空天飞机

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  • space plane
空天飞机空天飞机
  1. 从一体化角度出发,进行了空天飞机/吸气式推进系统一体化性能的数值模拟。

    The integrated performance of aero space plane / air breathing propulsion system was simulated .

  2. 这位29英尺长的空天飞机,比航天飞机更小,可以留在轨道上长达9个月。

    The29-foot-long space plane , much smaller than the space shuttles , can stay in orbit for up to nine months .

  3. 空天飞机(NASP)是水平起飞、着陆的单级入轨飞行器。

    The National Aerospace Plane ( NASP ) is a horizontal takeoff and landing , single-stage-to-orbit vehicle .

  4. 空天飞机最优轨迹/推进性能研究

    The Optimal Design of Trajectory / Propulsion Performance for Aerospace Plane

  5. 空天飞机捷联惯性/GPS组合系统

    Integrated strapdown inertial / gps navigation system of space shuttle

  6. 一种空天飞机外形高超声速气动特性实验研究

    Experimental Study on Hypersonic Aerodynamic Characteristics of Aerospace Plane Configuration

  7. 空天飞机/吸气式推进系统一体化性能的模拟

    Simulation of integrated performance of aerospace plane / air breathing propulsion system

  8. 空天飞机用涡轮风扇-冲压组会发动机的设计研究

    Design Study of Separate Turbofan-Ramjet Engine for Space Shuttle

  9. 空天飞机气动热的工程预测方法

    The predicting method of aerodynamic heating for aerospace plane

  10. 空天飞机喷管的气动设计

    The aerodynamic design of nozzle for aerospace plane

  11. 空天飞机的计算流体力学分析

    Analysis of computational fluid dynamics for aerospace plane

  12. 捆绑式运载火箭气动力计算空天飞机吸气式发动机技术

    Aerodynamic computations for launch vehicle with strap-on boosters air breathing engine technology for Aero-Space plane

  13. 空天飞机的防热系统

    The thermal protection system for aerospace plane

  14. 空天飞机吸气式发动机技术

    Air breathing engine technology for Aero-Space plane

  15. 空天飞机的边界层转捩

    Boundary layer transition for aerospace plane

  16. 讨论了空天飞机测控通信体制、主要的系统功能和关键技术。

    The TTC & DT system , main functions and key technology of spaceplane are also discussed .

  17. 研究了应用于空天飞机的液体空气循环发动机。

    He concept of liquified air cycle engine ( LACE ) for space vehicles has been studied .

  18. 本文概述了边界层转捩对空天飞机性能的影响。

    The leverage on the performance of aerospace plane from boundary layer transition is presented in outline .

  19. 最后,对今后空天飞机边界层转捩的研究工作提出了建议。

    Finally , the suggestions of further research works about boundary layer transition for aerospace plane are put for ward .

  20. 高空高速平台载雷达主要包括星载雷达和空天飞机载雷达。

    The high-altitude and high-speed platform radar mainly includes space based radar ( SBR ) and aerospace aircraft airborne radar .

  21. 2010年4月美国空天飞机等在轨飞行器的实验再次引发关于外空军事化的激烈讨论。

    The experiment on X-37B Orbital Test Vehicle , April 2010 , raised debate on the militarization of outer space again .

  22. 为了数值模拟空天飞机/吸气式推进系统一体化性能,采用了模块化合成程序。

    For the integrated performance simulation of the aero-space plane / air-breathing propulsion system , a modular synthesis program is used .

  23. 本文首先说明了单级入轨的空天飞机采用超声速燃烧冲压发动机的必要性。

    The necessity about using supersonic combustion ramjet ( scramjet ) for the single stage to orb (?) t aerospace plane is demonstrated .

  24. 液氢/液氧燃料空天飞机及液氢、液化天然气燃料航空飞机的特性和应用现状;

    (ⅱ) Characteristics and status of liquid hydrogen / liquid oxygen fuelled aeroplanes and liquid hydrogen , liquified natural gas ( LNG ) fuelled airplanes ;

  25. 本文提出一种适用于空天飞机的捷联惯性/GPS组合导航系统,给出了该组合系统的原理框图。

    An integrated strapdown inertial / GPS navigation system , suitable for using in space shuttle is proposed , and its principle block diagram is given .

  26. 详细介绍了载人空间站、航天飞机和空天飞机等的研发历史和性能。

    This paper introduces in detail the R & D history and performance of the manned space station , space shuttle , and aerospace shuttle , etc.

  27. 同时,在双光纤布拉格光栅传感器结构的基础上,提出了一种基于光纤光栅的空天飞机箱体应力传感器模型,分析了外加载荷和应变分布之间关系。

    Meanwhile , based on the double-FBG structure , a strain sensor box model of aerospace plane is built so as to analyze the relationship between applied load and strain distribution .

  28. 空天飞机的综合健康管理涉及空天飞机从发生故障到恢复正常的一系列活动,包括信号处理、状态监控、健康评估、预测、决策支持、人机交互等。

    Integrated health management of aerospace plane generally involves a series of activities over the period from the aerospace breaking down until it returning to normal , including signal processing , monitoring , health assessment , decision support , human-computer interaction , and so on .