功,共將15名太空人送入軌道。其中四次任務由俄羅斯聯盟號飛船執行,第五次任務由中國神舟飛船執行。[2]本年度的所有載人太空飛行任務均與太空站對接——四次聯盟號飛船與國際太空站對接,中國的神舟九號飛船與天宮一號目標飛行器對接。2012年還進行了五次艙外活動,全部由國際太空站乘組人員進行。[3][4][5][6][7]
2012年發生了許多無人探測航天史上的重大里程碑事件,包括8月美國宇航局的「好奇號」探測器登陸火星[8],以及5月和10月向國際太空站進行的頭兩次商業補給任務[9][10],10月的那次飛行也標誌着SpaceX龍飛船的首次全面投入使用。在太陽系的其他區域,美國宇航局的「曙光」號於2012年9月完成了對灶神星的探測任務[11],而中國則於12月首次飛掠小行星。
軌道發射
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更多資訊 發射時間 (UTC), 運載火箭 ...
發射時間 (UTC) | 運載火箭 | 火箭編號 | 發射場 | 發射服務提供商(英語:List of launch service providers) | ||||
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載荷 (⚀ = 立方星) |
載荷用戶 | 軌道 | 功能 | 再入時間 (UTC) | 結果 | |||
附註 | ||||||||
January | ||||||||
9 January 03:17:09 |
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MLR | Low Earth (SSO) | Earth observation | 在軌 | Operational[12] | |||
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Luxspace | Low Earth (SSO) | Communications | 27 October 2016[13] | Successful | |||
13 January 00:56:04 |
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CMA | Geosynchronous | Meteorology | 在軌 | Operational[15] | |||
20 January 00:38:00 |
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U.S. Air Force | Geosynchronous | Communications | 在軌 | Operational[16] | |||
25 January 23:06:40 |
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Roscosmos | Low Earth (ISS) | ISS logistics | 28 April 13:46 |
Successful[17] | |||
February | ||||||||
3 February 00:04 |
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ERS.2002 | ![]() |
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ISA | Low Earth | Earth observation | 1 April[18] | Successful[19] | |||
13 February 10:00:00 |
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ASI | Low Earth | Geodesy | 在軌 | Operational[20] | |||
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Università di Bologna | Low Earth | Technology demonstration | 在軌 | Operational[20] | |||
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Vigo/INTA | Low Earth | Technology demonstration | 31 August 2014 | Successful[20] | |||
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Rome | Low Earth | Atmospheric science | 16 February 2015[23] | Successful | |||
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Montpellier | Low Earth | Technology demonstration | 28 January 2015[24] | Partial spacecraft failure | |||
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Torino | Low Earth | Technology demonstration | 16 January 2015[25] | Partial spacecraft failure | |||
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Bucharest | Low Earth | Technology demonstration | 31 December 2014 | Partial spacecraft failure[20] | |||
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Warsaw | Low Earth | Technology demonstration | 28 October 2014 | Successful[20] | |||
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BME | Low Earth | Technology demonstration | 9 January 2015[26] | Successful | |||
Maiden flight of Vega rocket; all payloads CubeSats except LARES and ALMASat-1. First Hungarian, Romanian and Polish satellites. | ||||||||
14 February 19:36:37 |
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SES World Skies | Geosynchronous | Communications | 在軌 | Operational[27] | |||
24 February 16:12:04 |
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CNSA | Geosynchronous | Navigation | 在軌 | Operational[28] | |||
24 February 22:15:00 |
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U.S. Navy | Geosynchronous | Communications | 在軌 | Operational[29] | |||
March | ||||||||
23 March 04:34:05 |
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ESA | Low Earth (ISS) | ISS logistics | 3 October 01:23 |
Successful[30] | |||
25 March 12:10:32 |
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Intelsat | Geosynchronous | Communications | 在軌 | Operational[31] | |||
30 March 05:49:32 |
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VKO | Geosynchronous | Missile defense | 在軌 | Operational[32] | |||
Final flight of Proton-K, final US-KMO satellite. | ||||||||
31 March 10:27:04 |
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APT Satellite Holdings | Geosynchronous | Communication | 在軌 | Operational[33] | |||
April | ||||||||
3 April 23:12:57 |
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NRO | Low Earth | Reconnaissance | 在軌 | Operational[34] | |||
NRO Launch 25 | ||||||||
12 April 22:38:55 |
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KCST | Intended: Low Earth | Technology demonstration | 12 April | Launch failure[35] | |||
Probable first stage failure, disintegrated over the Yellow Sea.[35] | ||||||||
20 April 12:50:24 |
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Roscosmos | Low Earth (ISS) | ISS logistics | 20 August 2012 | Successful[37] | |||
23 April 22:18:13 |
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Yahsat | Geosynchronous | Communications | 在軌 | Operational[38] | |||
26 April 00:17 |
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ISRO | Low Earth (SSO) | Earth observation[39] | 在軌 | Operational[40] | |||
29 April 20:50:03[41] |
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CNSA | Medium Earth | Navigation | 在軌 | Operational[41] | |||
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CNSA | Medium Earth | Navigation | 在軌 | Operational[41] | |||
May | ||||||||
4 May 18:42:00 |
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U.S. Air Force | Geosynchronous | Communications | 在軌 | Operational[42] | |||
6 May 07:10:04[43] |
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CNSA | Low Earth (SSO) | Earth observation | 在軌 | Operational[43] | |||
10 May 07:06:04[44] |
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CNSA | Low Earth (SSO) | Reconnaissance | 在軌 | Operational[44] | |||
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NUDT | Low Earth (SSO) | Technology demonstration | 3 November 2014 | Successful | |||
15 May 03:01:23 |
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Roscosmos | Low Earth (ISS) | Expedition 31/32 | 17 September 02:53 |
Successful[45] | |||
Crewed flight | ||||||||
15 May 22:13:07 |
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SKY Perfect JSAT Group | Geosynchronous | Communications | 在軌 | Operational[46] | |||
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VNPT | Geosynchronous | Communications | 在軌 | Operational[47] | |||
17 May 14:05 |
