参考文献

参考文献

[1] Index of NSAEBB [EB/OL]. (2017-08-10) [2019-10-20]. https://nsarchive2.gwu.edu/NSAEBB/NSAEBB434/docs.

[2] X ue H, Khawaja H, Moatamedi M. Conceptual design of high speed supersonic aircraft: a brief review on SR-71 (blackbird) aircraft [C]// 10th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences, Narvik, Norway, 2014.

[3] M erlin P W. Design and development of the blackbird: challenges and lessons learned [C]//47th AIAA Aerospace Sciences Meeting including The New Horizons Forum and Aerospace Exposition, Orlando, Florida, 2009.

[4] S anger E. Recent Results in Rocket Flight Technique [R]. Washington: National Advisory Comm ittee for Aeronautics, 1942.

[5] L aunius R D, Jenkins D R. Coming home: reentry and recovery from space [M]. Washington:US Government Printing Off ice, 2012.

[6] Hallion R P. The history of hypersonics: or, “back to the future: again and again” [C]// 43rd AIAA Aerospace Sciences Meeting and Exhibit, Reno, Nevada, 2005.

[7] 关世义. 钱学森与现代飞行力学[J]. 战术导弹技术, 2009(6): 1-8.

[8] 钱学森在加州理工大学向研究生授课[EB/OL]. (2010-10-01) [2019-10-20]. http://www.cas.cn/zt/rwzt/qxsssyzn/sptj/201010/t20101031_3000086.htm l.

[9] F DL-6 Suborbital Maneuvering Vehicle (SOMV) (1975) [EB/OL]. [2019-10-20]. http://fantastic-plastic.com/fdl-6-suborbital-maneuvering-vehicle-somv-by-fantastic-plastic.htm l.

[10] K nudsen B. An Exam ination of U.S. Hypersonic Weapon Systems [R]. Washington:George Washington University, 2017.

[11] 崔尔杰. 近空间飞行器研究发展现状及关键技术问题[J]. 力学进展, 2009, 39(6):658-673.

[12] Walker H S, Rodgers F. Falcon hypersonic technology overview [C]// AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference, Capua,Italy, 2005.

[13] Freeman D C, Reubush D E, M cClinton C R, et al. The NASA Hyper-X Program [R]. Paris:International Astronautical Federation, 1997.

[14] M cClinton C R, Rausch V L, Sitz J, et al. Hyper-X Program status [C]// 39th Aerospace Sciences Meeting and Exhibit, Reno, Nevada, 2001.

[15] Leonard C P, Amundsen R M, Bruce W E. Hyper-X hot structures design and comparison w ith f light data [C]// AIAA/CIRA 13th International Space Planes and Hypersonics Systems and Technologies Conference, Capua, Italy, 2005.

[16] Mercier R A, Ronald T M F. Hypersonic technology (HyTech) program overview [C]// 8th AIAA International Space Planes and Hypersonic Systems and Technologies Conference,Norfolk, Virginia, 1998.

[17] Powell O A, Edwards J T, Norris R B, et al. Development of hydrocarbon-fueled scram jet engines: the hypersonic technology (HyTech) program [J]. Journal of Propulsion and Power, 2001, 17(6): 1170-1176.

[18] Richman M S, Kenyon J A, Sega R M. High speed and hypersonic science and technology[C]// 41st AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, Tucson, Arizona,2005.

[19] Walker S H, Sherk C J, Shell D, et al. The DARPA/AF Falcon Program: the hypersonic technology vehicle #2 (HTV-2) f light demonstration phase [C]// 15th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, Dayton, Ohio,2008.

[20] Jorris T R. Recent and on-going hypersonic, space transit, and space launch f light tests [C]//AIAA Flight Testing Conference, Atlanta, Georgia, 2014.

[21] Schulz M C, Wetherall R. Falcon Hypersonic Technology Vehicle (HTV-2) [R]. Arlington,Virginia: DARPA, 2011.

[22] 甄华萍, 蒋崇文. 高超声速技术验证飞行器HTV-2综述[J]. 飞航导弹, 2013(6): 7-13.

[23] ARPA Engineering Review Board Concludes Review of HTV-2 Second Test Flight [EB/OL]. (2012-04-20) [2019-10-20]. http://www.airplanesandrockets.com/resources/DARPAEngineering-Review-Board-HTV-2-Test-Flight.htm.

[24] Clark H. Labs technology launched in f irst test f light of Army’s conventional Advanced Hypersonic Weapon [EB/OL]. (2012-05-18) [2019-10-21]. https://www.sandia.gov/LabNews/120518.htm l.

[25] Malik T. US M ilitary Blows Up Hypersonic Weapon A fter Failed Test Launch [EB/OL]. (2014-08-26) [2019-10-21]. https://www.space.com/26944-us-military-hypersonic-weapontest-explodes.htm l.

[26] Advanced Hypersonic Weapon [EB/OL]. [2019-10-21]. https://www.globalsecurity.org/military/systems/munitions/ahw.htm.

[27] H ank J M, Murphy J S, Mutzman R C. The X-51A scram jet engine f light demonstration program [C]// 15th AIAA International Space Planes and Hypersonic Systems and Technologies Conference, Dayton, Ohio, 2008.

