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高超声速巡航飞行器 hypersonic cruise vehicle英语短句 例句大全

时间:2023-11-20 09:16:34

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高超声速巡航飞行器,hypersonic cruise vehicle

1)hypersonic cruise vehicle高超声速巡航飞行器

1.Based on system performance,guided by an object-oriented method,an integrated optimization design system of ahypersonic cruise vehicle was built through VC++.从总体性能指标角度出发,采用面向对象的编程方法,基于Visual C++开发了高超声速巡航飞行器气动布局优化软件。

2.An airframe/propulsion system integrated design o fhypersonic cruise vehicle overall performance analysis model is set up.建立了高超声速巡航飞行器机身/推进系统一体化设计模型,对高超声速巡航飞行器机体/推进系统设计参数对性能的影响进行了分析,提出了一种新的设计参数灵敏度分析方法和设计参数取值域界定方法,确定了各设计参数的影响等级并对设计参数取值域进行了划分。

英文短句/例句

1.Conceptual Study of Navigation System for Hypersonic Cruise Vehicle;高超声速巡航飞行器导航系统方案研究

2.On-line Route Planning of Glide Phase for Hypersonic Cruise Vehicle高超声速巡航飞行器下滑段在线航迹规划方法

3.On-line Route Planning Research for Hypersonic Cruise Vehicle Based on DSP高超声速巡航飞行器在线航迹规划方法

4.Research on Radar Cross Section and Stability & Controllability of Hypersonic Cruise Vehicle;高超声速巡航飞行器雷达散射及操稳特性研究

5.Developmental Trend and Administrative Mode of Hypersonic Cruise Vehicle Based on Waverider Technique基于乘波技术的高超声速巡航飞行器发展趋势与管理模式

6.DETERMINATION OF PERIODIC CRUISE CONDITION OF HYPERSONIC VEHICLE高超声速飞行器周期巡航条件的确定

7.Study on Relationship between Periodic Cruise and Configuration Parameters of Hypersonic Vehicle高超声速飞行器周期巡航与总体参数关系研究

8.Design of Variable Structure Control System for Hypersonic BTT Vehicle高超音速BTT巡航飞行器变结构控制系统设计

9.Route Planning for Hypersonic Vehicle Using A* Algorithm基于A*算法的高超声速飞行器航迹规划方法

10.Flight Path Planning of Hypersonic Vehicle Based on PSO基于粒子群优化的高超声速飞行器航迹规划

11.Research on Integrated Navigation System of HCV and Experiment Using Unscented Kalman Filter;高超巡航飞行器组合导航系统研究与算法验证

12.The Maximum-range Trajectory Analysis of Hypersonic Glide-reentry Vehicle高超声速滑翔式再入飞行器最大航程飞行轨迹分析

13.Dynamic Characteristics of Hypersonic Flight for Increasing Range Vehicles增程飞行器高超声速飞行的动态特性

14.Optimal PIF-LQR Control Design for a Generic Hypersonic Vehicle高超声速飞行器最优PIF-LQR控制器设计

15.Design of Active Center of Gravity Control System for Aircraft Supersonic Cruise飞机超声速巡航主动重心控制系统设计

16.Estimating and Analyzing of Aerodynamic of Hypersonic Vehicle;高超声速飞行器气动特性估算与分析

17.Study on Flow Controls for Hypersonic Flying Vehicle Fuselage/Propulsion高超声速飞行器/发动机流动控制研究

18.Discrete-Time Fuzzy Adaptive Control for the Hypersonic Aircraft高超声速飞行器离散模糊自适应控制

相关短句/例句

boost-cruise vehicle高超声速助推-巡航飞行器

1.Based on rocket-boost launching mode,the analytical expressions between takeoff mass and range as well as propellant specific impulse and payload were deduced for three kinds of hypersonic vehicles,including ballistic vehicles,boost-glide vehicles andboost-cruise vehicles.基于火箭助推的发射方式,推导出弹道式飞行器、高超声速助推-滑翔飞行器及高超声速助推-巡航飞行器的起飞质量与航程、燃料比冲和载荷之间的解析关系,为总体设计初期快速估算飞行器起飞质量提供了方法。

3)hypersonic cruise vehicle高超音速巡航飞行器

1.Preliminary design for soaringhypersonic cruise vehicle;滑跃式高超音速巡航飞行器设计初步研究

4)hypersonic vehicle高超声速飞行器

1.Optimization of glide trajectory for ahypersonic vehicle;高超声速飞行器滑行航迹优化

2.Heat flux measurement test of thehypersonic vehicle;高超声速飞行器测热试验研究

3.Fuzzy adaptive control forhypersonic vehicle via Backstepping method;基于Backstepping的高超声速飞行器模糊自适应控制

5)supersonic cruise超声速巡航

1.The advantages of the fourth generation engine insupersonic cruise, visibility, life cycle cost (LCC) and the potential have been analyzed.本文介绍了国外第四代战斗机对动力装置的要求,归纳了第四代战斗机发动机的主要新技术,分析了第四代战斗机发动机在超声速巡航、可探测性、全寿命费用和发展潜力等方面所具有的优势,最后总结了第四代战斗机发动机发展过程中的几个重要特点,并对发动机技术发展进行了展望。

2.Focused on the features of stealth, super maneuverability andsupersonic cruise of the future fighter, the authors identified the main difficulties and gave some practical solutions to lift drag characteristics at sub /tran sonic speed, high A.针对未来歼击机隐身、高机动和超声速巡航的特点 ,分析了主要的设计矛盾 ,并且就亚跨声速升阻特性、低速大迎角特性和超声速阻力特性等若干设计问题提出了具体的解决方案。

6)Hypersonic skip vehicle高超声速跳跃式飞行器

延伸阅读

巡航飞行巡航飞行cruisingflight飞机为执行远距离、长时间的飞行任务而选择的经济性较好的飞行状态。巡航飞行的速度有两种:对应于千米耗油量最小的飞行状态,其速度称为远航速度;对应于小时耗油量最小的飞行状态,其速度称为久航速度。通常远航速度大于久航速度。现代喷气飞机的巡航推力通常为其最大推力的65%~75%。巡航速度通常为最大平飞速度的70%~80%。现代多数旅客机仍用亚声速巡航飞行。喷气飞机的高空巡航效率通常比低空高,因为随着高度的增加,千米耗油量和小时耗油量都较小。巡航飞行常用于空中运输、观测、巡逻、护航、转场等飞行任务。采用高升阻比的空气动力布局、减少发动机耗油率、携带副油箱或采用空中加油等,都可以提高飞机的巡航性能。

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