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VKO | Low Earth | Reconnaissance | 24 September | Successful[48] | |||
Final Soyuz-U launch from Plesetsk. | ||||||||
17 May 16:39 |
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JAXA / NASA | Low Earth (SSO) | Earth observation | 在軌 | Operational[49] | |||
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KARI | Low Earth (SSO) | Earth observation | 在軌 | Operational[49] | |||
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JAXA | Low Earth (SSO) | Technology demonstration | 在軌 | Successful | |||
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KIT | Low Earth (SSO) | Technology demonstration Amateur radio |
在軌 | Successful[50] | |||
17 May 19:12:14 |
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Telesat | Geosynchronous | Communications | 在軌 | Operational[51] | |||
22 May 07:44:38[9] |
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SpaceX / NASA | Low Earth (ISS) | Flight test ISS logistics |
31 May 16:42 |
Successful[55] | |||
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Celestis | Low Earth | Space burial | 27 June | Successful | |||
COTS Demo 2+,[52] orbital test manoeuvres and ISS rendezvous, berthing and cargo delivery. First commercial spacecraft to visit the ISS.[53] Celestis payload, containing cremated remains of 308 people including Gordon Cooper and James Doohan, remained intentionally attached to the upper stage.[54] | ||||||||
23 May[56] | ![]() |
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ISA | Planned: Low Earth[56] | Earth observation | 23 May | Launch failure | |||
Probable launch failure;[56] identity of launch attempt, rocket, satellite and launch time not confirmed. | ||||||||
26 May 15:56:04 |
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China Satcom | Geosynchronous | Communications | 在軌 | Operational[57] | |||
29 May 07:31:05 |
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CNSA | Low Earth (SSO) | Reconnaissance | 在軌 | Operational[58] | |||
June | ||||||||
1 June 05:22:59 |
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Intelsat | Geosynchronous | Communications | 在軌 | Partial spacecraft failure | |||
Second solar panel initially failed to deploy after launch.[59] It eventually deployed, but was damaged. | ||||||||
13 June 16:00:37 |
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NASA | Low Earth | X-ray astronomy | 在軌 | Operational[60] | |||
16 June 10:37:24[63] |
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Y9 | ![]() |
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CMSA | Low Earth (Tiangong-1) | Technology demonstration | 29 June 02:01[64] |
Successful[2] | |||
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CMSA | Low Earth (Tiangong-1) | Space rendezvous | 2 December | Successful | |||
Crewed flight; first Chinese woman in space,[61][62] and first crewed mission to Tiangong-1. | ||||||||
20 June 12:28 |
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NRO | Geosynchronous | Communications | 在軌 | Operational[66] | |||
NROL-38 mission. | ||||||||
29 June 13:15 |
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NRO | Geosynchronous | ELINT | 在軌 | Operational[67] | |||
NROL-15 mission. First flight of Delta IV with RS-68A engines. | ||||||||
July | ||||||||
5 July 21:36:07[68] |
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Hughes Network Systems | Geosynchronous | Communications | 在軌 | Operational | |||
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EUMETSAT | Geosynchronous | Meteorology | 在軌 | Operational | |||
9 July 18:38:30 |
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SES | Geosynchronous | Communications | 在軌 | Operational[69] | |||
15 July 02:40:03 |
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Roscosmos | Low Earth (ISS) | Expedition 32/33 | 19 November 01:56 |
Successful[70] | |||
Crewed flight | ||||||||
21 July 02:06:18[71] |
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JAXA | Low Earth (ISS) | ISS logistics | 14 September | Successful[74] | |||
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Wakayama/Tohuku | Low Earth | Technology demonstration | 6 August 2013[75] | Successful | |||
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FIT | Low Earth | Technology demonstration | 4 July 2013[76] | Successful | |||
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Meisei Electric | Low Earth | Technology demonstration | 11 March 2013[77] | Successful | |||
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FPT | Low Earth | Technology demonstration | May 2013[78] | Successfully deployed, but no signal was received.[79] | |||
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San Jose | Low Earth | Technology demonstration | 5 May 2013[80] | Successful | |||
All payloads CubeSats other than Kounotori 3. CubeSats carried aboard Kounotori and deployed from the ISS. | ||||||||
22 July 06:41:39 |
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Roscosmos | Low Earth (SSO) | Earth observation | 在軌 | Operational[81] | |||
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NASRB | Low Earth (SSO) | Earth observation | 在軌 | Operational[81] | |||
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Roscosmos | Low Earth (SSO) | Technology demonstration Earth observation |
在軌 | Spacecraft failure[82] | |||
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DLR | Low Earth (SSO) | Technology demonstration | 18 November 2022[83] | Successful | |||
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exactEarth | Low Earth (SSO) | AIS ship tracking | 在軌 | Operational[81] | |||
First Belarusian satellite. | ||||||||
25 July 15:43:04 |
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CNSA | Geosynchronous | Communications | 在軌 | Operational[84] | |||
28 July 01:35:34[85] |
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Gonets Satellite System | Low Earth | Communications | 在軌 | Operational | |||
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Gonets Satellite System | Low Earth | Communications | 在軌 | Operational | |||
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VKO | Low Earth | Communications | 在軌 | Operational | |||
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NPO PM | Low Earth | Amateur radio Technology demonstration |
在軌 | Operational | |||
August | ||||||||
1 August 19:35:13 |
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Roscosmos | Low Earth (ISS) | ISS logistics | 9 February 2013 | Successful[87] | |||
