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11.
毫秒脉冲等离子体激励改善飞翼的气动性能实验   总被引:3,自引:0,他引:3  
在来流速度为30m/s时,进行了毫秒脉冲介质阻挡放电等离子体激励改善飞翼气动性能的风洞实验.等离子体激励器布置在飞翼前缘,峰峰值电压为9.5kV时,放电的脉冲能量在0.1mJ/cm量级.通过六分量测力天平测力研究了脉冲激励频率和占空比对升/阻力系数、升阻比和俯仰力矩系数的作用效果.结果表明:等离子体激励可以有效改善飞翼大攻角气动特性;在最佳无量纲脉冲激励频率F+≈1时,临界失速迎角由14°提高到17°,最大升力系数提高10%;占空比对流动控制效果影响较大,减小占空比可以降低能耗,实验中最佳占空比为5%;俯仰力矩系数的变化表明施加等离子体激励改善了飞翼纵向静稳定性.   相似文献   
12.
《中国航空学报》2016,(2):560-570
Single-crystal superalloys are typical advanced materials used for manufacturing aeroengine turbine blades. Their unique characteristics of high hardness and strength make them exceedingly difficult to machine. However, a key structure of a turbine blade, the film-cooling hole,needs to be machined in a single-crystal superalloy; such machining is challenging, especially considering the increasing levels of machining efficiency and quality demanded by the aeroengine industry. Tube electrode high-speed electrochemical discharge drilling(TSECDD), a hybrid technique of high-speed electrical discharge drilling and electrochemical machining, provides high machining efficiency and accuracy, as well as eliminating the recast layer. In this study, TSECDD is used to machine a film-cooling hole in a nickel-based single-crystal superalloy(DD6). The Taguchi methods of experiment are used to optimise the machining parameters. Experimental results show that TSECDD can effectively drill the film-cooling hole; the optimum parameters that give the best performance are as follows: pulse duration: 12 ls, pulse interval: 30 ls, peak current:6 A, and salt solution conductivity: 3 m S/cm. Finally, a hole is machined by TSECDD, and the results are compared with those obtained by electrical discharge machining. TSECDD is found to be promising for improving the surface quality and eliminating the recast layer.  相似文献   
13.
为解决发动机点火包线小于飞行包线的实际问题,提供等离子体点火技术在航空发动机中的工程应用新思路,论文设计了一种预燃式等离子体射流点火器,实验研究了放电特性和射流特性。结果表明,预燃式等离子体射流点火器与空气等离子体射流点火器相比,在提升射流能量降低电源功率方面有着较大的优势,电流相同时通入甲烷在较大流量时可减小驱动电源功率,总流量为44L/min时,减幅可达14.99%;同时预燃式等离子体射流较空气等离子体射流稳定,且射流长度增加,扩大了点火面积,有利于点火。  相似文献   
14.
王广  楚武利 《推进技术》2020,41(5):1063-1071
为了削弱级间泄漏流对压气机性能的不利影响,提出了一种基于Coanda型几何进出口的级间结构,并以一个亚声速单级轴流压气机为研究对象,数值模拟了5°,10°,20°三种不同级间进出口几何角度对压气机性能的影响。结果表明:改进后的级间进出口几何结构使得压气机流量和效率均略有提升。分析原因是级间出口泄漏流以较小角度与主流汇合,增大了静叶进口气流的轴向速度、径向速度,使得静子通道流动堵塞程度减轻,总压损失减小,扩压能力增强。同时,新结构还减小了级间泄漏流的流量系数,改善了级间封严效果。5°,10°,20°角度下的压气机效率最大分别提升了0.68%,0.63%,0.62%。  相似文献   
15.
在空气介质阻挡放电中,利用氮分子振动谱线和氮分子离子的转动谱线,研究了振动温度和转动温度在两极板间的分布情况。结果表明:越靠近极板振动温度越小,中间振动温度最高;而转动温度在两极板间基本保持不变。  相似文献   
16.