[28] T ang M, Chase R L. The quest for hypersonic f ilght with air-breathing propulsion [C]// 15th AIAA International Space Planes and Hypersonic Systems and Technologies Conference,Dayton, Ohio, 2008.

[29] 李国忠, 于廷臣, 赖正华. 美国X-51A高超声速飞行器的发展与思考[J]. 飞航导弹,2014(5): 5-8.

[30] W illiams A. DARPA continues push toward high-speed aircraft w ith new Integrated Hypersonics program [EB/OL]. (2012-07-10) [2019-10-21] https://newatlas.com/darpa-integrated-hypersonics-program-mach-20-x-plane/23243.

[31] W arw ick G. Hypersonic X-Plane (HX) - DARPA Tries Again [EB/OL]. (2012-08-24) [2019-10-21]. https://w iki.nps.edu/display/CRUSER/2012/08/28/Hypersonic+X-Plane+%28HX%29+-+DARPA+Tries+Again.

[32] A nthony S. US military’s experimental hypersonic weapon explodes seconds after launch[EB/OL]. (2014-08-26) [2019-10-22]. https://www.extremetech.com/extreme/188675-usm ilitarys-experimental-hypersonic-weapon-explodes-seconds-after-launch.

[33] T revithick J. The B-52 Looks Set To Become The USAF’s Hypersonic Weapons Truck of Choice [EB/OL]. (2018-08-28) [2019-10-22] https://www.thedrive.com/the-war-zone/23200/the-b-52-looks-set-to-become-the-usafs-hyper sonic-weapons-truck-of-choice.

[34] D ARPA to Launch Test Flight for Two Hypersonic Weapons [EB/OL]. (2019-05-07)[2019-10-22]. http://en.c4defence.com/Agenda/darpa-to-launch-test-flight-for-twohypersonic-weapons/8140/1.

[35] 张茜. 2015年全球高超声速吸气式推进技术发展综述[J]. 飞航导弹, 2016(10): 7-11.

[36] W aters D. DARPA Perspective [R]. Arlington, Virginia: DARPA, 2015.

[37] Urban D. The DARPA Science & Technology Program [C]// NDIA 17th Annual Science &Engineering Technology Conference, Tampa, Florida, 2016.

[38] A refyev K Y, Kukshinov N V, Prokhorov A N. Analysis of development trends of power-units for high-speed f lying vehicles [J]. Journal of Physics: Conference Series, 2019, 1147:012055.

[39] 马娜, 门薇薇, 王志强, 等. SR-72高超声速飞机研制分析[J]. 飞航导弹, 2017(1):14-20.

[40] N orris G. Skunk Works Reveals SR-71 Successor Plan [EB/OL]. (2013-11-01) [2019-10-22].https://aviationweek.com/technology/skunk-works-reveals-sr-71-successor-plan.

[41] Zhong Y, Liu D H, Wang C. Research progress of key technologies for typical reusable launcher vehicles [C]// 2nd International Conference on Aerospace Technology,Communications and Energy Systems, Shanghai, 2018.

[42] Howell E. XS-1: DARPA’s Experimental Spaceplane [EB/OL]. (2018-04-27) [2019-10-23].https://www.space.com/29287-xs1-experimental-spaceplane.htm l.

[43] Sponable J. Experimental Spaceplane (XS-1) [R]. Arlington, Virginia: DARPA, 2014.

[44] 魏昊功, 陆亚东, 李齐, 等. 欧洲“过渡试验飞行器”再入返回技术综述[J]. 航天器工程, 2016, 25(1): 131-140.

[45] 王卫杰, 李怡勇. 欧洲“过渡型试验飞行器”研究与飞行试验情况分析[J]. 国际太空,2016(1): 78-82.

[46] Tum ino G, Mancuso S, Gallego J M, et al. The IXV experience, from the mission conception to the f light results [J]. Acta Astronautica, 2016, 124: 2-17.

[47] Mark H. Progress on Skylon and SABRE [C]// 64th International Astronautical Congress,Beijing, 2013.

[48] 聂万胜, 周思引, 雷旭. 协同吸气式火箭发动机研究进展[J]. 装备学院学报, 2016,27(16): 57-64.

[49] US Air Force confirms hypersonic SABRE engine feasible [EB/OL]. (2015-04-20) [2019-10-23]. https://www.nextbigfuture.com/2015/04/us-air-force-conf irms-hypersonic-sabre.htm l.

[50] Sodhi C. ZIRCON: the Russian hypersonic cruise m issile [R]. New Delhi: Centre for Air Power Studies, 2016.

[51] Robinson J S, Martin J G, Bow les J V, et al. An overview of the role of systems analysis in NASA’s hypersonics project [C]// 14th AIAA/AHI Space Planes and Hypersonic Systems and Technologies Conference, Canberra, 2006.

[52] Schmisseur J D. Hypersonic into the 21st century: a perspective on AFOSR-sponsored research in aerothermodynam ics [J]. Progress in Aerospace Science, 2015, 72: 3-16.

[53] 李婧芳, 牛文, 李文杰. 澳大利亚成功完成HIFiRE的第5次试验[J]. 飞航导弹,2013(1): 14-16.