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Roscosmos | Low Earth | Atmospheric density | 24 November[88] | Successful[89] | |||
Fast rendezvous test;[86] Sfera-53 deployed from ISS at 18:29 UTC on 20 August during a spacewalk. | ||||||||
2 August 20:54 |
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Intelsat | Geosynchronous | Communications | 在軌 | Operational[90] | |||
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Avanti | Geosynchronous | Communications | 在軌 | Operational[90] | |||
6 August 19:31:00 [92] |
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PT Telkom | Planned: Geosynchronous Achieved: Medium Earth |
Communications | 5 February 2021 [93] | Launch failure[94] | |||
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RSCC | Planned: Geosynchronous Achieved: Medium Earth |
Communications | In orbit | ||||
Briz-M stage failure 7 seconds into its third burn.[91] Stage exploded on 16 October, generating over 500 pieces of orbital debris. | ||||||||
19 August 06:54:59 |
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Intelsat | Geosynchronous | Communications | 在軌 | Operational[95] | |||
30 August 08:05:27[98] |
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NASA | Highly elliptical | Magnetospheric research | 在軌 | Successful | |||
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NASA | Highly elliptical | Magnetospheric research | 在軌 | Successful | |||
Launch of the two Van Allen Probes, formerly known as the Radiation Belt Storm Probes. Van Allen Probe B ceased operations on 19 July 2019;[96] Van Allen Probe A was deactivated on 18 October 2019.[97] | ||||||||
September | ||||||||
9 September 04:23 |
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CNES | Low Earth (SSO) | Earth observation | 在軌 | Operational[99] | |||
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Osaka Institute of Technology | Low Earth (SSO) | Amateur radio Technology demonstration |
在軌 | Operational[99] | |||
13 September 21:39:00[100] |
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NRO | Low Earth | ELINT | 在軌 | Operational | |||
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NRO | Low Earth | ELINT | 在軌 | Operational | |||
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UCB | Low Earth | Magnetospheric research | 在軌 | Operational | |||
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Morehead | Low Earth | X-ray astronomy | 在軌 | Operational | |||
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CalPoly | Low Earth | Technology demonstration | 在軌 | Operational | |||
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CU-Boulder | Low Earth | Magnetospheric research | 在軌 | Operational | |||
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USC / NRO | Low Earth | Technology demonstration | 在軌 | Operational | |||
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Lawrence Livermore | Low Earth | Technology demonstration | 在軌 | Operational | |||
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U.S. Army | Low Earth | Technology demonstration | 在軌 | Operational | |||
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U.S. Army | Low Earth | Technology demonstration | 在軌 | Operational | |||
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The Aerospace Corporation | Low Earth | Technology demonstration | 在軌 | Operational | |||
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The Aerospace Corporation | Low Earth | Technology demonstration | 在軌 | Operational | |||
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The Aerospace Corporation | Low Earth | Technology demonstration | 在軌 | Operational | |||
NRO Launch 36 | ||||||||
17 September 16:28:40 |
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EUMETSAT | Low Earth (SSO) | Meteorology | 在軌 | Operational[101] | |||
18 September 19:10:04 |
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CNSA | Medium Earth | Navigation | 在軌 | Operational[102] | |||
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CNSA | Medium Earth | Navigation | 在軌 | Operational[102] | |||
28 September 21:18:07 |
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SES | Geosynchronous | Communications | 在軌 | Operational[103] | |||
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ISRO | Geosynchronous | Communications | 在軌 | Operational[104] | |||
29 September[105] 04:12:04 |
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MPPCTII | Low Earth (SSO) | Earth observation | 在軌 | Operational[106] | |||
October | ||||||||
4 October 12:10:00 |
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U.S. Air Force | Medium Earth | Navigation | 在軌 | Operational[107] | |||
8 October 00:35:07[109] |
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NASA | Low Earth (ISS) | ISS logistics | 28 October 19:22[10] |
Successful[10] | |||
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Orbcomm | Low Earth | Communications | 10 October | Launch failure[110][111] | |||
First flight of Commercial Resupply Services programme.[108] First stage engine failure resulted in a too-low orbit for Orbcomm payload; CRS-1 nonetheless placed into correct orbit. | ||||||||
12 October 18:15:01 |
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ESA | Medium Earth | Navigation | 在軌 | Operational[112] | |||
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ESA | Medium Earth | Navigation | 在軌 | Operational[112] | |||
14 October 03:25:05 |
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CNSA | Low Earth (SSO) | Technology demonstration | 在軌 | Operational[113] | |||
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CNSA | Low Earth (SSO) | Technology demonstration | 在軌 | Operational[113] | |||
14 October 08:37:00 |
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Intelsat | Geosynchronous | Communications | 在軌 | Operational[114] | |||
23 October 10:51:11[115] |
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Roscosmos | Low Earth (ISS)[116] | Expedition 33/34 | 16 March 2013 03:06 |
Successful[117] | |||
Crewed flight | ||||||||
25 October 15:33:04 |
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CNSA | Geosynchronous | Navigation | 在軌 | Operational[119] | |||
Compass navigation system became commercially operational in Asia-Pacific region in December 2012.[118] | ||||||||
31 October 07:41:18 |