为提高液体火箭可贮存推进剂泄出速度,缩短泄出时间,通过分析泄出过程中推进剂流动状态及能量变化,建立了推进剂泄出速度的数学模型,按照实际设定参数计算了泄出量,计算结果与实际泄出吻合,并依据模型分析了相关因素对泄出速度的影响程度。结果表明:泄出转接波纹软管管径是影响泄出速度的主要因素,增加软管管径可显著缩短泄出时间;同时,贮箱气枕压力对泄出速度同样具有明显的影响。  相似文献   
17.
Problems connected with mechanisms for comet brightness outbursts as well as for gamma-ray bursts remain open. Meantime, calculations show that irradiation of a certain class of comet nuclei, having high specific electric resistance, by intense fluxes of energetic protons and positively charged ions with kinetic energies more than 1 MeV/nucleon, ejected from the Sun during strong solar flares, can produce a macroscopic high-voltage electric double layer with positive charge in the subsurface zone of the nucleus, during irradiation times of the order of 10–100 h at heliocentric distances around 1–10 AU. The maximum electric energy accumulated in such layer will be restricted by the electric discharge potential of the layer material. For comet nuclei with typical radii of the order of 1–10 km the accumulated energy of such natural electric capacitor is comparable to the energy of large comet outbursts that are estimated on the basis of ground based optical observations. The impulse gamma and X-ray radiation together with optical burst from the comet nucleus during solar flares, anticipated due to high-voltage electric discharge, may serve as an indicator of realization of the processes above considered. Multi-wavelength observations of comets and pseudo-asteroids of cometary origin, having brightness correlation with solar activity, using ground based optical telescopes as well as space gamma and X-ray observatories, during strong solar flares, are very interesting for the physics of comets as well as for high energy astrophysics.  相似文献   
18.
离子电推进技术的发展现状与未来   总被引:1,自引:0,他引:1       下载免费PDF全文
离子电推进是最具代表性和技术成熟度的电推进技术类型之一。本文从放电室技术、离子光学系统技术、放电阴极和中和器阴极技术的优势、缺憾等方面,总结了离子电推进的技术发展现状。针对未来航天任务对离子电推进更大功率、更高比冲、更简系统等新需求,分析了传统离子电推进所面临的主要技术挑战,梳理出了环型离子电推进、双级加速离子电推进、自中和离子电推进、螺旋波放电离子电推进等创新离子电推进技术发展的未来方向。  相似文献   
19.
A 15° swept wing with dielectric barrier discharge plasma actuator is designed.Experimental study of flow separation control with nanosecond pulsed plasma actuation is performed at flow velocity up to 40 m/s. The effects of the actuation frequency and voltage on the aerodynamic performance of the swept wing are evaluated by the balanced force and pressure measurements in the wind tunnel. At last, the performances on separation flow control of the three types of actuators with plane and saw-toothed exposed electrodes are compared. The optimal actuation frequency for the flow separation control on the swept wing is detected, namely the reduced frequency is 0.775, which is different from 2-D airfoil separation control. There exists a threshold voltage for the low swept wing flow control. Before the threshold voltage, as the actuation voltage increases, the control effects become better. The maximum lift is increased by 23.1% with the drag decreased by 22.4% at 14°, compared with the base line. However, the best effects are obtained on actuator with plane exposed electrode in the low-speed experiment and the abilities of saw-toothed actuators are expected to be verified under high-speed conditions.  相似文献   
20.
表面介质阻挡放电等离子体体积力实验   总被引:1,自引:0,他引:1  
采用粒子图像测速(PIV)技术,在2200,4800,7300,14600Pa空气压力条件下,测量了高频高压表面介质阻挡放电(surface dielectric barrier discharge,SDBD)等离子体诱导流场.根据速度场和N-S方程求解了等离子体体积力分布,分析了空气压力和激励器电压对等离子体体积力影响.实验结果表明:相同空气压力时,激励器电压越高体积力越大.相同激励器电压时,体积力随空气压力升高减小.在体积力分布区域,体积力方向一致,较大体积力区域分布于体积力方向线上游,流场高速流动区域紧挨较大体积力分布区域,位于体积力方向线下游.  相似文献   
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