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Roscosmos | Low Earth (ISS) | ISS logistics | 21 April 2013 | Successful[121] | |||
November | ||||||||
2 November 21:04:00 |
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Gonets Satellite System | Geosynchronous | Communications | 在軌 | Operational[122] | |||
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Gazprom | Geosynchronous | Communications | 在軌 | Operational[122] | |||
10 November 21:05:07 |
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Eutelsat | Geosynchronous | Communications | 在軌 | Operational[123] | |||
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Star One | Geosynchronous | Communications | 在軌 | Operational[123] | |||
14 November 11:42:46 |
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VKO | Molniya | Communications | 在軌 | Operational[124] | |||
18 November 22:53:04[125] |
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CNSA | Low Earth (SSO) | Earth observation | 1 March 2023[126] | Successful | |||
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CASC | Low Earth (SSO) | Technology demonstration | 5 October 2019[127] | Successful | |||
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SAST | Low Earth (SSO) | Technology demonstration | 11 January 2024[128] | Successful | |||
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SAST | Low Earth (SSO) | Technology demonstration | 11 January 2024[129] | Deployment failure | |||
20 November 18:31:00 |
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EchoStar | Geosynchronous | Communications | 在軌 | Operational[130] | |||
25 November 04:06:04 |
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CNSA | Low Earth | ELINT | 在軌 | Operational[131] | |||
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CNSA | Low Earth | ELINT | 在軌 | Operational[131] | |||
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CNSA | Low Earth | ELINT | 在軌 | Operational[131] | |||
27 November 10:13:03[132] |
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China Satcom / SupremeSAT | Geosynchronous | Communications | 在軌 | Operational[132] | |||
Part of satellite's communications payload was leased to SupremeSAT, a Sri Lankan satellite operator, as SupremeSAT-I. | ||||||||
December | ||||||||
2 December 02:02:51 |
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CNES | Low Earth (SSO) | Earth observation/Reconnaissance | 在軌 | Operational[133] | |||
3 December 20:43:59 |
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Eutelsat | Geosynchronous | Communications | 在軌 | Operational[134] | |||
8 December 13:13:43 |
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Gazprom | Geosynchronous | Communications | 在軌 | Operational; partial launch failure[136] | |||
Briz-M stage failure 4 minutes before scheduled shut down on its fourth burn.[135] | ||||||||
11 December 18:03 |
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U.S. Air Force | Low Earth | Technology demonstration | 17 October 2014 | Successful[137][138] | |||
270-day X-37B endurance mission ultimately extended to over 680 days.[137] | ||||||||
12 December 00:49:46[141][142] |
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KCST | Low Earth | Technology demonstration | 在軌 | Spacecraft failure[140] | |||
First successful North Korean orbital launch, first North Korean satellite;[139] satellite reached orbit but malfunctioned thereafter.[140] | ||||||||
18 December 16:13:04[143] |
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MSB | Low Earth (SSO) | Earth observation | 在軌 | Operational[144] | |||
19 December 12:12:35 |
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Roscosmos | Low Earth (ISS) | Expedition 34/35 | 14 May 2013 02:31 |
Successful[145] | |||
Crewed flight | ||||||||
19 December 21:49:07 |
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Astrium | Geosynchronous | Communications | 在軌 | Operational[146] | |||
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SCT | Geosynchronous | Communications | 在軌 | Operational[146] | |||
Skynet 5D military communications satellite operated by Astrium Services on behalf of the British Ministry of Defence. |
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亞軌道發射
已隱藏部分未翻譯內容,歡迎參與翻譯。
更多資訊 發射時間 (UTC), 運載火箭 ...
發射時間 (UTC) | 運載火箭 | 火箭編號 | 發射場 | 發射服務提供商(英語:List of launch service providers) | |||
---|---|---|---|---|---|---|---|
載荷 (⚀ = 立方星) |
載荷用戶 | 軌道 | 功能 | 再入時間 (UTC) | 結果 | ||
附註 | |||||||
11 January 13:25 |
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NASA | Suborbital | Test flight | 11 January | Successful[148] | |||
11 January 20:51 |
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JAXA/HU/TU/TU/TPU/KU/KUT | Suborbital | Atmospheric science | 11 January | Successful[149] | |||
24 January | ![]() |
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IAI/IDF | Suborbital | ABM Test | 24 January | Successful[150] | |||
First test flight of the Arrow-III | |||||||
10 February 04:40 |
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DRDO | Suborbital | Target | 10 February | Successful[151] | |||
Target for ABM test, successfully intercepted | |||||||
10 February | ![]() |
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Israeli Air Force | Suborbital | ABM target | 10 February | Successful[152] | |||
Arrow-3 tracking target | |||||||
13 February 09:32 |
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SSC | Suborbital | Microgravity | 13 February | Successful[153] | ||
19 February 05:41 |
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UNH | Suborbital | Auroral research | 19 February | Successful[154] | |||
22 February | ![]() |
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US Navy | Suborbital | Missile test | 22 February | Successful[155] | |||
Demonstration and Shakedown Operation 23 (DASO-23) | |||||||
25 February 10:46 |
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US Air Force | Suborbital | Test flight | 25 February | Successful[156] | |||
22 March 09:00 |
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Caltech | Suborbital | Astronomy | 22 March | Successful[157] | ||
27 March 08:58 |
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Clemson | Suborbital | Geospace | 27 March | Successful[158] | ||
27 March 08:59 |
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Clemson | Suborbital | Geospace | 27 March | Successful[158] | ||
27 March 09:00 |
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Clemson | Suborbital | Geospace | 27 March | Successful[158] | ||
27 March 09:02 |
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Clemson | Suborbital | Geospace | 27 March | Successful[158] | ||
27 March 09:03 |
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Clemson | Suborbital | Geospace | 27 March | Successful[158] | ||
5 April 14:18 |
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ORS | Suborbital | Technology demonstration | 5 April | Successful[159] | |||
Apogee: 117公里(73英里), successfully recovered | |||||||
14 April | ![]() |
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US Navy | Suborbital | Test flight | 14 April | Successful[160] | |||
Follow-on Commander's Evaluation Test 45 | |||||||
14 April | ![]() |
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US Navy | Suborbital | Test flight | 14 April | Successful[160] | |||
Follow-on Commander's Evaluation Test 45 | |||||||
16 April | ![]() |
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US Navy | Suborbital | Test flight | 16 April | Successful[160] | |||
Follow-on Commander's Evaluation Test 46 | |||||||
16 April | ![]() |
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US Navy | Suborbital | Test flight | 16 April | Successful[160] | |||
Follow-on Commander's Evaluation Test 46 | |||||||
19 April 02:37 |
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DRDO | Suborbital | Test flight | 19 April | Successful[161] | |||
Apogee: 800公里(500英里), maiden flight of Agni-V | |||||||
23 April | ![]() |
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DSTO | Suborbital | Technology demonstration | 23 April | Launch failure | ||
Hypersonic research experiment, second stage of launch vehicle failed to ignite | |||||||
25 April | ![]() |
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ASFC | Suborbital | Test flight | 25 April | Successful[162] | |||
10 May 06:18 |
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FTM-16 E2a | ![]() |
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MDA | Suborbital | ABM target | 10 May | Successful[163] | |||
SM-3 Block 1B target | |||||||
10 May 06:21 |
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FTM-16 E2a | ![]() |
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US Navy | Suborbital | ABM test | 10 May | Successful[163] | |||
ARAV-A interceptor, successful intercept | |||||||
23 May 06:15 |
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RVSN | Suborbital | Missile test | 23 May | Successful[164] | |||
7 June 17:39 |
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RVSN | Suborbital | Missile test | 7 June | Successful[165] | |||
21 June 10:40 |
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Colorado | Suborbital | Student experiments | 21 June | Successful[166] | ||
22 June 19:18 |
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DLR | Suborbital | Technology demonstration | 22 June | Successful[167] | ||
23 June 19:30 |
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CU Boulder | Suborbital | SDO calibration | 23 June | Successful[168] | ||
27 June 09:15 |
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FTM-18 | ![]() |
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MDA | Suborbital | ABM target | 27 June | Successful[169] | |||
SM-3 Block 1B target | |||||||
27 June 09:18 |
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FTM-18 | ![]() |
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US Navy | Suborbital | ABM test | 27 June | Successful[169] | |||
Castor 4B interceptor, successful intercept | |||||||
3 July | ![]() |
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IGRC | Suborbital | Missile test | 3 July | Successful[170] | |||
Apogee: ~100公里(62英里) | |||||||
3 July | ![]() |
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IRGC | Suborbital | Missile test | 3 July | Successful[170] | |||
Apogee: ~100公里(62英里) | |||||||
3 July | ![]() |
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IRGC | Suborbital | Missile test | 3 July | Successful[170] | |||
Apogee: ~150公里(93英里) | |||||||
5 July 18:50 |
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NASA/MSFC | Suborbital | Solar research | 5 July | Successful[171] | ||
11 July 18:50 |
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NASA/MSFC | Suborbital | Solar research | 11 July | Successful[172] | ||
13 July 04:36 |
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IDRDL | Suborbital | Missile test | 13 July | Successful[173] | |||
Apogee: ~200公里(120英里) | |||||||
23 July 11:01 |
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NASA/Langley | Suborbital | Atmospheric entry test | 23 July | Successful[174] | ||
Apogee: ~285英里(459公里); part of the Hypersonic Inflatable Aerodynamic Decelerator programme | |||||||
24 July 19:17 |
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USC | Suborbital | Solar research | 24 July | Successful[175] | ||
7 August 07:30:00[176] |
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UT/JAXA/AGU/TKD/NU/TU/KIT | Suborbital | Technology demonstration | 7 August | Successful[178] | ||
9 August 03:16 |
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Indian Army | Suborbital | Missile test | 9 August | Successful[179] | |||
Apogee: 220公里(140英里) | |||||||
12 September | ![]() |
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DoD | Suborbital | Radar target | 12 September | Successful[180] | ||
Apogee: ~300公里(190英里) | |||||||
13 September 12:30 |
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US Army | Suborbital | Target | 13 September | Successful[181] | |||
Target for MIM-104 Patriot PAC-3 MSE test, successfully intercepted | |||||||
13 September | ![]() |
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DSTO | Suborbital | Technology demonstration | 13 September | Successful[182] | ||
Hypersonic research experiment, Apogee: 349公里(217英里) | |||||||
19 September 11:45[183] |
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Indian Army | Suborbital | Missile test | 19 September | Successful | |||
Apogee: 800公里(500英里) | |||||||
21 September 13:15[184] |
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Indian Army | Suborbital | Missile test | 21 September | Successful | |||
Apogee: 450公里(280英里) | |||||||
21 September 11:16 |
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NASA | Suborbital | Student experiments | 21 September | Successful[185] | ||
Apogee: ~153公里(95英里) | |||||||
22 September 11:00 |
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NASA | Suborbital | Rocket test | 22 September | Successful[186] | |||
Apogee: ~269公里(167英里) | |||||||
4 October 03:37 |
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DRDO | Suborbital | Missile test | 4 October | Successful[187] | |||
Apogee: ~100公里(62英里) | |||||||
5 October 05:55 |
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DRDO | Suborbital | Target | 5 October | Successful[188] | |||
Apogee: ~100公里(62英里) | |||||||
19 October 09:12 |
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RVSN | Suborbital | Missile test | 19 October | Successful[189] | |||
19 October | ![]() |
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VMF | Suborbital | Missile test | 19 October | Successful[189] | |||
23 October | ![]() |
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Royal Navy | Suborbital | Missile test | 23 October | Successful[190] | |||
24 October 18:29 |
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RVSN | Suborbital | Missile test | 24 October | Successful[191] | |||
25 October | ![]() |
FTI-01 | C-17 Globemaster III, Pacific Ocean | ![]() | |||
MDA/IMDO | Suborbital | ABM target | 25 October | Successful[192] | |||
Target for THAAD, successful intercept | |||||||
25 October | ![]() |
FTI-01 | ![]() |
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US Army/MDA | Suborbital | ABM test | 25 October | Successful[192] | |||
Intercepted target missile | |||||||
25 October | ![]() |
FTI-01 | ![]() |
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MDA | Suborbital | ABM target | 25 October | Successful[192] | |||
SM-3 Block 1A target | |||||||
25 October | ![]() |
FTI-01 | ![]() |
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US Navy | Suborbital | ABM test | 25 October | Spacecraft failure[192] | |||
ARAV-B interceptor, intercept failed | |||||||
25 October | ![]() |
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MDA | Suborbital | ABM target | 25 October | Successful[192] | |||
FTI-01, Patriot PAC-3 target, successfully intercepted | |||||||
2 November 17:55 |
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UC Berkeley | Suborbital | Solar research | 2 November | Successful[193] | ||
14 November 11:07 |
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US Air Force | Suborbital | Test flight | 14 November | Successful[194] | |||
21 November 10:55 |
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University of Massachusetts | Suborbital | Astronomy | 21 November | Successful[195] | ||
23 November | ![]() |
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DRDO | Suborbital | Target | 23 November | Successful[196] | |||
Target for ABM test, successfully intercepted | |||||||
25 November 11:20 |
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DLR | Suborbital | Technology demonstration | 25 November | Successful[197] | ||
Apogee: 140公里(87英里) | |||||||
28 November | ![]() |
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Army of Pakistan | Suborbital | Missile test | 28 November | Successful[198] | ||
Apogee: 100公里(62英里) | |||||||
8 December 21:00 |
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INPE | Suborbital | Microgravity | 8 December | Successful[199] | ||
Apogee: 428公里(266英里) | |||||||
13 December 05:20 |
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U of M | Suborbital | Astronomy | 13 December | Successful[200] | ||
17 December 07:00[201] |
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Tohoku/JAXA/Tokai | Suborbital | Microgravity | 17 December | Successful[202] | ||
Apogee: 312公里(194英里) | |||||||
20 December 03:51 |
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Strategic Force Command | Suborbital | Missile test | 20 December | Successful[203] | |||
Apogee: ~100公里(62英里) |
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深空機動
已隱藏部分未翻譯內容,歡迎參與翻譯。
更多資訊 日期 (UTC), 太空船 ...
日期 (UTC) | 太空船 | 事件 | 備註 |
---|---|---|---|
1 January | GRAIL-B | Lunar orbit insertion | Joined its twin, GRAIL-A, which entered lunar orbit on 31 December 2011.[204] |
2 January | Cassini | 80th flyby of Titan | Closest approach: 29,415公里(18,278英里).[205] |
30 January | Cassini | 81st flyby of Titan | Closest approach: 31,131公里(19,344英里).[205] |
19 February | Cassini | 82nd flyby of Titan | Closest approach: 3,803公里(2,363英里).[205] |
9 March | Cassini | Flyby of Enceladus | Closest approach: 9,000公里(5,600英里).[205] |
27 March | Cassini | 17th flyby of Enceladus | Closest approach: 74公里(46英里).[205] |
14 April | Cassini | 18th flyby of Enceladus Flyby of Tethys |
Closest approach to Enceladus: 74公里(46英里).[205] Closest approach to Tethys: 9,000公里(5,600英里).[205] |
2 May | Cassini | 20th flyby of Enceladus Flyby of Dione |
Closest approach to Enceladus: 74公里(46英里).[205] Closest approach to Dione: 8,000公里(5,000英里).[205] |
20 May | Cassini | Flyby of Methone Flyby of Telesto |
Closest approach to Methone: 2,000公里(1,200英里).[205] Closest approach to Telesto: 11,000公里(6,800英里).[205] |
21 May | Cassini | 83rd flyby of Titan | Closest approach: 955公里(593英里).[205] |
6 June | Cassini | 84th flyby of Titan | Closest approach: 959公里(596英里).[205] |
24 July | Cassini | 85th flyby of Titan | Closest approach: 1,012公里(629英里).[205] |
6 August | Curiosity | Landing on Mars in Gale Crater | Used the Sky Crane soft landing system. Successful landing at 05:14 UTC at coordinates 4.5895°S 137.4417°E / -4.5895; 137.4417.[8] |
5 September[11][206] | Dawn | Leaving Vestiocentric orbit | Headed for Ceres, which it reached on 6 March 2015.[207] |
26 September | Cassini | 86th flyby of Titan | Closest approach: 956公里(594英里).[205] |
13 November | Cassini | 87th flyby of Titan | Closest approach: 973公里(605英里).[205] |
29 November | Cassini | 88th flyby of Titan | Closest approach to Titan: 1,014公里(630英里).[205] |
13 December | Chang'e 2 | Flyby of 4179 Toutatis | First Chinese asteroid flyby. Closest approach to 4179 Toutatis: less than 1公里(0.62英里) (770 metres).[208] |
17 December | GRAIL | Lunar impact at "Sally K. Ride" site | Both GRAIL satellites concluded their mission by impacting the Moon's surface.[209][210] |
22 December | Cassini | Distant flyby of Titan Flyby of Rhea |
Closest approach to Titan: 715,000公里(444,000英里).[205] Closest approach to Rhea: 23,000公里(14,000英里).[205] |
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艙外活動
已隱藏部分未翻譯內容,歡迎參與翻譯。
更多資訊 開始時間, 持續時間 ...
開始時間 | 持續時間 | 結束時間 | 太空船 | 乘組 | 備註 |
---|---|---|---|---|---|
16 February 14:31[3] |
6 hours 15 minutes |
20:46 | Expedition 29/30
ISS Pirs |
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Moved Strela 1 crane from ISS Pirs module to Poisk module, installed four materials experiments on the exterior of the ISS, and installed supporting struts on the EVA ladder on Pirs. |
20 August 16:37[4] |
5 hours 51 minutes |
22:28 | Expedition 31/32
ISS Pirs |
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Relocated Strela 2 telescoping boom from Pirs docking compartment to Zarya control module, in preparation for undocking of Pirs, which will pave the way for arrival of the Russian Multipurpose Laboratory Module in 2013. Also installed micrometeoroid debris shields on Zvezda service module, retrieved two experiments from Pirs' exterior, installed two support struts for hatch ladder and deployed two small tracking satellites.[89] |
30 August 12:16 |
8 hours 17 minutes |
20:33 | Expedition 31/32
ISS Quest |
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Connected two power cables between the US and Russian orbital segments; removed and replaced Main Bus Switching Unit (MBSU) 1. The crew had difficulty in removing connecting bolts of the old MBSU, and were unable to tighten up the bolts for the new unit. The new MBSU was tied down for future trouble-shooting, with all other tasks deferred to a future EVA. Third-longest EVA in history.[5] |
5 September 11:06 |
6 hours 28 minutes |
17:34 | Expedition 31/32
ISS Quest |
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Installed the new MBSU unit, working around difficulty with one of the bolts; replaced one of the cameras mounted on the Canadarm2. During this spacewalk, Sunita Williams broke Peggy Whitson's 2007 record for most total time spacewalking by a woman.[6][211] |
1 November 12:29 |
6 hours 38 minutes |
19:07 | Expedition 32/33
ISS Quest |
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Reconfigured and isolated a leak in the ammonia cooling system of power channel 2B on the P6 truss by bypassing a leaking cooling loop and re-connecting jumpers to an unused loop of the Early External Thermal Control System (EETCS), and by redeploying the trailing Thermal Control Radiator of the system.[7][212] |
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軌道發射統計
就本章節的主旨而言,每次航天飛行所屬的國家以火箭的原產國為準,而不是發射服務提供商或發射場所在國。例如,西歐亞里安空間公司在南美洲圭亞那太空中心發射的聯盟號火箭應視作俄羅斯的發射,因為聯盟2號是俄羅斯火箭。

- 中國: 19
- 歐洲: 8
- 印度: 2
- 伊朗: 2
- 日本: 2
- 朝鮮: 2
- 俄羅斯: 26
- 烏克蘭: 3
- 美國: 13
已隱藏部分未翻譯內容,歡迎參與翻譯。
5
10
15
20
Ariane
Atlas
Delta
Falcon
H-II
Long March
PSLV
R-7
Safir
Unha
UR
Zenit
Others
By family
更多資訊 Family, Country ...
Family | Country | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|
Ariane | ![]() |
7 | 7 | 0 | 0 | |
Atlas | ![]() |
6 | 6 | 0 | 0 | |
Delta | ![]() |
4 | 4 | 0 | 0 | |
Falcon | ![]() |
2 | 1 | 0 | 1 | 8 October rocket failure only affected one of two payloads[110] |
H-II | ![]() |
2 | 2 | 0 | 0 | |
Long March | ![]() |
19 | 19 | 0 | 0 | |
Pegasus | ![]() |
1 | 1 | 0 | 0 | |
PSLV | ![]() |
2 | 2 | 0 | 0 | |
R-7 | ![]() |
14 | 14 | 0 | 0 | |
Safir | ![]() |
2 | 1 | 1 | 0 | |
Unha | ![]() |
2 | 1 | 1 | 0 | First successful launch |
Universal Rocket | ![]() |
12 | 10 | 1 | 1 | |
Vega | ![]() |
1 | 1 | 0 | 0 | Maiden flight |
Zenit | ![]() |
3 | 3 | 0 | 0 |
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By type
更多資訊 Rocket, Country ...
Rocket | Country | Family | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|---|
Ariane 5 | ![]() |
Ariane | 7 | 7 | 0 | 0 | |
Atlas V | ![]() |
Atlas | 6 | 6 | 0 | 0 | |
Delta IV | ![]() |
Delta | 4 | 4 | 0 | 0 | |
Falcon 9 | ![]() |
Falcon | 2 | 1 | 0 | 1 | Failure only affected one of two payloads |
H-IIA | ![]() |
H-II | 1 | 1 | 0 | 0 | |
H-IIB | ![]() |
H-II | 1 | 1 | 0 | 0 | |
Long March 2 | ![]() |
Long March | 6 | 6 | 0 | 0 | |
Long March 3 | ![]() |
Long March | 9 | 9 | 0 | 0 | |
Long March 4 | ![]() |
Long March | 4 | 4 | 0 | 0 | |
Pegasus | ![]() |
Pegasus | 1 | 1 | 0 | 0 | |
PSLV | ![]() |
PSLV | 2 | 2 | 0 | 0 | |
Proton | ![]() |
Universal Rocket | 11 | 9 | 1 | 1 | |
Safir | ![]() |
Safir | 2 | 1 | 1 | 0 | |
Soyuz | ![]() |
R-7 | 10 | 10 | 0 | 0 | |
Soyuz-2 | ![]() |
R-7 | 4 | 4 | 0 | 0 | |
Unha | ![]() |
Unha | 2 | 1 | 1 | 0 | First successful launch |
UR-100 | ![]() |
Universal Rocket | 1 | 1 | 0 | 0 | |
Vega | ![]() |
Vega | 1 | 1 | 0 | 0 | Maiden flight |
Zenit | ![]() |
Zenit | 3 | 3 | 0 | 0 |
關閉
By configuration
更多資訊 Rocket, Country ...
Rocket | Country | Type | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|---|
Ariane 5 ECA | ![]() |
Ariane 5 | 6 | 6 | 0 | 0 | |
Ariane 5 ES | ![]() |
Ariane 5 | 1 | 1 | 0 | 0 | |
Atlas V 401 | ![]() |
Atlas V | 3 | 3 | 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+ (4,2) | ![]() |
Delta IV | 1 | 1 | 0 | 0 | |
Delta IV Medium+ (5,2) | ![]() |
Delta IV | 1 | 1 | 0 | 0 | Maiden flight[213] |
Delta IV Medium+ (5,4) | ![]() |
Delta IV | 1 | 1 | 0 | 0 | |
Delta IV Heavy | ![]() |
Delta IV | 1 | 1 | 0 | 0 | |
Falcon 9 v1.0 | ![]() |
Falcon 9 | 2 | 1 | 0 | 1 | Failure only affected one of two payloads |
H-IIA 202 | ![]() |
H-IIA | 1 | 1 | 0 | 0 | |
H-IIB | ![]() |
H-IIB | 1 | 1 | 0 | 0 | |
Long March 2C | ![]() |
Long March 2 | 2 | 2 | 0 | 0 | |
Long March 2D | ![]() |
Long March 2 | 3 | 3 | 0 | 0 | |
Long March 2F | ![]() |
Long March 2 | 1 | 1 | 0 | 0 | |
Long March 3A | ![]() |
Long March 3 | 1 | 1 | 0 | 0 | |
Long March 3B | ![]() |
Long March 3 | 1 | 1 | 0 | 0 | Final flight |
Long March 3B/E | ![]() |
Long March 3 | 4 | 4 | 0 | 0 | |
Long March 3C | ![]() |
Long March 3 | 3 | 3 | 0 | 0 | Final flight |
Long March 4B | ![]() |
Long March 4 | 2 | 2 | 0 | 0 | |
Long March 4C | ![]() |
Long March 4 | 2 | 2 | 0 | 0 | |
Pegasus XL | ![]() |
Pegasus | 1 | 1 | 0 | 0 | |
PSLV-CA | ![]() |
PSLV | 1 | 1 | 0 | 0 | |
PSLV-XL | ![]() |
PSLV | 1 | 1 | 0 | 0 | |
Proton-K / Block DM-2 | ![]() |
Proton | 1 | 1 | 0 | 0 | Final flight[32] |
Proton-M / Briz-M | ![]() |
Proton | 10 | 8 | 1 | 1 | |
Rokot / Briz-KM | ![]() |
UR-100 | 1 | 1 | 0 | 0 | |
Safir-1B | ![]() |
Safir | 2 | 1 | 1 | 0 | |
Soyuz-2.1a / Fregat-M | ![]() |
Soyuz-2 | 2 | 2 | 0 | 0 | |
Soyuz ST-A / Fregat | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | |
Soyuz ST-B / Fregat-MT | ![]() |
Soyuz-2 | 1 | 1 | 0 | 0 | |
Soyuz-FG | ![]() |
Soyuz | 4 | 4 | 0 | 0 | |
Soyuz-FG / Fregat | ![]() |
Soyuz | 1 | 1 | 0 | 0 | |
Soyuz-U | ![]() |
Soyuz | 5 | 5 | 0 | 0 | |
Unha-3 | ![]() |
Unha | 2 | 1 | 1 | 0 | Maiden flight |
Vega | ![]() |
Vega | 1 | 1 | 0 | 0 | Maiden flight |
Zenit-3SL | ![]() |
Zenit | 3 | 3 | 0 | 0 |
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5
10
15
20
25
30
China
France
India
International waters
Iran
Japan
Kazakhstan
Marshall Islands
North Korea
Russia
United States
- Jiuquan
- Taiyuan
- Xichang
- Kourou
- Satish Dhawan
- Ocean Odyssey
- Semnan
- Tanegashima
- Baikonur
- Kwajalein
- Sohae
- Plesetsk
- Cape Canaveral
- Kennedy
- MARS
- Vandenberg
更多資訊 Site, Country ...
Site | Country | Launches | Successes | Failures | Partial failures | Remarks |
---|---|---|---|---|---|---|
Baikonur | ![]() |
21 | 19 | 1 | 1 | |
Cape Canaveral | ![]() |
10 | 9 | 0 | 1 | |
Kourou | ![]() |
10 | 10 | 0 | 0 | |
Jiuquan | ![]() |
5 | 5 | 0 | 0 | |
Kwajalein | ![]() |
1 | 1 | 0 | 0 | |
Ocean Odyssey | ![]() |
3 | 3 | 0 | 0 | |
Plesetsk | ![]() |
3 | 3 | 0 | 0 | |
Satish Dhawan | ![]() |
2 | 2 | 0 | 0 | |
Semnan | ![]() |
2 | 1 | 1 | 0 | |
Sohae | ![]() |
2 | 1 | 1 | 0 | |
Tanegashima | ![]() |
2 | 2 | 0 | 0 | |
Taiyuan | ![]() |
5 | 5 | 0 | 0 | |
Vandenberg | ![]() |
2 | 2 | 0 | 0 | |
Xichang | ![]() |
9 | 9 | 0 | 0 | |
Total | 77 | 72 | 3 | 2 |
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10
20
30
40
- Transatmospheric
- Low Earth
- Low Earth (ISS)
- Low Earth (SSO)
- Low Earth (retrograde)
- Medium Earth
- Geosychronous
(transfer) - Inclined GSO
- High Earth
- Heliocentric
更多資訊 Orbital regime, Launches ...
Orbital regime | Launches | Successes | Failures | Accidentally achieved |
Remarks |
---|---|---|---|---|---|
Transatmospheric | 0 | 0 | 0 | 0 | |
Low Earth | 39 | 37 | 2 | 0 | 12 to ISS, 1 to Tiangong-1 |
Medium Earth / Molniya | 5 | 5 | 0 | 1 | |
Geosynchronous / GTO | 32 | 31 | 1 | 0 | |
High Earth / Lunar transfer | 1 | 1 | 0 | 0 | |
Heliocentric / Planetary transfer | 0 | 0 | 0 | 0 | |
Total | 77 | 74 | 3 | 1 |
關閉
參見
參考
- 中國國家航天局
- 中國探月網
- 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與Launchlog.txt兩項)
- 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
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